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Lithium fell to 71,350 CNY/T on August 1, 2025, down 0.90% from the previous day. Over the past month, Lithium's price has risen 15.73%, but it is still 10.25% lower than a year ago, according to trading on a contract for difference (CFD) that tracks the benchmark market for this commodity. Lithium - values, historical data, forecasts and news - updated on August of 2025.
In 2022, the average price of battery-grade lithium carbonate stood at ****** U.S. dollars per metric ton. This figure is by far the highest price for battery-grade lithium carbonate recorded in the period of consideration. For 2024, lithium carbonate price was estimated at ****** U.S. dollars per metric ton. Lithium is a highly reactive soft and silvery-white alkali metal. As the third element in the periodic table, it cannot be found in its pure form in nature. Lithium is the least dense of solid elements and the lightest out of all metals. Lithium and batteries One of lithium’s most well-known end uses is in lithium-ion batteries. Lithium-ion batteries are rechargeable and mostly used in portable electronics and electronic vehicles. In lithium-ion batteries, the lithium ions move from the negative electrode to positive electrode while in use, and the process is reversed while charging. These batteries are highly flammable but are also low-maintenance. They have a high energy density and a low self-discharge. Some drawbacks include the fact that they are expensive to manufacture, and that they require protection circuits to maintain the voltage safely. Lithium-ion batteries are also the single-largest end use of lithium, amounting to an ** percent share of global lithium consumption in 2024. Lithium demand forecasts Looking to the future, lithium demand is forecast to stand at *** million tons by 2025. This growth will be mainly driven by lithium-ion battery demand for electric vehicles. Demand is expected to remain the highest in China, which will consistently account for half of global lithium-ion battery demand.
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Explore the factors influencing the global lithium commodity price, a vital component in clean energy and technology sectors, amidst market volatility, geopolitical influences, and technological advancements in battery production.
This data release contains the U.S. salient statistics and world production data extracted from the LITHIUM data sheet of the USGS Mineral Commodity Summaries 2025.
According to our latest research, the global lithium carbonate spot trading platform market size reached USD 1.86 billion in 2024, reflecting the burgeoning demand for transparent and efficient trading mechanisms in the lithium supply chain. The market is poised to expand at a robust CAGR of 13.4% from 2025 to 2033, with a projected value of USD 5.57 billion by 2033. This surge is primarily fueled by the exponential growth in lithium-ion battery production, rising adoption of electric vehicles, and increasing interest in digital commodity trading platforms.
The primary growth driver for the lithium carbonate spot trading platform market is the accelerating demand for lithium-ion batteries, particularly within the electric vehicle (EV) and renewable energy sectors. As governments worldwide set ambitious targets for carbon neutrality and electrification of transportation, the need for efficient, transparent, and real-time lithium carbonate trading has become paramount. Spot trading platforms offer market participants instant price discovery, reduced transaction times, and improved liquidity, thereby enabling battery manufacturers and other end users to secure critical raw materials more effectively. Furthermore, the volatility in lithium prices and the need for hedging strategies have made real-time trading platforms an essential tool for risk management and supply chain optimization.
Another significant growth factor is the ongoing digital transformation of commodity trading. Traditional lithium trading methods, often characterized by opaque pricing and limited market access, are being supplanted by digital platforms that leverage advanced analytics, blockchain technology, and automated trading algorithms. These innovations are fostering a more competitive and accessible market environment, attracting not only established industry players but also new entrants and financial institutions. As a result, the lithium carbonate spot trading platform market is experiencing rapid technological advancements, with platforms offering sophisticated features such as smart contracts, real-time analytics, and customizable trading interfaces to cater to diverse user requirements.
The increasing complexity of global lithium supply chains is also propelling the adoption of spot trading platforms. With lithium carbonate sourced from various regions and processed through multiple intermediaries, stakeholders require agile and secure platforms to manage transactions, verify provenance, and ensure regulatory compliance. The integration of decentralized and hybrid trading models is addressing these needs by offering enhanced transparency, traceability, and security. This, in turn, is driving greater confidence among buyers and sellers, stimulating market participation, and supporting the overall growth of the lithium carbonate spot trading platform market.
