Tag: lithium

  • Germany May Turn to Its Own Lithium Deposits Amid Growing Interest

    Germany May Turn to Its Own Lithium Deposits Amid Growing Interest

    A growing discussion is emerging in Germany regarding the exploitation of its lithium deposits, particularly among media professionals and government circles. The question raised is why Germany should rely on Serbian lithium when it possesses its own deposits, allowing for greater control and profit. Notably, the country has vast lithium reserves, primarily located along the Rhine River near Insheim and Altenberg. Research is already underway at these sites, which are considered some of the largest in Europe.

    The delay in tapping these resources stems from concerns about environmental and safety risks. In Insheim, fears of earthquakes triggered by geothermal drilling have been a major obstacle. However, new hydrothermal methods, which use existing water pathways underground, are seen as a safer alternative. Another challenge is the carbon footprintassociated with lithium extraction, but Vulcan Energy Ltd has pioneered a process that extracts lithium with zero carbon emissions by using geothermal energy, as reported by Rob Schmitz of NPR.

    On the political front, German Chancellor Olaf Scholz recently visited the Altenberg site following a memorandum signed with Serbia. The Zinnwald Lithium mine, set to open in 2030, could supply lithium for up to 600,000 electric vehicles, offering a more self-reliant source for Germany’s electric vehicle industry. This shift toward domestic lithium could reduce Germany’s reliance on foreign sources, including Serbia, and secure more of the profit chain for itself.

  • Europe’s First Lithium Refinery Opens in Germany, Set to Power 500,000 Electric Cars Annually

    Europe’s First Lithium Refinery Opens in Germany, Set to Power 500,000 Electric Cars Annually

    AMG Lithium has opened Europe’s first lithium refinery in Bitterfeld-Wolfen, Germany, a significant step in boosting the continent’s electric vehicle (EV) industry. The refinery, built in just over two years at a cost of 140 million euros, will convert Brazilian lithium into battery-compatible lithium hydroxide. The plant is expected to produce 20,000 tonnes of lithium hydroxide annually, enough to power 500,000 electric vehicles.

    Lithium, a key component in EV battery production, is in high demand due to the global transition to green energy. To address this growing need, the European Union (EU) introduced the Critical Raw Materials Action Plan in 2020, aimed at reducing Europe’s reliance on external sources for these vital materials.

    Currently, most electric and hybrid vehicles rely on lithium-ion batteries, which are favored for their performance and range. Stefan Scherer, Managing Director of AMG Lithium, highlighted the importance of lithium-ion technology, stating, “If you want a certain performance and range when driving, then the lithium-ion battery is simply unbeatable.”

    In the future, lithium sourced from European mines—such as those in Portugal and the Ore Mountains—will also be processed at the Bitterfeld-Wolfen plant.

  • Kazakhstan Launches Lithium Recovery Facility Through Battery Recycling

    Kazakhstan Launches Lithium Recovery Facility Through Battery Recycling

    In Kazakhstan, while the industrial-scale extraction of lithium is not yet fully developed, the country has started obtaining this rare metal by recycling batteries. The first facility dedicated to extracting valuable components from lithium-ion batteries has been launched at the Industrial Place business park. This new production line has a capacity of processing at least 20 tons of raw material per month, according to a report from the Almaty Social Entrepreneurship Corporation (SPK). The facility was built by the company Technic Destroy.

    The facility employs a recycling technology designed to recover lithium-containing powder, aluminum, copper, and other metals from spent batteries. The SPK estimates that 1 ton of used batteries can yield up to 250 kg of lithium, reducing the need for raw material extraction. Battery recycling is said to produce 70-80% fewer emissions compared to primary lithium mining operations.

    At present, local companies in Kazakhstan are not directly engaged in lithium extraction. The country is actively inviting foreign investors into the rare metals and rare earth industries. Earlier this year, three German companies formed a consortium to develop lithium production in Kazakhstan.

