Tag: lithium

  • European Energy Metals Confirms Pegmatites at Lappajarvi West

    European Energy Metals Confirms Pegmatites at Lappajarvi West

    Vancouver, British Columbia–(Newsfile Corp. – July 18, 2023) – European Energy Metals (TSXV: FIN) (FSE: W28) (“European Energy” or the “Company”) is pleased to announce exploration crews have confirmed the presence of pegmatites at Lappajarvi West, one of the five concessions comprising its 2,300 square kilometre Lithium-Cesium-Tantalum (“LCT”) and Rare Earth Element (“REE”) Finnish Pegmatite Project, in central and southern Finland.

    As part of the Company’s Phase 1 exploration program, exploration crews have visited a number of the pegmatite occurrences noted in the Geological Survey of Finland “GTK” database, confirming the historic locations and also uncovering additional previously unknown pegmatites. Minerals commonly associated with LCT pegmatites1 have been observed in several locations, including: blocky K-feldspar, green muscovite, beryl and tourmaline.

    “Our Phase 1 exploration program has yielded encouraging preliminary results with the presence of LCT indicator minerals noted in multiple locations,” commented European Energy Metals CEO Jeremy Poirier. “We are feeling confident our exploration crews can successfully highlight high priority areas for subsequent permitting for Phase II drilling,” he continued.

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    Figure 1. Blue/green beryl crystal in pegmatite outcrop at Lappajärvi West Reservation.

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    Figure 2. Quartz and tourmaline in pegmatite outcrop at Lappajärvi West Reservation.

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    Figure 3. Pegmatite outcrop at at Lappajärvi West Reservation.

    To view an enhanced version of this graphic, please visit:
    https://images.newsfilecorp.com/files/9006/173823_d63e246c64384b0c_003full.jpg

    The first series of samples will be shipped to the ALS Minerals geochemical prep lab in Sodankylä, Finland this week. The samples will be analyzed with procedure ME-MS89L, utilizing a sodium peroxide fusion and ALS’s Super Trace ICP-MS methodology. The results will be released once the technical team completes QA/QC reviews.

    European Energy Metals cautions investors the presence of LCT indicator minerals in the pegmatites at Lappajärvi West are not necessarily indicative of presence of lithium mineralization.

    Pursuant to an earn-in agreement with Capella Minerals Ltd (TSXV: CMIL)., European Energy has the right to earn an 80% interest in the Finnish Pegmatite Project by issuing 1,750,000 shares, paying Cdn$500,000 and incurring Cdn$2,500,000 dollars in exploration expenditures staged over a 4 year earn in period. A detailed assessment of the historic and government exploration data compiled by the Finnish Geological Survey (“GTK”) identified a series of permissive tracts for LCT pegmatites. The concessions comprising the Finnish Pegmatite Project were identified as a result of this pegmatite research.

    About the Finland Pegmatite Project

    The Finland Pegmatite Project consists of four exploration concessions in central Finland and one exploration concession in southern Finland. These reservations cover a total area of 2,300 square kilometres and are focused on Lithium-Cesium-Tantalum or LCT pegmatite complexes located within the Jarvi-Pohjanmaa and Seinajoki lithium-permissive tracts as defined by the Geological Survey of Finland (GTK). Four of the reservations (Nabba, Lappajarvi West, Lappajarvi East and Kaatiala) lie immediately adjacent to, and to the south of, Keliber Oy’s spodumene mine development project in the Kaustinen district.

    Keliber Oy is a consortium, comprised of Sibanye-Stillwater (79%), Finnish Minerals Group (20%) and Finnish shareholders (1%). A Definitive Feasibility Study by Hatch dated June 14, 2018 states a JORC Code 2012 compliant Measured and Indicated Mineral Resource of 9.47 million tonnes at a grade of 1.16% Li2O2.

    European Energy cautions investors the presence of lithium mineralization at Keliber Oy is not necessarily indicative of similar mineralization at the Nabba concession.

    1J.B.Selway, F.W.Breaks and A.G.Tindle. (2005) A Review of Rare-Element (Li-Cs-Ta) Pegmatite Exploration Techniques for the Superior Province, Canada, and Large Worldwide Tantalum Deposits. Exploration and Mining Geology, Volume 14 No.s 1-4, pp. 1-30.

    2Definitive Feasibility Study – Executive Summary June 14, 2018 by Hatch. http://mb.cision.com/Public/14755/2547948/b83a99f0255413fe.pdf.

    R. Tim Henneberry, P.Geo. (BC), a Director of European Energy Metals Corp., is the Qualified Person who has reviewed and approved the technical content disclosed in this release.

    About European Energy Metals Corp.

    European Energy Metals Corp. is a junior mining company currently focussed on the Lithium-Cesium-Tantalum Finnish Pegmatite Project in central Finland. Governing bodies in Europe and Finland are legislating environmentally friendly and energy independent laws and policies. One of the key components is access to REE and, specifically, lithium. The company concessions are located within 11 miles of Keliber mine being constructed which is expected to begin production H2 2025.

  • Europe’s quest for home-grown lithium

    Europe’s quest for home-grown lithium

    Earlier this year, the European Parliament approved the Fit for 55 package, the European Union’s ambitious plan to achieve climate neutrality by 2050. Increasing use of electric vehicles will be essential to this plan – and to power those vehicles, Europe will need to significantly shore up its lithium supply.

    According to a briefing prepared for the EU Parliament in 2021, Europe will need access to 18 times more lithium by 2030 and 60 times more by 2050, to meet projected demand for electric vehicles, which predominantly use lithium-powered batteries.

    “Almost all demand for lithium comes from batteries,” Leonard Buizza, lead analyst for clean energy supply chains at the Energy Transitions Commission, tells The Parliament. Laptops and mobile phones using lithium-ion batteries will “keep on being a part of demand in the coming years,” he says, “but it’s going to get dwarfed by this very rapidly growing demand from electric vehicles”.

    Buizza thinks sourcing enough lithium for electric vehicle production is possible, but cautions that doing so presents a number of urgent challenges. Among Europe’s challenges is ensuring manufacturers can get enough of it. Rapidly rising demand for lithium has already driven its price to exorbitant levels, and supply gaps are expected to intensify.

    “Estimates for mined supply of lithium in 2030 fall short of expected demand, and that’s on both the business-as-usual baseline but also on a more aggressive, net-zero aligned [model],” says Buizza, adding that we are likely to see shortages if the supply doesn’t continually increase over the next few years.

    You want to make sure you’re able to withstand any potential supply chain shocks

    Aside from lithium, automakers transitioning towards manufacturing 100 per cent electric vehicles will need access to a steady supply of several key minerals. In addition to the metals needed for producing petrol-powered cars, electric vehicle also require graphite, nickel and cobalt.

    In an effort to secure Europe’s supply of key minerals, the EU Parliament and Council passed the Critical Raw Materials Act, which set specific targets for mining, refining and recycling materials such as lithium and copper. One specific goal stated in the legislation is that at least 10 per cent of Europe’s lithium supply should be domestically sourced by 2030. That’s up from virtually zero domestic lithium production in Europe today.

    ”You want to make sure you’re able to withstand any kind of potential supply chain shocks that might arise, and a part of that might be near-shoring or localisation,” says Buizza.

    While lithium is crucial for the transition away from fossil fuel use, the mining process behind it is an extractive, industrial process that can be harmful to nearby communities and environments. As such, ramping up lithium production in Europe raises an immediate question: in whose backyard?

    Last year Serbia’s prime minister, Ana Brnabić, announced that permits for a massive lithium exploration and mining project were annulled following months of widespread protests.

    At present, Portugal is the only EU Member State to mine and process lithium. It produces a relatively small supply of lithium that is used for ceramics manufacturing. But according to the 2021 mineral commodity summaries produced by the US Geological Survey, Portugal holds the world’s eighth-largest lithium supply, following Brazil and Zimbabwe. Several multinational mining corporations are hoping to break ground on new open-pit mines in the country in the next few years.

    Savannah Resources, a London-based mineral mining company, has proposed a number of sites for lithium mines in Portugal’s Covas do Barroso region. According to a statement provided by the company, the “Barroso Lithium Project” will produce enough lithium for 500,000 battery packs per year, and commercial production is expected to begin by 2026.