Regionally, the Asia Pacific market dominates due to its leadership in battery manufacturing and electric vehicle production, particularly in China, Japan, and South Korea. North America and Europe are also witnessing substantial growth, propelled by investments in EV infrastructure and renewable energy projects. Latin America, as a major lithium-producing region, is increasingly leveraging spot trading platforms to connect with global buyers, while the Middle East & Africa is gradually emerging as a strategic market for future expansion. The regional outlook underscores the global interdependence of lithium supply chains and the pivotal role of digital trading platforms in facilitating cross-border transactions and fostering market integration.
The lithium carbonate spot trading platform market is segmented by platform type into centralized platforms, decentralized platforms, and hybrid platforms. Centralized platforms currently hold the largest market share, attributed to their established infrastructure, regulatory oversight, and robust security protocols. These platforms act as trusted intermediaries, providing
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United States Exports: Lithium Ion Batteries data was reported at 314.306 USD mn in Feb 2025. This records a decrease from the previous number of 515.926 USD mn for Jan 2025. United States Exports: Lithium Ion Batteries data is updated monthly, averaging 108.835 USD mn from Jan 2012 (Median) to Feb 2025, with 158 observations. The data reached an all-time high of 573.680 USD mn in Sep 2024 and a record low of 1.982 USD mn in Jan 2012. United States Exports: Lithium Ion Batteries data remains active status in CEIC and is reported by U.S. Census Bureau. The data is categorized under Global Database’s United States – Table US.JA027: Exports: by Commodity: 6 Digit HS Code: HS 85 to 98.
This data release contains the U.S. salient statistics and world production data extracted from the LITHIUM data sheet of the USGS Mineral Commodity Summaries 2023.
This data release contains the U.S. salient statistics and world production data extracted from the LITHIUM data sheet of the USGS Mineral Commodity Summaries 2022.
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The global lithium market is expected to grow at a CAGR of 22.1% from 2023 to 2033, reaching a market size of USD 159.45 billion by 2033. Lithium is an alkali metal with the atomic number 3, and is chemically denoted by the symbol Li, it is a soft, silvery-white metal that is readily soluble in most organic solvents and has a very low density. It is chiefly applied in the production of rechargeable lithium-ion batteries, indispensable for a range of devices starting from mobile phones to electric cars. There are several lithium salts, lithium carbonate is one example lithium hydroxide is another and all serve various functions in industry. Lithium is the element itself, and it also forms compounds with other elements, which in a way allows for its usefulness. Some of the features include Li offers high energy density, long cycle life and efficiency in energy storage. Recently the market has witnessed increased demand for lithium, this mainly because of the increasing uptake of electric cars and thus evolutions towards green energy production and storage that require lithium as a key element. Recent developments include: January 2023 – Ganfeng Lithium Co., Ltd. announced an investment of USD 2.14 billion in two new battery factories to increase its production capacities by 34 GWh. This facility will add to manufacturing and is expected to grow to around 100 GWh annually., December 2022 – Sigma Lithium announced that the company has secured a fund of USD 100 million from Synergy Capital to build the first phase of a USD 155 million expansion at its Grota do Cirilo lithium project in Minas Gerais, Brazil. This mine can generate up to 270,000 tonnes per year of high-purity battery-grade lithium concentrate, equal to about 36,700 tonnes of Lithium Carbonate Equivalent (LCE)., September 2022 – SQM S.A. announced a sustainable innovation program named the 'Salar Futuro Project,' which develops a new form of lithium production with zero freshwater usage. This project's initial investment of USD 1,500 million aims to achieve a zero water footprint by achieving carbon neutrality., June 2022 – Albemarle Corporation inaugurated a third chemical conversion plant La Negra III/IV, in Antofagasta. This facility is one of the modern conversion plants in Latin America. This facility will double the lithium production, reduce water consumption by 30% per metric ton, and commit to a sustainable production line., June 2021 - Ganfeng Lithium announced an increase in its Li2CO3 production by 600,000 tons an equivalent year as demand for the commodity used in electric-vehicle batteries increases. The company will sell around USD 630 million in new shares to boost capacity and fund potential investments.. Key drivers for this market are: Increasing Adoption of Electric Vehicles Will Aid Market Growth . Potential restraints include: Environmental Concerns and Recycling May Hinder Market Growth. Notable trends are: Companies Creating Environmentally Sustainable Solutions for LIBs and EVs will Fuel the Product Demand.