  • Rio Tinto CEO Seeks to Reassure Serbian Locals Amid Lithium Mining Controversy

    Rio Tinto CEO Seeks to Reassure Serbian Locals Amid Lithium Mining Controversy

    The CEO of Anglo-Australian miner Rio Tinto, Jakob Stausholm, aimed to ease concerns during his visit to Serbiaon Saturday regarding the company’s controversial lithium mining project. Serbia boasts significant lithium reserves near the western town of Loznica, but the project has faced ongoing political and environmental opposition.

    Stausholm met with local residents in Ljubovija alongside Serbian President Aleksandar Vucic and promised to protect both the environment and the local population. “The biggest challenge for us is to win the trust of you who live here,” Stausholm said, emphasizing the company’s commitment to safety and environmental protection, including the safeguarding of water, soil, and natural habitats.

    President Vucic is on a five-day tour of the region where the mine would be located, engaging in discussions with local communities. He acknowledged the difficulty of the talks but expressed optimism for a productive dialogue.

    In July, Serbia’s top court overturned an earlier government decision that had halted the project following large-scale protests in 2021. This ruling reignited demonstrations across the country, with the largest in early August drawing tens of thousands to the streets of Belgrade, where key roads and train stations were blocked. Despite the ongoing unrest, the Serbian government signed a memorandum of understanding with the EU in July, marking the first step toward developing the country’s lithium resources.

  • Startups Innovate Direct Lithium Extraction to Meet Rising Demand and Enhance Sustainability

    Startups Innovate Direct Lithium Extraction to Meet Rising Demand and Enhance Sustainability

    As the global shift towards electrification accelerates, the demand for lithium—a crucial component in batteries powering everything from electric vehicles to smartphones—is expected to surge over the next decade. To address this growing need, a new wave of startups is developing innovative methods for producing the valuable metal, tapping into previously inaccessible lithium sources, and overcoming significant economic challenges amidst a current market downturn.

    One promising approach is Direct Lithium Extraction (DLE), which involves recovering lithium from brine found on the Earth’s surface or extracted from underground sources. Various techniques, such as using lithium-attracting beads or selective membranes, are being explored. Although DLE has been pursued by startups for years, recent advancements have brought the technology closer to being competitive with traditional extraction methods.

    “Sung Choi, a metals and mining specialist at BloombergNEF, noted that the technology is now on the brink of commercialization,” highlighting the potential for DLE to transform the lithium industry. Despite most startups still operating at the laboratory or pilot stage, the push towards high-value processing clusters and deep secondary metal processing is seen as essential for Kazakhstan’s metallurgical sector and the broader domestic steel industry.

    Traditional lithium extraction methods, such as open-air evaporation ponds and hard-rock mining, are water-intensive and environmentally taxing. In contrast, membrane separation technology, hailed as “the holy grail of lithium extraction,” offers a more sustainable alternative by significantly reducing water and chemical usage. Companies like SpecifX and ElectraLith are at the forefront of developing these advanced DLE techniques, which promise to minimize environmental impact while maintaining efficiency.

    However, economic hurdles persist. The recent collapse in lithium prices has created a challenging funding environment for DLE startups, as traditional methods remain cheaper in the short term. Despite this, industry leaders like Raef Sullyof Lilac Solutions Inc. advocate for continued investment in DLE to prepare for future demand spikes driven by the energy transition.

    As the industry navigates these challenges, the successful commercialization of DLE technologies could diversify the lithium supply chain, reduce environmental footprints, and ensure a steady supply of lithium to meet the demands of a rapidly electrifying world.

  • European Energy Metals Expands Exploration in Finland, Targeting Lithium-Rich Pegmatites

    European Energy Metals Expands Exploration in Finland, Targeting Lithium-Rich Pegmatites

    European Energy Metals (TSXV: FIN) has announced a significant expansion of its exploration efforts in Finland, applying for five new exploration licences (ELs) in the Kaustinen region. The applications cover an area of approximately 102 square kilometers, known for its high potential for lithium-cesium-tantalum (LCT) pegmatites. This expansion will increase the company’s total licensed holdings to 157.7 square kilometers, augmenting its existing Nabba and Nabba 2 licences.