    On 31 May this year, the Portuguese Environment Agency approved the environmental impact assessment for Savannah’s proposed project, while also citing a number of conditions that should be met. Among them is not taking water from the region’s Covas River, and partially backfilling and landscaping mines after ore extraction has ceased.

    Many residents in the Covas Do Barroso region worry that industrial mining would threaten their ability to farm and their traditional way of living. The region is recognised by the United Nations as a site of globally important agricultural heritage, due to its local farming traditions.

    ”The village I come from has been there since the 12th century and we’ve developed a very sustainable way of living over generations, having to do with the way we manage water and the soil,” says Catarina Scarrott, a spokeswoman for a local movement opposed to the mine.

    Savannah holds a mining lease for nearly 600 hectares of land, on which it plans to dig four or five mining pits. According to Savannah Resources the mining sites “will cover a total area of 71 hectares at their full extent”. Scarrott says one of the planned pits will come as close as 400m to the nearest homes, and the size of that pit alone will be larger than the village it will sit next to.

    “They’re talking about moving watercourses … and a rate of tailings, like one to six,” says Scarrott. “So for each tonne [of lithium], they will leave behind another six tonnes of waste which is going to be piled up less than one kilometre from the river.”

    In a statement to The Parliament, Savannah Resources says its agreement to conditions suggested by Portugal’s Environment Agency “should provide further assurance that the project will be developed and operated in a socially and environmentally responsible way”.

    Scarrott is sceptical of such claims. While listening to her concerns about the impacts of the mine is pretty bleak, she hasn’t lost hope that her homeland can be protected.

    “As an individual I thought, ‘What can I do?’ But the community has seen what’s happened, and they can see clearly what is coming, and they have made a joint decision that they’re not going to allow it to go through.”

    The local impact of lithium mining has led to questions on whether electrification really is the solution to fight global warming. Currently, lithium is mined in two ways. Hard-rock mining, the method projects in Portugal would employ, is a chemically-intensive process involving digging vast, open pits and removing rocks that contain lithium.

    The second way is salar pond mining, used in Argentina and Chile. It involves filling shallow pools with lithium-rich groundwater and letting it evaporate until only the mineral salts remain. Salar pond mines can spread over thousands of square kilometres, depleting groundwater reserves that are vital for local populations in desert regions where these mines exist.

    This world of lithium has been growing extremely fast in the past three or four years

    But there is an experimental process for lithium production that, if successfully scaled up, could produce battery-grade lithium with minimal impact.

    The city of Bruchsal, in Germany’s Baden-Württemberg region, discovered in 1979 that a geothermal water source under the city could be tapped for heat and steam to generate energy – and construction on a geothermal power plant began.

    The plant wasn’t immediately successful and shut down in 1987. But thanks in part to funding from the Renewable Energy Sources Act, the project was revived. In 2009, the Bruchsal plant began commercial energy generation.

    Now, local energy company Energie Baden-Württemberg (EnBW) is working with researchers from Karlsruhe Institute of Technology (KIT) to develop a process to extract tonnes of battery-grade lithium from the hot, salty water that powers the Bruchsal plant. If their project succeeds, it could produce Europe’s cleanest supply of lithium.

    Professor Jochen Kolb, chair of geochemistry and economic geology at KIT, actively researches methods for collecting lithium from geothermal sources in Germany’s Rhine Graben region.

    “We don’t want to disturb the power plant operation,” says Kolb, explaining that water which has already gone through heat extraction could then be put through a “chemical sieve” of lithium-manganese oxide, which selectively bonds with lithium and not the other mineral compounds in the water.

    “Of course, in Germany we have some regulations we have to follow,” Kold adds. “This is why selectivity is so important, so that we don’t modify the water too much.”

    Being attached to a geothermal power plant, this method of lithium extraction could be powered entirely by renewable energy, and because the water is pumped back underground, it doesn’t deplete groundwater resources. What’s more, the surface area of this kind of project is minimal compared to conventional mines.

    “In the end, the size of the extraction facility would be like two to three shipping containers,” Kolb says. Calculating for a 70 per cent efficiency rate of lithium extraction from that water, Kolb thinks it’s possible the plant could collect enough lithium for an e-bike in a few minutes, or a car battery in about an hour.

    “We believe we can produce 800 tonnes of lithium carbonate per year,” says Thomas Kölbel, group expert for geothermal and applied geology at EnBW. ”If you compare that to the needs of a battery for e-mobility, that’s 20,000 batteries for simple cars.”

    Scaling up this experimental lithium extraction process, however will take time. “We were successful with our pilot tests, so the next step is usually that you go to a demonstrator,” Kölbel says. He believes the demonstrator could be operational in 2025 or 2026.

    If everything works out successfully, there is reason to believe this method of lithium production could be scaled up across Europe – lithium-rich groundwater is not unique to Germany. Kolb says there could also be lithium sources across the continent.

    “I would think it could be in all the bigger basins,” he says, “so it could be around Paris or east France. Also east of Vienna and in Hungary there is potential. It is likely to be everywhere we have deep-seated salty waters.”

    After it has been mined, raw lithium’s materials need to be processed before they can be used in batteries. Apart from certain parts of Australia, nearly all lithium processing today occurs in China.
    Several companies are racing to bring lithium processing capacity to Europe. Among the leaders is AMG Lithium

    “We’ve purchased a piece of land 150km south of Berlin, which is enough to host the first [lithium processing] module,” says Dr André Majdalani, director of sales and marketing at AMG Lithium, which plans to begin refining lithium to battery grade at its new plant in Bitterfeld before the end of this year.

    AMG Group also owns a mine in Brazil, which has been in operation since 1945. After tin and some other metals were removed, the mine’s tailings were found to contain one per cent lithium. Eventually AMG wants to bring those tailings, along with a mix of other lithium sources, to its processor in Europe.

    But the first module to come online at AMG’s Bitterfeld plant will only refine technical-grade lithium into battery-grade lithium hydroxide. So raw materials from AMG’s operations in Brazil would still need to be shipped to China for initial processing.

    Still, processing lithium hydroxide locally is important because, as Majdalani puts it: “battery-grade hydroxide doesn’t like travelling too much”.

    To this end, AMG is expanding the refinery at the Bitterfeld site to a total of five modules by 2030, which will produce 100,000 tonnes of lithium hydroxide annually.

    “This world of lithium has been growing extremely fast in the past three or four years,” says Majdalani, adding that Europe has “truly worked” on the Critical Raw Materials Act.

    While legislation moves notoriously slowly in Europe, it appears the continent’s lithium producers, processors and consumers are all vying to get established.

    Not too far away from AMG’s Bitterfeld plant, Rock Tech is constructing its own lithium converter, which is expected to be commissioned next year. And Sweden-based battery manufacturer Northvolt has plans to build a giga-factory in Germany, having set clear goals for using 50 per cent recycled lithium in its batteries by 2030. The race is on.

  • EU Working on E-Bus for Lithium Deal With Latin American Nations

    EU Working on E-Bus for Lithium Deal With Latin American Nations

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    European Union officials are working on a plan that can help provide electric buses to Latin American nations in exchange for lithium supplies, as they seek to curtail the bloc’s reliance on China for this critical raw material.

    [/vc_column_text][/vc_column_inner][/vc_row_inner][vc_empty_space][vc_separator][vc_empty_space height=”10px”][vc_row_inner][vc_column_inner width=”2/3″][widget-SocialWidget][/vc_column_inner][vc_column_inner width=”1/3″][link url=”https://www.miningweekly.com/article/eu-working-on-e-bus-for-lithium-deal-with-latin-american-nations-2023-07-14″ content_text=”News source”][/vc_column_inner][/vc_row_inner][vc_empty_space][vc_column_text]The European Commission, the bloc’s executive arm, is in talks with automakers and governments to create a private sector consortium that can supply e-buses to Latin America, according to people familiar with the plan who did not want to be named as the discussions are private. In return, this will facilitate access to lithium deposits for the EU firms in these resource-rich countries, they said.

    The initiative is part of a broader push among western economies to ringfence their core industries and counter China, which has a stronghold over the green energy supply chain. For the Latin American countries, the deal will expedite a switch to cleaner public transport and curb carbon emissions.

