Lithium carbonate capacity to reach 170,000tpy by 2025 in Qinghai
2018-05-24 17:58:25 [Print]
Recently, the People's government of Qinghai l issued "Guidance on promoting sustainable and healthy development of lithium battery industry in Qinghai", which wrote that Qinghai would see the lithium carbonate capacity to reach 170,000tpy and that for lithium battery to record 60GWh per year by 2025
At the same time, the Guidance explicitly pointed out that the core process technologies of lithium nickel oxide, lithium cobalt oxide, lithium manganese oxide and NCM anode material, carburization cathode material, nanocrystallization of anode and cathode material, manufacturing process of high-capacity battery, intelligent battery management system and efficient recycling of lithium battery by echelon are further strengthened. Futuristic technology research shall be carried out in advance . Advance research on lithium in other fields should be carried out in advance . Binary alloy and ternary alloy of lithium, aluminum, and magnesium are the key of lithium alloy; as for inorganic salts, they will focus on the development of fine chemical products such as electronic grade lithium carbonate, lithium chloride, lithium bromide, lithium 6, lithium 7, lithium sulfate, lithium hydroxide, and other products, to improve the utilization level of the high value of salt lake resources . They will increase R&D of new system batteries such as lithium-sulfur battery, metal-air battery, and solid state battery, and fuel cells for new energy power stations.
. Among them, the power battery capacity will reach 25GWh per year, and 3C and energy storage battery capacity will reach 35GWh per year.At the same time, the Guidance explicitly pointed out that the core process technologies of lithium nickel oxide, lithium cobalt oxide, lithium manganese oxide and NCM anode material, carburization cathode material, nanocrystallization of anode and cathode material, manufacturing process of high-capacity battery, intelligent battery management system and efficient recycling of lithium battery by echelon are further strengthened. Futuristic technology research shall be carried out in advance . Advance research on lithium in other fields should be carried out in advance . Binary alloy and ternary alloy of lithium, aluminum, and magnesium are the key of lithium alloy; as for inorganic salts, they will focus on the development of fine chemical products such as electronic grade lithium carbonate, lithium chloride, lithium bromide, lithium 6, lithium 7, lithium sulfate, lithium hydroxide, and other products, to improve the utilization level of the high value of salt lake resources . They will increase R&D of new system batteries such as lithium-sulfur battery, metal-air battery, and solid state battery, and fuel cells for new energy power stations.