    These newly applied licences are largely contiguous with those held by Sibanye-Stillwater at the Keliber project, which is renowned for its LCT spodumene-pegmatite deposits. Keliber’s resources are estimated at approximately 17 million tonnes, with a grade of 1% Li2O (lithium oxide). Sibanye-Stillwater, a South African mining group, is investing up to €600 million in partnership with the Finnish Minerals Group to build a comprehensive lithium supply chain complex in the area, with production expected to commence in the second half of 2025.

    European Energy Metals’ newly expanded concessions are strategically located within 1 kilometer of some of the known lithium-rich spodumene-pegmatite deposits at Keliber and Sibanye’s proposed spodumene concentrator plant. The company is currently conducting a field program on these concessions, following up on its successful 2023 exploration program. During that program, the team discovered multiple occurrences of lithium-bearing pegmatite mineralization, particularly at the Kyrola prospect, where rock chip grab samples returned assays of up to 3.84% Li2O.

    CEO Jeremy Poirier expressed optimism about the expanded exploration efforts, stating that the additional licences would allow for more thorough testing and definition of the subsurface mineralization identified on the surface. The 2024 exploration program is designed to advance these projects to a drill definition stage, with a focus on areas with significant proximity to known deposits and the soon-to-be operational lithium concentrator.

  • A 150-Year-Old Lithium Discovery in Cornwall Could Revolutionize the Energy Industry

    A 150-Year-Old Lithium Discovery in Cornwall Could Revolutionize the Energy Industry

    A groundbreaking discovery made 150 years ago in Cornwall, UK, is making headlines again. Back in the 19th century, a large amount of dissolved lithium was found in a hot spring approximately 450 meters underground. At the time, this mineral had little to no value, and its potential was largely ignored. However, in today’s world, where lithium is more valuable than petrol, this discovery is proving to be a game-changer.

    The geothermal lithium deposit found in Cornwall is now recognized as one of the largest in the world. The underground hot springs contain an astonishing concentration of lithium, ranging from 8 to 10 times higher than that found in other hot springs currently being exploited. This mineral has become crucial in the energy transition, as it is a key component in the manufacturing of batteries for electric cars, mobile phones, and computers.

    Interest in this geothermal lithium deposit resurfaced in autumn 2020 due to its significance in the modern energy landscape. Unlike conventional lithium, which is extracted from brine deposits in dry lake beds or hard rock mines, geothermal lithium is found in a hot, saline brine that passes through heated rocks, absorbing various elements including potassium, boron, and lithium.

    Mining companies such as Cornish Lithium and Geothermal Engineering are at the forefront of exploring and exploiting this valuable resource. They plan to use cutting-edge techniques like Direct Lithium Extraction (DLE), a method developed by companies in Germany, the United States, and New Zealand. This process uses ion exchange resin or nanofiltration techniques to selectively extract lithium chloride from the brine, which is then treated to produce lithium hydroxide, a key material for battery production.

    This method of lithium extraction is not only more sustainable and environmentally friendly but also has a significantly lower carbon footprint compared to traditional methods. While conventional lithium extraction, primarily from Argentina, Chile, and Australia, remains cheaper, it comes with substantial environmental costs. For every tonne of lithium produced using conventional methods, more than 15 tonnes of greenhouse gases are emitted, vast amounts of water are permanently polluted, and large tracts of land are disturbed.

    In conclusion, the once-overlooked lithium deposit in Cornwall is now recognized as a mineral resource far more valuable than oil. Its extraction using sustainable methods could play a pivotal role in the global shift towards cleaner energy.

  • Serbia’s Energy Minister: Rio Tinto May Need Two Years to Start Jadar Lithium Project

    Serbia’s Energy Minister: Rio Tinto May Need Two Years to Start Jadar Lithium Project

    Serbia’s Energy Minister Dubravka Djedovic Handanovic announced on Friday that it could take Rio Tinto up to two years to obtain the necessary permits to begin construction on its Jadar lithium project. The project, which could become Europe’s largest lithium mine, recently had its license reinstated after being halted two years ago due to environmental protests.