    The quid pro quo pact is part of the EU’s 300-billion-euro ($335-billion) plan called the Global Gateway, the people said. It aims “to boost smart, clean and secure links in digital, energy and transport sectors” globally, according to the commission’s website.

    The EU has been “working intensively with its Latin American and Caribbean partners on an Investment Agenda,” a spokesperson for the commission said in an email, without sharing specific details. “The partnerships allow both sides to advance trade and investments into secure, sustainable and resilient raw materials value chains.”

    The 27-nation bloc plans to invest around 10-billion euros in projects across Latin America and the Caribbean, with additional contributions coming from the Member States bilaterally and the private sector.

    EU’s ambitious green goals are dependent on obtaining a large amount of minerals, including lithium whose demand is projected to surge 12 times by 2030 and 20 times by 2050.

    “We have to act now and with the highest speed,” said Bernd Schäfer, chief executive officer of EIT RawMaterials that is co-funded by the EU. “It’s a make or break moment.”

    LARGEST RESERVES
    The commission signed a pact with Argentina last month for developing “innovative and sustainable and responsible raw materials value chain projects.” It is expected to sign a similar agreement with Chile next week, two of the people familiar said. Chile and Argentina are among the countries with largest lithium reserves on the planet.

    Europe is not the only one racing to tie-in raw materials for key sectors such as electric vehicles and clean energy.

    A bill was introduced in the US this week to create a national strategy for securing supply chains of critical minerals from the Democratic Republic of Congo. Another US government program has given a $9.2 billion loan to Ford Motor Co. for building battery factories, in a bid to help local firms catch up to China in green technologies.

    The commission is still discussing the details of the plan with member states and the industry, the people said. This includes how the European companies could benefit from being part of the consortium.

    While the whole arrangement could take years to be finalized, the demand in the Latin American region — estimated at about 10,000 e-buses over the next few years — is large enough to stoke interest among European automakers, according to the people familiar.

    BRUSSELS MEETING
    Leaders from the EU, Latin American and Caribbean nations are expected to discuss Global Gateway investment projects in Brussels early next week. Business leaders and officials will also hold a roundtable in the city on critical raw materials and mobility on Monday.

    “It is not about buying lithium, but about sharing a resource that is scarce and that is strategic for sustainable mobility,” Xiana Mendez, Spain’s junior trade minister said in an interview.

    She added that EU intends to set up manufacturing in these resource-rich countries and not just extract minerals from them.

    “The difficulty would be for EU companies to cooperate,” she added. “It would be the first time something like this has been done.”[/vc_column_text][vc_empty_space][epic_post_tag compatible_column_notice=”” font_size=”17px”][/vc_column][vc_column width=”1/6″][vc_text_separator title=”LATEST NEWS” color=”juicy_pink”][vc_empty_space height=”10px”][widget-LatestPosts post_number=”4″][vc_empty_space height=”10px”][vc_text_separator title=”MOST POPULAR” color=”juicy_pink”][vc_empty_space height=”10px”][widget-popular-posts post_count=”4″][vc_empty_space][vc_wp_search title=”Search”][vc_empty_space][lvs display_like=””][/vc_column][vc_column width=”1/6″][/vc_column][/vc_row][/vc_section][vc_section][vc_row][vc_column][distance desktop_type=”50″][/vc_column][/vc_row][vc_row][vc_column width=”1/2″][epic_block_28 compatible_column_notice=”” number_post=”6″ post_offset=”0″ first_title=”You may also like”][/epic_block_28][vc_empty_space][/vc_column][vc_column width=”1/2″][epic_hero_5 compatible_column_notice=”” hero_margin=”0″ content_filter_number_alert=”” post_offset=”0″][/vc_column][/vc_row][/vc_section]

  • Barroso lithium project demonstrates ‘outstanding’ economics

    Barroso lithium project demonstrates ‘outstanding’ economics

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    Savannah Resources Plc Announces New Scoping Study for the Barroso Lithium Project demonstrates Outstanding Economics

    [/vc_column_text][/vc_column_inner][/vc_row_inner][vc_empty_space][vc_separator][vc_empty_space height=”10px”][vc_row_inner][vc_column_inner width=”2/3″][widget-SocialWidget][/vc_column_inner][vc_column_inner width=”1/3″][link url=”https://www.kitco.com/news/2023-06-12/Savannah-says-new-scoping-study-for-Barroso-lithium-project-demonstrates-outstanding-economics-with-IRR-of-77.html” content_text=”News source”][/vc_column_inner][/vc_row_inner][vc_empty_space][vc_column_text](Kitco News) – Europe-focused lithium developer Savannah Resources (AIM: SAV) today reported the results of a new scoping study undertaken on the company’s 100% owned Barroso lithium project, located in northern Portugal.

    According to a company news release, a new scoping study for the Barroso lithium project demonstrates “outstanding” economics with post-tax NPV of US$953 million, IRR of 77%, and 1.3 year payback; as well as life of mine (LOM) revenue of US$4.2 billion, EBITDA of US$2.8 billion, and post-tax free cash flow of US$1.7 billion.

    Savannah added that the new study is based on average 5.5% grade spodumene concentrate LOM price of US$1,464/t, compared to current 6% grade spot prices of US$3,500/t.

    The company also noted that the project is considered by independent consultants to be of “low technical risk” with open pit mining and conventional processing combining dense media separation and a flotation circuit utilizing environmentally friendly reagents to produce a 5.5% Li2O grade spodumene concentrate.

    The project is scheduled to commence producing concentrate in mid-2026 subject to completion of DFS and project financing.

    “Capable of producing just under 200,000tpa of spodumene concentrate, or c.25ktpa LCE (lithium carbonate equivalent), the Barroso lithium project is one of the most significant potential lithium raw material sources in the European Union,” the company said.

    “Having received its key environmental approval last month and now with the strong business case implied by the scoping study, the Barroso lithium project is well placed to fulfil its role as a major source of responsibly produced lithium in Europe. In this way, it can help to establish Portugal as a key player in Europe’s own end-to-end lithium-ion battery value chain,” it added.

    Savannah Resources is a mineral resource development company and sole owner of the Barroso lithium project in northern Portugal. Production is targeted to begin in 2026, producing enough lithium for 0.5m vehicle battery packs per year.[/vc_column_text][vc_empty_space][epic_post_tag compatible_column_notice=”” font_size=”17px”][/vc_column][vc_column width=”1/6″][vc_text_separator title=”LATEST NEWS” color=”juicy_pink”][vc_empty_space height=”10px”][widget-LatestPosts post_number=”4″][vc_empty_space height=”10px”][vc_text_separator title=”MOST POPULAR” color=”juicy_pink”][vc_empty_space height=”10px”][widget-popular-posts post_count=”4″][vc_empty_space][vc_wp_search title=”Search”][vc_empty_space][lvs display_like=””][/vc_column][vc_column width=”1/6″][/vc_column][/vc_row][/vc_section][vc_section][vc_row][vc_column][distance desktop_type=”50″][/vc_column][/vc_row][vc_row][vc_column width=”1/2″][epic_block_28 compatible_column_notice=”” number_post=”6″ post_offset=”0″ first_title=”You may also like”][/epic_block_28][vc_empty_space][/vc_column][vc_column width=”1/2″][epic_hero_5 compatible_column_notice=”” hero_margin=”0″ content_filter_number_alert=”” post_offset=”0″][/vc_column][/vc_row][/vc_section]

  • European Energy Metals Commences Finnish Pegmatite Project Phase I Exploration

    European Energy Metals Commences Finnish Pegmatite Project Phase I Exploration

    [vc_section][vc_row][vc_column][distance desktop_type=”30″][lvs][distance desktop_type=”30″][vc_btn title=”Source – europeanenergymetals.com” color=”sky” i_type=”material” i_icon_material=”vc-material vc-material-perm_device_information” add_icon=”true” link=”url:https%3A%2F%2Feuropeanenergymetals.com%2Fnews%2Fnews-2023%2Feuropean-energy-metals-commences-finnish-pegmatite-project-phase-i-explorationjuly-13-2023-05-02-02.html|target:_blank”][distance desktop_type=”30″][vc_column_text]Phase I will consist of mapping and sampling of the documented pegmatite occurrences throughout the Finnish Pegmatite Project. Prospecting for new occurrences will also form part of the program. Resourceful Geoscience Solutions Inc., a Canadian consulting firm with in-country experience, will undertake the program, with assistance from Finnish company GeoPool OY.