This data release contains the U.S. salient statistics and world production data extracted from the LITHIUM data sheet of the USGS Mineral Commodity Summaries 2025.
Lithium had one of the lowest trade values among battery minerals worldwide in 2019 at ***** billion U.S. dollars. Due to increased investments in projects and demand for battery minerals, by 2030 lithium is expected to have a higher trade value than cobalt and platinum.
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Lithium ETF stock price, live market quote, shares value, historical data, intraday chart, earnings per share and news.
This graph illustrates the estimated cost per electric vehicle battery pack as of 2018, with a breakdown by main commodity. The cost of lithium carbonate per electric vehicle battery pack amounted to just over 1,000 U.S. dollars.
This data release contains the U.S. salient statistics and world production data extracted from the LITHIUM data sheet of the USGS Mineral Commodity Summaries 2024.
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United States Imports: Lithium Ion Batteries data was reported at 2.408 USD bn in Jan 2025. This records a decrease from the previous number of 2.855 USD bn for Dec 2024. United States Imports: Lithium Ion Batteries data is updated monthly, averaging 253.441 USD mn from Jan 2012 (Median) to Jan 2025, with 157 observations. The data reached an all-time high of 2.855 USD bn in Dec 2024 and a record low of 69.014 USD mn in Feb 2012. United States Imports: Lithium Ion Batteries data remains active status in CEIC and is reported by U.S. Census Bureau. The data is categorized under Global Database’s United States – Table US.JA136: Imports: by Commodity: 6 Digit HS Code: HS 85 to 99.
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Explore the factors influencing lithium spodumene spot prices, critical for lithium production and the global supply chain. Discover how demand from the electronics, automotive, and energy sectors, along with mining capabilities and geopolitical influences, affect these prices. Stay informed on market trends impacting lithium commodities.
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China Import: ME: EE: Electric Accumulator: Lithium-ion Battery data was reported at 80,470.000 Unit th in Mar 2025. This records an increase from the previous number of 46,910.000 Unit th for Feb 2025. China Import: ME: EE: Electric Accumulator: Lithium-ion Battery data is updated monthly, averaging 86,600.000 Unit th from Jan 2020 (Median) to Mar 2025, with 63 observations. The data reached an all-time high of 153,890.000 Unit th in Jan 2022 and a record low of 42,250.000 Unit th in Feb 2024. China Import: ME: EE: Electric Accumulator: Lithium-ion Battery data remains active status in CEIC and is reported by General Administration of Customs. The data is categorized under China Premium Database’s International Trade – Table CN.JA: Import by Major Commodity: Quantity.
Critical minerals are metals and non-metals that are essential for the development of the world’s major economies and the advancement of technology, however the supply is at risk due to various factors. One of the more well-known critical minerals that are mined in Australia is lithium. As of the end of 2020, there was a reserve of around 3,040 metric kilotons of lithium in Australian mines.
The Modern Manufacturing Initiative The country has invested more in the exploration and mining of critical minerals in recent years. One such initiative is the Modern Manufacturing Initiative. This is a government initiative that aims to transform manufacturing businesses and help them to scale up, translate ideas into commercial successes, and integrate into local and international value chains. As of March 2022, the value of critical mineral funding distributed by the Modern Manufacturing Initiative in Australia totaled over 200 million Australian dollars.
Lithium in Australia
Australia is one of the world’s leading lithium producers along with Chile and China. Lithium has many different uses in its various forms, but by far the largest end-usage of lithium worldwide was in rechargeable batteries. These batteries are not only needed for consumer electronics but also for renewable energy storage and electric vehicles. Australia looks set to retain its position as a world-leading lithium supplier, with most of the country’s lithium resources located in Western Australia.