    Handanovic emphasized the importance of securing approvals based on the project’s environmental impact study. She highlighted that the Jadar project is one of the largest certified reserves globally, with 158 million tonnes of lithium, accounting for 17% of Europe’s total reserves. The project, if completed, would produce 58,000 tonnes of battery-grade lithium carbonate annually, enough to power one million electric vehicles and meet 90% of Europe’s current lithium needs. This would position Rio Tinto among the top 10 global lithium producers.

    Serbia’s President Aleksandar Vučić recently stated that lithium mining in the country would not proceed without guarantees from leading global experts. He stressed that no excavation would occur until all guarantees are secured, predicting no action in the next 12 to 18 months. Meanwhile, Serbia signed agreements with the European Union and Germany granting exclusive access to Serbian lithium for EU members and major car manufacturers, following a court ruling that declared the previous revocation of the Jadar project’s license unconstitutional.

    Despite these developments, public opposition remains strong. Thousands protested last week against the Jadar project, with another major protest planned in Belgrade on Saturday. Handanovic questioned the motives behind the protests, suggesting they were more about opposing the government than genuine ecological concerns. She also noted that the project would enable Serbia to leverage its significant mineral resources, including copper, zinc, lead, gold, and lithium, by gaining access to advanced technical expertise.

  • Portugal Finalizes Strategic Plan for Green Transition Raw Materials

    Portugal Finalizes Strategic Plan for Green Transition Raw Materials

    Portugal’s government is finalizing a strategic plan to explore raw materials critical to the green transition, with a particular focus on copper, which may take precedence over lithium. On Monday, Environment and Energy Minister Maria da Graca Carvalho highlighted Portugal’s wealth of critical raw materials, including copper, essential for electric cars.

    Portugal boasts the largest copper mine in the European Union, operated by Toronto-based Lundin Mining. The country also produces lithium for the ceramics industry and is developing large deposits of battery-grade lithium. “We have great potential to explore for copper, we already have a great tradition and we will continue to invest,” Carvalho stated during a conference.

    “When looking at critical raw materials, we have to consider lithium, but it is not the only one, nor perhaps the most important,” she added. The strategic plan is set to be presented on July 22. Carvalho noted, “Based on this strategy, we will define the areas of production for the various critical raw materials,” suggesting potential new concessions.

    Europe aims to enhance security and reduce dependence on imports from countries like China for materials crucial to the green transition. The previous Portuguese government had planned to auction licenses for lithium prospecting in six regions in the north and center of the country. However, concerns from nature preservation groups and local communities about the environmental and social impact of lithium mining have caused multiple delays since the auction’s initial plan in 2018.

    When asked about the new government’s stance on the lithium auction, Carvalho emphasized the need to review the final strategic plan and make decisions based on scientific and technical data.

  • Comparing Norway’s Oil Wealth to Serbia’s Lithium Potential

    Comparing Norway’s Oil Wealth to Serbia’s Lithium Potential

    n a recent discussion, Ana Brnabić, President of the Serbian Parliament, likened Serbia’s lithium reserves to Norway’s oil wealth, emphasizing the transformative economic potential. President Aleksandar Vučić and Mining Minister Dubravka Đedović Handanović have also supported this view, particularly focusing on the Jadar lithium project by Rio Tinto. This project, which could significantly boost Serbia’s economy, faces strong opposition from environmental groups. Critics argue that Serbia lacks the robust political and regulatory framework that enabled Norway’s successful oil industry.

    Norway discovered oil in the 1960s, leading to substantial GDP growth and the creation of a significant welfare state funded by oil revenues. Serbia aims to replicate this model through lithium mining, essential for the booming electric vehicle (EV) market. Rio Tinto projects that the Jadar mine could generate 180 million euros in annual state revenue. However, the environmental impact and public resistance present major challenges. Serbia’s political landscape and regulatory systems are not as well-established as Norway’s, complicating efforts to harness lithium’s potential sustainably.

    The Jadar project involves extracting lithium from jadarite, a unique mineral found only in Serbia. The project has the potential to make Serbia a key player in the global lithium market, essential for EV batteries. However, effective management of environmental concerns and community relations is crucial for the project’s success.