    “We are very pleased to commence 2023 exploration, with Phase I focussed on evaluating Finnish Pegmatite Project to highlight high priority areas for subsequent permitting for Phase II drilling,” stated European Energy Metals CEO Jeremy Poirier. “European Energy’s objective remains H1 2024 drilling as we continue to work toward developing the Finland Pegmatite Project portfolio into one of Europe’s major sources of lithium and REE’s, critical metals to the green future,” he continued.

    The exploration crews plan to work north to south commencing with the Nabbia concession, through Lappajarvi East and West, to Katalia and finally wrapping up at the Kovelo concession. Samples will be sent to the ALS Minerals geochemical prep lab in Sodankylä, Finland. The samples will be analyzed with procedure ME-MS89L, utilizing a sodium peroxide fusion and ALS’s Super Trace ICP-MS methodology.

    Pursuant to an earn-in agreement with Capella Minerals Ltd., European Energy has the right to earn an 80% interest in the Finnish Pegmatite Project by issuing 1,750,000 shares, paying Cdn$500,000 and incurring Cdn$2,500,000 dollars in exploration expenditures staged over a 4 year earn in period. A detailed assessment of the historic and government exploration data compiled by the Finnish Geological Survey (“GTK“) identified a series of permissive tracts for LCT pegmatites. The concessions comprising the Finnish Pegmatite Project were identified as a result of this pegmatite research.

    About the Finland Pegmatite Project

    The Finland Pegmatite Project consists of four exploration concessions in central Finland and one exploration concession in southern Finland. These reservations cover a total area of 2,300 square kilometres and are focused on Lithium-Cesium-Tantalum or LCT pegmatite complexes located within the Jarvi-Pohjanmaa and Seinajoki lithium-permissive tracts as defined by the Geological Survey of Finland (GTK). Four of the reservations (Nabba, Lappajarvi West, Lappajarvi East and Kaatiala) lie immediately adjacent to, and to the south of, Keliber Oy’s spodumene mine development project in the Kaustinen district.

    Keliber Oy is a consortium, comprised of Sibanye-Stillwater (79%), Finnish Minerals Group (20%) and Finnish shareholders (1%). A Definitive Feasibility Study by Hatch dated June 14, 2018 states a JORC Code 2012 compliant Measured and Indicated Mineral Resource of 9.47 million tonnes at a grade of 1.16% Li2O.1

    European Energy cautions investors the presence of lithium mineralization at Keliber Oy is not necessarily indicative of similar mineralization at the Nabba concession.

    1. Definitive Feasibility Study – Executive Summary June 14, 2018 by Hatch. http://mb.cision.com/Public/14755/2547948/b83a99f0255413fe.pdf

    R. Tim Henneberry, P.Geo. (BC), a Director of European Energy Metals Corp., is the Qualified Person who has reviewed and approved the technical content disclosed in this release.

    About European Energy Metals Corp.

    European Energy Metals Corp. is a junior mining company currently focussed on the Lithium-Cesium-Tantalum Finnish Pegmatite Project in central Finland. Governing bodies in Europe and Finland are legislating environmentally friendly and energy independent laws and policies. One of the key components is access to REE and, specifically, lithium. The Company is also focusing on its Champ Copper Project located in Southeast British Columbia.[/vc_column_text][distance desktop_type=”30″][/vc_column][/vc_row][/vc_section]

  • European Energy Metals Files Finnish Lithium-Cesium-Tantalum Pegmatite Project Technical Report

    European Energy Metals Files Finnish Lithium-Cesium-Tantalum Pegmatite Project Technical Report

    [vc_section][vc_row][vc_column][distance desktop_type=”30″][lvs][distance desktop_type=”30″][vc_btn title=”Source – europeanenergymetals.com” color=”sky” i_type=”material” i_icon_material=”vc-material vc-material-perm_device_information” add_icon=”true” link=”url:https%3A%2F%2Feuropeanenergymetals.com%2Fnews%2Fnews-2023%2Feuropean-energy-metals-files-finnish-lithium-cesium-tantalum-pegmatite-project-technical-reportjuly-6-2023-04-02-02.html|target:_blank”][distance desktop_type=”30″][vc_column_text]Vancouver, British Columbia–(Newsfile Corp. – July 6, 2023) – European Energy Metals Corp. (TSXV: FIN) (FSE: W28) (“European Energy Metals” or the “Company“) is pleased to announce the receipt and subsequent SEDAR filing of an independent technical report entitled “Finland Pegmatite Project Central Ostrobothnia, Western Finland” by Warren D. Robb, P.Geo. (BC) with an effective date of May 30, 2023 (the “Technical Report“). European Energy Metals has the option to earn up to an 80% interest in the Finland Pegmatite Project (“FPP“) from Capella Minerals Ltd. (TSXV: CMIL) as detailed in the Company’s 2023-March-06 and 2023-March-20 news releases. The report can be found on SEDAR or the company’s website: europeanenergymetals.com,

    The FPP consists of five mineral reservations prospective for lithium-cesium-tantulum and cover an area of 2300 square kilometers. The report focused on the four northern reservations Nabba, Lappajarvi W, Lappajarvi E, and Kaatiala, located 350 kilometers north of Helsinki and road accessible from the city of Kokkola.

    “The Technical Report supports the Company’s decision to acquire the Finland Pegmatite Project and provides a good technical base for our geological crews as they design our 2023 Phase I exploration program,” stated European Energy Metals CEO Jeremy Poirier. “We believe our Finland Pegmatite Project portfolio has the potential to become a significant source of lithium and REE’s for Europe’s domestic critical metals industry,” he continued.

    The Geological Survey of Finland (“GTK“) has been conducting regional studies since the 1960’s, including: till geochemistry, airborne magnetics and radiometrics, and rock sampling. They combined their data with industry data from Kebiler Oy and other companies to complete a study for a predictive model for LCT pegmatites in Finland, identifying several “permissive tracts” with potential to host LCT pegmatite deposits. The Finnish Pegmatite Project lies within two of the tracts: the 255 km² Kaustinen tract, host to the Kebiler Oy LCT lithium project, and the 3,672 km² Järvi-Pohjanmaa tract.

    GTK identified anomalous areas in the Kaustinen tract and followed up with detailed geochemical till sampling between 2003 and 2023, sampling at 100 metre intervals along lines spaced approximately 1000 metres apart, with the lines oriented perpendicular to the ice flow direction at 240o. An anomaly was identified on the Nabba concession.

    Cannot view this image? Visit: https://images.newsfilecorp.com/files/9006/172476_4a3fbbc0a4b4a944_001.jpg

    Figure 1. Hilo Finland Lithium Project Exploration Reservations

    To view an enhanced version of this graphic, please visit:
    https://images.newsfilecorp.com/files/9006/172476_4a3fbbc0a4b4a944_001full.jpg

    GTK identifed and described pegmatite mineralization in boulder trains and in outcrop on the three southern reservations Lappajarvi W, Lappajarvi W, and Kaatiala, but did not analyze the rocks for lithium.

    Cannot view this image? Visit: https://images.newsfilecorp.com/files/9006/172476_4a3fbbc0a4b4a944_002.jpg

    Figure 2. Permissive Tracts for Lithium
    (3 is Järvi-Pohjanmaa tract; 5 is Kaustinen tract) Source: Quantitative assessment of undiscovered resources in lithium-caesium-tantalum pegmatite hosted deposits in Finland by R.Kalevi, E.Pasi, A.Timo, H.Tapio, K.Niilo, K.Janne, L.Panu and T.Tuomo dated 2018. Geological Survey of Finalnd Bulletin 406.