This data release provides the descriptions of approximately 20 U.S. sites that include mineral regions, mines, and mineral occurrences (deposits and prospects) that contain enrichments of lithium (Li). This release includes sites that have a contained resource and (or) past production of lithium metal greater than 15,000 metric tons. Sites in this database occur in Arkansas, California, Nevada, North Carolina, and Utah. There are several deposits that were not included in the database because they did not meet the cutoff requirement, and those occur in Arizona, Colorado, the New England area, New Mexico, South Dakota, and Wyoming. In the United States, lithium was first mined from pegmatite orebodies in South Dakota in the late 1800s. The Kings Mountain pegmatite belt of North Carolina also had significant production from pegmatites, and the area may still contain as much as 750 million metric tons (Mt) of ore containing 5 Mt lithium metal (Kesler and others, 2012). In 2018, U.S. production of lithium was restricted to a single lithium-brine mining operation in Nevada. In 2018, the U.S. had a net import reliance as a percentage of apparent consumption of more than 50 percent for lithium (U.S. Geological Survey, 2019). The U.S. is not a significant producer of lithium, so the commodity is mainly imported from Chile and Argentina to meet consumer demand. Lithium is necessary for strategic, consumer, and commercial applications. The primary uses for lithium are in batteries, ceramics, glass, metallurgy, pharmaceuticals, and polymers (U.S. Geological Survey, 2019). Lithium has excellent electrical conductivity and low density (lithium metal will float on water), making it an ideal component for battery manufacturing. Lithium is traded in three primary forms: mineral concentrates, mineral compounds (from brines), and refined metal (electrolysis from lithium chloride). Lithium mineralogy is diverse; it occurs in a variety of pegmatite minerals such as spodumene, lepidolite, amblygonite, and in the clay mineral hectorite. Current global production of lithium is dominated by pegmatite and closed-basin brine deposits, but there are significant resources in lithium-bearing clay minerals, oilfield brines, and geothermal brines (Bradley and others, 2017). The entries and descriptions in the database were derived from published papers, reports, data, and internet documents representing a variety of sources, including geologic and exploration studies described in State, Federal, and industry reports. Resources extracted from older sources might not be compliant with current rules and guidelines in minerals industry standards such as National Instrument 43-101 (NI 43-101) or the Joint Ore Reserves Committee Code (JORC Code). The inclusion of a particular lithium mineral deposit in this database is not meant to imply that the deposit is currently economic. Rather, these deposits were included to capture the characteristics of the larger lithium deposits in the United States, which are diverse in their geology and resource potential. Inclusion of material in the database is for descriptive purposes only and does not imply endorsement by the U.S. Government. The authors welcome additional published information in order to continually update and refine this dataset. Bradley, D.C., Stillings, L.L., Jaskula, B.W., Munk, LeeAnn, and McCauley, A.D., 2017, Lithium, chap. K of Schulz, K.J., DeYoung, J.H., Jr., Seal, R.R., II, and Bradley, D.C., eds., Critical mineral resources of the United States—Economic and environmental geology and prospects for future supply: U.S. Geological Survey Professional Paper 1802, p. K1–K21, https://doi.org/10.3133/pp1802K. Kesler, S.E., Gruber, P.W., Medina, P.A., Keoleian, G.A., Everson, M.P., and Wallington, T.J., 2012, Global lithium resources—relative importance of pegmatite, brine and other deposits: Ore Geology Reviews, v. 48, October ed., p. 55—69. U.S. Geological Survey, 2019, Mineral commodity summaries 2019: U.S. Geological Survey, 200 p., https://doi.org/10.3133/70202434.
By 2035, it is forecast that there will be significant supply shortages worldwide for several of the necessary metals used in the manufacture of batteries. Lithium is expected to have the largest supply gap in 2035, with an estimated ** percent shortfall.
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Lithium fell to 71,350 CNY/T on August 1, 2025, down 0.90% from the previous day. Over the past month, Lithium's price has risen 15.73%, but it is still 10.25% lower than a year ago, according to trading on a contract for difference (CFD) that tracks the benchmark market for this commodity. Lithium - values, historical data, forecasts and news - updated on August of 2025.