    To view an enhanced version of this graphic, please visit:
    https://images.newsfilecorp.com/files/9006/172476_4a3fbbc0a4b4a944_002full.jpg

    The four exploration reservations* all lie within the Pohjanmaa belt of rocks and are underlain by mica schists and mica gneisses, which are intercalated with metavolcanic rocks. The Pohjanmaa belt, which includes the Kaustinen and Järvi-Pohjanmaa tracts, hosts several rare element pegmatites in the north proximal to the Nabba reservation. Li pegmatites of the Kaustinen province belong to the albite spodumene type according to the classification of Černý & Ercit (2005). The Li pegmatites have intruded after the metamorphic peak conditions of the area and crosscut the metavolcanic and metasedimentary rocks at the northern edge of the belt.

    *Mineral Reservations in Finland are valid for two years and grant the holder the right to evaluate the reservation’s geology to identify and subsequently secure areas within the reservation deemed worthy of further exploration. The holder can then apply for an Exploration permit over the smaller worthy areas to explore further.

    The Technical Report recommends the Company design a ground follow up exploration program consisting of prospecting, geological mapping combined with rock sampling and infill till geochemical sampling to identify target areas with the exploration reservations for follow up exploration permit applications. The cost of the recommended exploration program is budgeted at $500,000.

    The data disclosed in this news release is related to historical base of till sampling results. European Energy has not undertaken any independent investigation of the sampling, nor has it independently analyzed the results of the historical exploration work in order to verify the results. European Energy considers these historical base of till results relevant as the Company is using this data as a guide to plan exploration programs.

    R. Tim Henneberry, P.Geo. (BC), a Director of European Energy Metals Corp., is the Qualified Person who has reviewed and approved the techgnical content disclosed in this release.

    About the Finland Pegmatite Project
    The Finland Pegmatite Project consists of four exploration concessions in central Finland and one exploration concession in southern Finland. These reservations cover a total area of 2,300 square kilometres and are focused on Lithium-Cesium-Tantalum or LCT pegmatite complexes located within the Jarvi-Pohjanmaa and Seinajoki lithium-permissive tracts as defined by the Geological Survey of Finland (GTK). Four of the reservations (Nabba, Lappajarvi W, Lappajarvi E and Kaatiala) lie immediately adjacent to, and to the south of, Keliber Oy’s spodumene mine development project in the Kaustinen district.

    Keliber Oy is a consortium, comprised of Sibanye-Stillwater (79%), Finnish Minerals Group (20%) and Finnish shareholders (1%). A Definitve Feasibility Study by Hatch dated June 14, 2018 states a JORC Code 2012 compliant Measured and Indicated Mineral Resource of 9.47 million tonnes at a grade of 1.16% Li2O.1

    European Energy Metals cautions investors the presence of lithium mineralization at Keliber Oy is not necessarily indicative of similar mineralzation at the Nabba concession.

    Under the terms of an Earn In Agreement with Capella Minerals Limited, European Energy may earn an 80% interest in the Finland Pegmatite Project by issuing 1,750,000 shares, paying Cdn$500,000.00 and incurring Cdn$2,500,000.00 dollars in exploration expenditures staged over a 4 year earn in period.

    1. Definitive Feasibility Study – Executive Summary June 14, 2018 by Hatch. http://mb.cision.com/Public/14755/2547948/b83a99f0255413fe.pdf

    About European Energy Metals Corp.
    European Energy Metals. is a junior mining company currently focussed on the Lithium-Cesium-Tantalum Finnish Pegmatite Project in central Finland. Governing bodies in Europe and Finland are legislating environmentally friendly and energy independent laws and policies. One of the key components is access to REE and specifically Lithium. The company is also focusing on its Champ Copper project located in Southeast British Columbia.

    FOR FURTHER INFORMATION PLEASE CONTACT:

    Jeremy Poirier, CEO
    Telephone: 604-722-9842
    Email: info@europeanenergymetals.com

    Neither the TSX Venture Exchange nor its Regulation Services Provider (as that term is defined in the policies of the TSX Venture Exchange) accepts responsibility for the adequacy or accuracy of this release.

    Cautionary Statements Regarding Forward-Looking Information

    This news release contains forward-looking information within the meaning of applicable securities legislation. Forward-looking information is typically identified by words such as: believe, expect, anticipate, intend, estimate, postulate and similar expressions, or are those, which, by their nature, refer to future events. Such statements include, without limitation, statements regarding the future results of operations, performance and achievements of the Company, including the future planned exploration programs for, and the exploration potential of, the Finland Pegmatite Project. Although the Company believes that such statements are reasonable, it can give no assurances that such expectations will prove to be correct. All such forward-looking information is based on certain assumptions and analyses made by the Company in light of their experience and perception of historical trends, current conditions and expected future developments, as well as other factors management believes are appropriate in the circumstances. This information, however, is subject to a variety of risks and uncertainties and other factors that could cause actual events or results to differ materially from those projected in the forward-looking information. Important factors that could cause actual results to differ from this forward-looking information include the costs of any anticipated work programs and the ability to fund such costs, required approvals in connection with any work programs and the ability to obtain such approvals, risks inherent in exploration as well as those described under the heading “Risks and Uncertainties” in the Company’s most recently filed MD&A. The Company does not intend, and expressly disclaims any obligation to, update or revise the forward-looking information contained in this news release, except as required by law. Readers are cautioned not to place undue reliance on forward-looking information.[/vc_column_text][distance desktop_type=”30″][/vc_column][/vc_row][/vc_section]

  • Lithium and the dream of Cornwall’s mining revival

    Lithium and the dream of Cornwall’s mining revival

    [vc_section][vc_row][vc_column][distance desktop_type=”30″][lvs][distance desktop_type=”30″][vc_btn title=”Source – theiet.org” color=”sky” i_type=”material” i_icon_material=”vc-material vc-material-perm_device_information” add_icon=”true” link=”url:https%3A%2F%2Feandt.theiet.org%2Fcontent%2Farticles%2F2023%2F07%2Flithium-and-the-dream-of-cornwall-s-mining-revival%2F|target:_blank”][distance desktop_type=”30″][vc_column_text]Cornwall rests on a trove of one of the world’s most desirable metals: lithium. There are hopes that its mining economy could be reborn as part of a nationwide green industrial revolution. That dream might just become a reality – but nothing can be taken for granted.

    Lithium, the lightest metal element, is a vital resource for the energy transition. It is used in batteries for EVs and grid-scale energy storage – a single Tesla Model S battery contains 12kg of lithium.

    Cornwall happens to be sitting on a massive lithium deposit, prompting former Prime Minister Boris Johnson to describe it as the “Klondike of lithium”. Would-be miners – most notably the companies British Lithium and Cornish Lithium, both based in the county – have descended on the Cornish landscape, poring over old geological maps to search for buried treasure. At present, there is no full-scale operation or any certainty of a full-scale operation. However, pilot projects have yielded encouraging results, and the companies hope that by 2030 they could be extracting thousands of tonnes of lithium every year.

    There is sincere hope that this will come to fruition. Cornwall’s mining heritage reaches back to the Bronze Age. Its landscape is so sculpted by abandoned mines that the Cornwall and West Devon Mining Landscape was recognised as a Unesco World Heritage Site in 2006. However, the decline of its mining industries through the 20th century has left it the second poorest area in Northern Europe, in no small part dependent on tourism and, until recently, EU funding. The dream is that the Cornish mining industry might be revived – this time, without harming its people and environment – and become an important part of that green industrial revolution the UK has been promised.

    The energy transition is driving demand for lithium to unprecedented heights. According to US-based alliance Li-Bridge, demand for lithium-ion batteries in the US alone is set to grow sixfold by 2030. “I think the world has realised that lithium is obviously an essential element, and demand is going to go up massively,” says Jeremy Wrathall, CEO of Cornish Lithium. “We’re talking about five million tonnes of [annual] demand by 2035.”

    At present, lithium production is dominated by a few countries. Australia is the leader (approaching 100,000 tonnes of annual production), followed by Chile, China, Argentina, Zimbabwe and Portugal. Not unusually for energy transition metal mining, lithium mining often comes at great environmental and human cost. Geothermal lithium extraction as performed in South America, for instance, involves laying out lithium-rich brine in colossal evaporation pools beneath the Atacama sun. In Chile’s lithium-rich Salar de Atacama salt flat, mining activities consume almost two-thirds of the area’s water, contributing to devastating water shortages. There is an increasing feeling that lithium mining must be carried out more responsibly if the world is to reap its benefits fully. This could be an opportunity for the UK to distinguish itself. It would have a long way to go to catch up with the big lithium producers in terms of volume, but it may be able to mine the world’s most sustainable lithium.

    Of course, there are other reasons why the UK government might be interested in domestic lithium production. The US and its allies are scrambling to establish supply chains for technologies of strategic importance – from solar panels to semiconductors – that circumvent China, which is the world leader in both raw critical minerals and lithium-ion battery production. Domestic lithium mining, along with domestic battery manufacturing, would be strongly in the UK’s geopolitical interests. Then-minister Nadhim Zahawi said in 2020: “The potential to become self-sufficient in lithium, which Cornish mining represents, will, I think, be incredibly important to the British economy.”

    Cornish mining: on the rebound?

    There are two potential avenues for lithium production: hard-rock mining and direct extraction from brines. The more traditional approach is hard-rock mining. This involves digging rocks, crushing and grinding them to separate the lithium micas (a group of pinkish minerals rich in the element), then subjecting them to various processes to extract the lithium.

    Both British Lithium and Cornish Lithium are experimenting with hard-rock mining around St Austell. The former is using its own patented technology for the extraction stage, and the latter is using technology from Australia-based Lepidico. Both companies seem confident. Notably, British Lithium has identified a suitable lithium resource in a former china clay mine which could support annual production of 20,000 tonnes of lithium – enough to meet a third of national demand around the end of the decade.

    Whether lithium extracted via hard-rock mining can be considered sustainable hinges mainly on the question of energy. All of that crushing and grinding is incredibly energy-intensive. British Lithium acknowledged in a 2021 interview that if it and Cornish Lithium ran operations concurrently, they would overload the grid. Hopefully, nothing of the sort will come to pass. Both companies are interested in establishing private power networks supplied by local renewable resources like solar and offshore wind (Imerys, which carries out related operations in Cornwall, already has its own private network).

    In 1864, a brine ‘rich in Lithia’ was discovered in a mine near Redruth. Cornwall sits on a 280-million-year-old granite sheet, through which water has trickled, absorbing and dissolving lithium in its path. This leaves lithium-rich springs beneath the Cornish landscape. With hard-rock mining, Wrathall says, the rock must be cracked to get the lithium solution out, but, with these brines “nature has already done it for you”.

    Extracting lithium from brine is a more experimental approach. Cornish Lithium, which is attempting it, prefers not to call it ‘mining’ at all. The company aims to take brine up to ground level, directly extract the lithium (concentrating the brine via reverse osmosis, followed by an extraction step), then put it back in the ground. This could be a remarkably undisruptive way to produce lithium. In terms of infrastructure, it would require little more than a shed-sized plant and two boreholes: one to collect the brine and one to return it. In 2020, the company confirmed it had found ‘globally significant’ levels of lithium in waters under Cornwall. It recently drilled its third borehole and hopes to have small-scale production (up to 300-500 tonnes a year) running by 2025.

    Cornish brines are much less lithium rich than South American brines (220-260mg/L vs 2,000mg/L), but have certain advantages that bode well for sustainability. Elsewhere in the world, these brines surface at very high temperatures and need to be kept under high temperature and pressure to prevent the dissolved solids from crystallising. Cornish brines surface at just 80°C, making them easier and more energy-efficient to process. While not hot enough for geothermal power generation, they are hot enough for district heating networks. Cornish Lithium is already supplying some heat to local clotted cream company Rodda’s and is discussing the possibility of providing heat for greenhouses.

    Professor Karen Hudson-Edwards of Camborne School of Mines, an expert in sustainable mining, acknowledges that further work could be needed to ensure this process is truly sustainable – such as understanding the impacts of changing the chemical composition of these brines – but concludes: “In terms of overall impact I think geothermal lithium mining is as sustainable as we can get. It’s not going to create a lot of waste, the footprint is small, and Cornish Lithium are very committed to sustainability, so that’s a big plus as well.

    “Mining has a bad reputation with many people, for [good] reasons. Really, it has not been a great performer in the past but I think the companies are waking up to the fact that people are demanding – well, insisting on – sustainability and good practice or they won’t fund the mining companies if they don’t do that. Things are changing quickly.”

    Thanks to its natural resources and the sincerity of the companies involved, there is plenty of potential for sustainable lithium mining in Cornwall. Some hope that this – along with renewables and perhaps even a battery factory (St Austell and Newquay MP Steve Double has pressed the government on the possibility) – could place Cornwall at the forefront of a green industrial revolution that is good for the economy, communities in deindustrialised areas, and the environment.

    “I absolutely, categorically do think [lithium extraction] could be part of a green revolution in Cornwall,” Wrathall says. Among other benefits, he emphasises that lithium production could offer a great incentive for ambitious young people to stay in their home county.

    This is a critical consideration. There is a strong feeling that Cornwall must benefit from this mining revival, rather than having its labour and resources exploited by others (this is complicated by big questions about land ownership, still dominated in the county by hereditary landowners like the Duchy of Cornwall). An important part of ensuring that Cornwall benefits from lithium mining is investing in skills and infrastructure to support the industry. “The metal might be in the ground; you might be able to extract it technologically and economically, but we’ve got skills gaps at the moment. [Local] people haven’t had the opportunity to study and get to a stage where they would be able to easily or naturally go into these jobs,” says Dr Eva Marquis, also of Camborne School of Mines.

    “Then you’ve got a social tension if you can’t get people in the county with the right skillset and you want to get these mines up and running in the next five to 10 years. If you don’t invest in the talent pipeline now, you’re […] going to have to bring people in, and that will probably skew the social divide even more. There would be some benefit to having more people down here but we’re already in a housing crisis, so there are lots of underlying challenges.”

    The amount of work required to make the most of Cornwall’s lithium deposits should not be underestimated. It will be a complex, costly endeavour and inherently risky – will markets be willing to pay a large enough green premium to make it economically feasible? The recent collapse of lithium-ion battery start-up Britishvolt, before it was bought out of administration by an Australian firm, should remind us to take nothing for granted.

    Experts agree that the challenge is bigger than the main two companies involved, and call for a clear, coordinated strategy to support this green industry and others. Wrathall says: “It doesn’t help that our government hasn’t got an industrial strategy. If we’re to retain the car industry in the UK, that would be helpful. The odds are against us at the moment, but I think Cornwall has got the potential to restore its legacy of innovation and technological leadership.”

    SETTLEMENTS

    What’s next for mining towns?

    Former mining settlements can, with serious cash and co-ordinated action, become home to sustainable new industries. Australia’s Latrobe Valley has been moving away from coal mining to renewable energy and emerging industries like hydrogen production in a transition supported with funding from the Victoria state government for infrastructure, job training programmes and partnerships between industry, government and community groups.

    In having the potential to revive its mining heritage, Cornwall is particularly lucky. A recent Nature Communications paper estimates that just 7 per cent of rural towns in coal-mining systems have the potential to mine energy transition metals like lithium, as these resources are not usually co-located.

    “These towns may be best positioned to prosper through rapid workforce re-deployment from a coal economy to an energy transition metals economy, although they would face significant challenges in adapting,” says the University of Göttingen’s Dr Kamila Svobodova, an author of the paper.

    “Favourable geography alone may not be enough to revive deindustrialised areas. Other factors, such as infrastructure and local knowledge and expertise, also play a crucial role in the success of these projects. For example, the development of local supply chains and the availability of skilled labour can help create a sustainable green economy in a region. A key challenge for successful industrial transition is boosting the ability of a region and its industries to break out of locked-in paths of development by pursuing innovation, new technological pathways and industrial renewal. This must be place-based and time-specific. Ensuring this transition is done in a socially acceptable and just way is fundamental to growth and well-being in the region.”[/vc_column_text][distance desktop_type=”30″][/vc_column][/vc_row][/vc_section]

  • A perspective on Europe’s rising lithium demand

    A perspective on Europe’s rising lithium demand

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    Michael Schmidt, Senior Analyst at the German Mineral Resources Agency, spoke to Innovation News Network about the steps that Europe must take to ensure that the demand for lithium is met.

    Demand for lithium in European battery applications is expected to increase by over 300% between 2023 and 2030. This rise is mainly driven by the demand for lithium-ion batteries in electric vehicles (EVs).

    Lithium-ion batteries are the dominant battery technology in the EV industry due to their safety, durability, and long-life cycle. Lithium cannot be substituted from the battery, meaning that in the near future, demand for the critical mineral will not decrease.

    As a result of this, Europe is expected to have the second-largest share of global lithium demand for the foreseeable future.

    This raises the question as to how the region will ensure that this demand is met.

    The landscape for rising lithium demand in Europe

    Currently, Europe accounts for under 1% of the global lithium supply, making the region highly import dependent.

    Despite this, demand projections estimate that the EU will need around 400,000 tonnes of lithium carbonate equivalent.

    To ensure that this demand is met, analysts have argued that the EU must get every lithium project up and running. At the moment, the region has 28 lithium mine projects under development – 19 in EU Member States and four in the UK.

    These projects are forecast to begin operations in the late 2020s and are set to be producing nearly 70kt lithium carbonate equivalent by 2030.

    Policy to implement domestic production

    The importance of securing a domestic supply of lithium was underscored in the Critical Raw Materials Act, announced in March 2023.

    The Act aims to provide a framework to strengthen its domestic critical mineral supply chains, targeting for the EU to meet 10% of its mined demand for critical minerals – including lithium.

    However, there is still a long way to go to ensure that these goals are met.

    To find out more about Europe’s rising lithium demand, Innovation News Network spoke to Michael Schmidt, Senior Analyst at the German Mineral Resources Agency (DERA).

    Is Europe on track to meet demand for lithium?

    If there is a demand for roughly 400,000 tonnes of lithium carbonate equivalent, Europe could be self-sufficient for 25-35% of resources in 2030. The rest would have to be managed by imports from other countries.

    Towards the 2040s there is potential to reduce the import dependence further as projects evolve in Europe.

    However, currently, an import dependence of around 50-65% is being forecasted for the region.

    Meeting the demand for lithium resources depends on what EV uptake will be, based on regulatory frameworks.

    How should European policymakers ensure that more projects are set up in the continent?

    Europe needs to find investors to finance potential lithium projects. To meet demand, Europe calls for €10-15bn.

    © shutterstock/Smile Fight

    Looking at the company structures of mining operators in Europe, they are mostly owned by Canadian or Australian explorers and investors.

    There is no real investor sentiment here in Europe. Somebody must pay for the project development, but who is it going to be? That is one of the biggest questions.

    What are the challenges facing European industry in meeting the rise in demand for lithium?

    Financing and social and public acceptance are the major challenges facing the European industry. Sustainability issues as well as regulation are also of concern.

    First, we need to look at the acceptance of mining in Europe. We need to implement the fact that mining is necessary and that it will have an environmental impact. It is a responsibility to minimise this footprint.

    We need to mine locally in Europe; the continent cannot solely rely on imports. This is the best way to guarantee a secure and stable supply of critical metals.

    Financing is another crucial challenge. Looking at Imery’s project fund for 34,000 tonnes of lithium, the financing required is a staggering €1bn.

    The demand in Europe, therefore, would call for €10-15bn of investment, and as previously stated, there is currently a lack of investor sentiment here in the region. This must change.

    These issues must be overcome to ensure that the rising demand for lithium in Europe is met, enabling the region to successfully transition to clean energy and reach its 2050 net zero goals.[/vc_column_text][distance desktop_type=”30″][/vc_column][/vc_row][/vc_section]

  • Eramet in talks with European carmakers

    Eramet in talks with European carmakers

    [vc_section][vc_row][vc_column][distance desktop_type=”30″][lvs][distance desktop_type=”30″][vc_btn title=”Source – mining.com” color=”sky” i_type=”material” i_icon_material=”vc-material vc-material-perm_device_information” add_icon=”true” link=”url:https%3A%2F%2Fwww.mining.com%2Fweb%2Feramet-in-talks-with-european-carmakers-over-argentina-lithium-plan-ceo%2F%3Futm_source%3DDaily_Digest%26utm_medium%3Demail%26utm_campaign%3DMNG-DIGESTS%26utm_content%3Deramet-in-talks-with-european-carmakers-over-argentina-lithium-plan–ceo|target:_blank”][distance desktop_type=”30″][vc_column_text]French mining group Eramet is in talks with several European carmakers over commercial agreements that would help the company finance its lithium production project in Argentina, chief executive officer Christel Bories said.

    The race for lithium, a key raw material used to make batteries for electric vehicles, is speeding up as rising tensions between the United States and China push Europe’s automakers to secure their own supply chain.

    “We’re talking with a lot of OEMs (Original Equipment Manufacturers, or carmakers) today,” Bories told Reuters on Saturday at a business conference in the southeastern city of Aix-en-Provence, adding that these included French ones.

    “We’re currently discussing potential commercial agreements,” she said, with reference to the group’s lithium project in Argentina, adding these involve joint marketing and so-called offtake accords, or commitments to buy a certain volume of the upcoming production.

    Eramet is due to start lithium production next year in Argentina in partnership with Chinese steel group Tsingshan, and has said it is interested in studying other potential sites in a lithium-rich zone of South America that also includes Chile.

    “We’re positioning ourselves (in Chile), we have discussions with state-owned companies,” Bories said, with the aim to gain potential lithium concessions “in the coming months.”

    Two thirds of the world’s lithium reserves are located in South America, Bories said.

    Demand for electric vehicles (EVs) has increased as climate-conscious consumers snap up cars with electric powertrains, amid soaring fuel prices.

    Bories confirmed commodities group Glencore was among parties to have expressed interest in helping finance Eramet’s lithium production in Argentina.

    She declined to elaborate further or give the names of the European carmakers involved in the talks.

    (By Mathieu Rosemain; Editing by Elaine Hardcastle)[/vc_column_text][distance desktop_type=”30″][/vc_column][/vc_row][/vc_section]

  • Lithium mine developer: “The end buyer of our product will be large European manufacturers of electric cars”

    Lithium mine developer: “The end buyer of our product will be large European manufacturers of electric cars”

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    By 2030-2032, the demand for lithium products in the EU will grow 10 times, experts predict

    Ukraine is one of the world leaders in lithium reserves, a strategic raw material for the production of batteries for electric vehicles. The volume of its exact reserves is a state secret, but gradually, despite the war, investors are beginning to enter this area. One of them is “UkrLitiyVydobuvannya” by Sergei Tabalov from the Kirovohrad region. The director for strategic development of this company, Denis Alyoshin , told Business Telegraph at what stage the project is.

    About Ukrainian deposits

    – Please tell us about your project.

    — Let me start by saying that there are two types of lithium in the world. The first is in salt lakes, in South Africa, Chile, Argentina, Bolivia. There are also hard ore deposits, which in 90% of cases contain the mineral spodumene.

    — What are the deposits in Ukraine?

    — We have solid ore deposits. But it is in our Polokhovsky deposit in the Kirovohrad region (near the village of Smolino) that pegmatite ore is located, in which another mineral is petalite.

    – There are other deposits with lithium in the Kirovograd region. Will you develop them too?

    — Near us, 70 kilometers away, there is indeed a Dobraya section. It contains a combination of spodumene and petalite. But the special permit that our company has does not apply to this deposit.

    — Ukraine is also rich in lithium in the Donetsk and Zaporozhye regions. What’s there?

    – Indeed, there is a Shevchenkovskoe deposit in the Donetsk region, it seems that there are spodumene ores there. And there is also a deposit called “Krutaya Balka” in the Zaporozhye region. But we did not study its composition. It is under occupation. That is, out of four fields, unfortunately, one is under occupation, the other is in the frontline zone. And only two deposits in the Kirovograd region are available for production.

    — UkrLitiiVydobuvannya has long had a license to develop the Polokhovskoye deposit .

    — Yes, the Polokhovskoye field is so far the only one in Ukraine for which the owners of our company acquired a special permit in 2017 for UAH 119 million. Then it was about 4.5-5 million dollars. A record amount by that time for rare earth metals. In March 2021, we confirmed ore reserves in accordance with the international JORC standard. They make up about 75 million tons of pegmatite ore. This is a very large deposit by European standards.

    Denis Aleshin: “We focus on the demand in the EU”

    – How will you mine?

    – We considered two options: light ( quarry . – Ed. ) open-pit mining and the mine method. We settled on the mine, because the environmental component is important to us. We want to be esg-friendly ( environmental, social and corporate governance. — Ed.). Although Ukraine is not yet in the European Union, we believe that it will be there in the next few years. We will do everything according to the highest European standards. The mining method brings much less harm to the environment than open-pit mining. The mine will cost much more to the investors of the project, but we choose this method. We will go deeper by about 600 meters into the depth of the deposit. The second stage will be the construction of an enrichment plant, where we will process the ore into petalite concentrate.

    The mining method is much less harmful to the environment than open-pit mining

    — What volumes of ore and concentrate are we talking about?

    — We plan to mine one and a half million tons of ore per year. It will be annually transformed into 300 thousand tons of petalite concentrate.

    — Deep processing is expected?

    — Of course, we are striving to add a third stage – processing of petalite concentrate into lithium carbonate. This is better for both the investor and the government, because lithium carbonate has a higher added value. There are two options – lithium hydroxide and lithium carbonate. They are used in the production of lithium-ion batteries, but involve different technologies. Lithium carbonate is used for the so-called LFP batteries, lithium hydroxide is used in the production of NMC batteries. We analyzed the market and came to the conclusion that we want to produce lithium carbonate. We made this decision a year and a half ago, and I see that it is the right one.

    – Why?

    – Because the world’s largest players, and this is China, produce highly processed products using more advanced technology from lithium carbonate. You probably know that this country produces 99% of all cathodes in the world. Tesla, Li One and more EV manufacturers are switching to LFP batteries. Accordingly, we strive to ensure that the production of lithium carbonate is located in Ukraine. Whether this will work will depend on a number of factors. One of them is how attractive the investment climate in our country is.

    On investment and return

    – What investments are we talking about?

    I am dividing our project into two phases. The first is the construction of a mine and a processing plant. This is about 300 million dollars. Stage number two – the construction of a factory for the production of lithium carbonate. That’s another $400 million. Total – 700 million dollars. Only international strategic investors can afford such a volume of investments. In terms of the size of the attraction, the project is only comparable with the privatization of Kryvorizhstal.

    – What guarantees are needed?

    – For an international investor to come to us with that kind of money, certain conditions are needed. International partners expect from us a complete reboot of the judicial system. The fact that we are fighting corruption and even detained the chairman of the Supreme Court of Ukraine was accepted by foreign partners with approval. It was a good sign on the one hand. But corruption has not left our lives, although Ukraine has embarked on the path of this struggle. I also witnessed how the speech of the new head of NABU was very approved in London.

    – And if it does not attract funds for deep processing?

    – There is always a plan “B” – to build a mine, a processing plant and sell abroad the products of the first processing stage – petalite concentrate. We are definitely not going to sell the ore. This is irrational. After several years of exporting lithium concentrate, we will get the first cash flow. These funds can be used to attract investments in the production of lithium carbonate.

    – What is the return on investment?

    – I orient the owner to payback within 5 years. This is a very attractive project in terms of return of funds.

    — How many people need the project and when will you start mining?

    – I hope that by 2027 mining and enrichment will work. We will produce petalite concentrate. It is planned to attract about 500 employees to the mine and factory.

    Work continues at the field, and the company hopes that about 500 people will work at the mine and factory in the near future

    About the owners

    — There is information that the son of ex-premier Mykola Azarov was involved in UkrLitiyVydobuvannya. How objective is she?

    — I have 15 years of investment banking experience, I worked at Deloitte. That’s why I’m used to assessing risks. Besides, my professional reputation is at stake. Therefore, we conducted a detailed due diligence ( collection and analysis of information. – Ed. ) on the history of the project owners. We aim to attract international investment. Such risks would be unacceptable.

    — Who is the ultimate beneficiary of UkrLitiyVydobuvannya?

    – 99.99% of the company belongs to a businessman from the Kirovograd region Sergey Tabalov. If you look at youcontrol , the authorized capital of the company was replenished by UAH 297 million a few years ago. These are the tools I now use to start the project. My budget for this year is about $3.5 million. Let’s spend them on studying, tests, examination, the so-called feasibility study. This is approximately 2-2.5 million dollars. The rest will be directed to the study of the consequences for the social and environment (the so-called environmental and social impact assessment study). We do this according to the standards of global financial corporations such as IFC, EBRD and Development Finance Corporation.

    — Can these companies act as investors?

    — We are negotiating with 25-30 potential investors and 5-7 financial institutions and banks, and as a result we see a pool of investors. If we are talking about the amount of 700 million dollars, in principle it cannot be raised from one investor, because this is a significant risk for him. We have no illusions that no one will invest in us before our victory and before Ukraine joins NATO and the EU, which will become an effective investment insurance. I have a year and a half to prepare the project for raising funds. Direct attraction is planned for 2025 so that we can start construction. I hope that by then we will win, join NATO and the EU.

    — So what is the task of the owner?

    — My task is to ensure that the Ukrainian owner, as a result of raising funds, has the maximum share in the project. We will attract a strategist as an investor, that is, a large international company in the lithium segment. Without such a company, the start of the project is impossible. In general, the standard mechanism for attracting funding in four areas will work. $400 million is a combination of export credit and debt financing from international financial institutions (IFC, EBRD, DFC). From 100 million dollars – policy funding, that is, grants from the US and the EU for projects in the field of lithium. We expect that there will be an advance payment for future products, the so-called offtake – up to $50 million. 150-200 million dollars – attraction of a strategic investor in the capital. In total – 700 million dollars.

    About sales markets

    Where do you see consumers ?

    Petalite concentrate will be bought for processing into lithium carbonate or lithium hydroxide for lithium-ion batteries. If we fail to produce lithium carbonate ourselves, we will sell the petalite concentrate to manufacturers of batteries or ceramics and glass ceramics in Europe. Its use in this area is called technical grade, if it goes to batteries – battery grade. Our petalite concentrate will combine battery grade and technical grade. That is, we can sell it to both markets.

    The end buyers of our product are huge European manufacturers of electric vehicles. If we launch the production of lithium carbonate, our customers will be manufacturers of cathodes for LFP batteries. And these are Chinese companies that are also represented in Europe. Here we have no choice, because we know that China owns the technology, raw materials and production of batteries around the world. And when people ask me how to get out of this addiction, I say that it will take at least 3-5 years until the Europeans and Americans take over this business.

    The Polokhovskoye deposit in the Kirovohrad region is rich in pegmatite ore, which contains the mineral petalite

    — That is, your project will start working when the volumes are in demand in Europe?

    — We certainly focus on the demand in the EU. There are forecasts that by 2030-2032 the demand for lithium products, namely, petalite concentrate, lithium carbonate, lithium hydroxide, cathode, will increase 10 times. Even assuming that by 2030 all European lithium deposits will produce products from it, this will be only 4% of the world market. In addition, by 2030, Europe will need to have 25% of the world’s production of lithium carbonate. I note that our field is large by the standards of Europe, so it will be attractive not only for European, but also for any investor.

    About competition

    — Do you feel competition for lithium mining in Ukraine?

    — I don’t see any competition in lithium mining in the next 5-10 years, not only in Ukraine, but also in the world. There is not enough lithium in the world to meet the demand of electric car manufacturers.

    — I mean raiders who like to come to successful projects.

    – The state is interested. We will have a large specialized investor from Europe or the USA. So far, I do not see such risks. Perhaps I am an optimist after the conference in London . I see how our partners and authorities are set up, so I don’t believe in the situation with raiding in 3-4 years.

    About the interest of the Russian Federation in lithium

    – Do you think that Russia’s invasion of Ukraine was also due to interest in lithium deposits, or is it a myth?

    I am skeptical of such arguments. It would be more logical then to seize Bolivia. It’s a joke. In my personal opinion, the system of checks and balances does not work in Russia. And an elderly person, far from the Internet, single-handedly makes decisions in this country. This is dangerous and has led to very sad consequences.

    – So there is an interest of the Russian Federation in lithium?

    – If there is, then he is definitely not in the TOP 10 reasons for the start of the war in Ukraine.[/vc_column_text][distance desktop_type=”30″][/vc_column][/vc_row][/vc_section]