TitleProduct

High Purity Lithium Carbonate

  • Price:

    Negotiable

  • minimum:

  • Total supply:

  • Delivery term:

    The date of payment from buyers deliver within days

  • seat:

    Beijing

  • Validity to:

    Long-term effective

  • Last update:

    2023-10-11 21:29

  • Browse the number:

    374

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Company Profile

Hubei Baijierui Advanced Materials Co., Ltd

By certification [File Integrity]

Contact:baijierui(Mr.)  

Email:

Telephone:

Phone:

Area:Beijing

Address:Beijing

Website:http://www.bjrlithium.net/ http://baijierui.kpr-led.com/

Product Details



Product Introduction



 



High Purity Lithium Carbonate is an essential industrial chemical. Its basic use is as a precursor to compounds used in lithium-ion batteries. At the same time, it is also a very commonly used product in the production process of ceramic glaze. It can be fused with silica and different materials. Its alkalinity allows it to act as a colorant. The extremely high purity makes it not only suitable for use in the field of batteries but also very suitable for use in the field of medicine, with higher added value. However, it should be noted that Li2CO3 is a toxic substance. If it is accidentally inhaled or touches the skin, eyes, and other parts, emergency treatment should be carried out immediately, such as washing it with water immediately or going to the hospital for diagnosis and treatment.



Li2CO3 can be used to make ceramics, drugs, catalysts, etc. Industrial Li2CO3 is mainly divided into industrial grade, battery grade and high-purity grade according to purity. The role of Li2CO3 with different purity in the raw materials of lithium ion batteries is also different. High purity Li2CO3 can be used to produce metallic lithium and Lithium hexafluorophosphate.



 






Product Parameter (Specification)



 



Lithium Carbonate (99.99%)



 























Appearance



White Granular



Grade



Single Crystal Level



Standard



GB/T 11075-2003 (No. Li2CO3-1)



CAS No



554-13-2



Catalog No



Li2CO3-H




 



Chemical Analysis



 
















































































































Test Item



Content (%) Guaranteed



Test Methods



Li2CO3  



99.99



Subtraction



Na  



0.001



AAS



K  



0.0005



AAS



Mg  



0.0005



AAS/ICP



Ca 



0.001



AAS/ICP



Fe  



0.0003



Turbidimetry/ICP



Pb  



0.0001



ICP



Ni  



0.0001



ICP



Cu  



0.0001



ICP



Mn   



0.0001



ICP



Zn   



0.0003



ICP



Cr  



0.0001



ICP



Al  



0.0003



ICP



Si  



0.0005



ICP



Cl- 



0.001



ICP



SO42-



0.002



ICP



H2O 



0.2



ICP



Co



0.0001



ICP



Cd 



0.0005



ICP



Ba 



0.001



ICP




 



Others



 































Formula



Li2CO3



Formula Weight



73.89



Density (g/cm3)



2.11



Bulk Density (kg/l)



approx 0.8



Melting Point



732



Boiling Point



/




 






Product feature and application



 























Application



It is frequently used as uncooked cloth for making all sorts of excessive purity lithium salt, lithium niobate, Li2CO3 single crystal, used in optical unique glass, enamel industry, medicine, catalyst, colour phosphor and lithium ion battery materials. 



Transportation



Packaging damage should be paid attention to during transportation.



Storage



Products do not need to be stored under special conditions.



Package



25 kg/bag in PE bag. CAS: 554-13-2




 



What is the production of Lithium carbonate?



The production of high purity Li2CO3 can be achieved through various methods. One common method is the chemical conversion of lithium-containing minerals or ores using acid leaching. The resulting solution is then treated with various reagents to precipitate and purify Li2CO3. Another method involves the direct crystallization of Li2CO3 from brine solutions. Various factors such as temperature, PH, reaction time, and concentration levels can impact the production process. The use of advanced technologies such as membrane filtration and advanced solvent extraction can also improve the production efficiency and reduce environmental impact. With the increasing demand for lithium-ion batteries in various industries, the production of high purity Li2CO3 is crucial and continuous improvement of production methods will ensure a sustainable and prosperous future.



 






Production Details



 





 







Product Qualification



 





 







Deliver, shipping and serving



 







 






FAQ



 



Q: How many packaging do you have?



A: We have three packages including PE bag, paper drums, or to be determined by both parties. CAS: 554-13-2



 



Q: What is your minimum order quantity?



A: If we have the products in stock, it will be 25kg as per the MOQ. If we need to produce, we can discuss the MOQ according to customer's exact situation.



 



Q: How many different types of products your company manufactures?



A: Now we have more than 50 products. We have a strong advantage of OEM, just give us the actual products or your idea that you want, we will manufacture for you.



 






Lastest news



 



The quality of the additives in the electrolyte is only 3%-5%, but the cost is about 20%, which has a significant impact on the cost and price changes of the electrolyte. Lithium battery electrode liquid additives mainly include vinylene carbonate (VC), fluoroethylene carbonate (FEC), propylene sulfite (PS) and DTD. Among them, VC and FEC are the more mainstream additives in the current market, and the two together account for close to 60% of the additive market.



The amount of VC added in the electrolyte formulation of LFP batteries is generally 2% to 5%. The VC additive content in the electrolyte of the ternary system is generally below 1% or even not added. The amount of VC added in the LFP battery is 3 times higher than that of the ternary battery. Therefore, VC is currently the most widely used additive in electrolytes. CAS: 554-13-2



The strong downstream demand for lithium batteries has led to a surge in demand for lithium battery-related materials. VC has also entered the price increase channel under the influence of multiple factors, boosting the price of electrolyte, and its share in the cost of electrolyte has greatly increased, second only to lithium hexafluorophosphate. Market data shows that the price per ton of VC has risen from 150,000 yuan/ton in July 2020 to 500,000 yuan/ton in September 2021, a year-on-year increase of 233%. The foreign quotations of traders have even reached 800,000-900,000 yuan/ton.From the perspective of product profitability, VC's single ton profit may exceed 200,000 yuan/ton, and its profitability is significantly higher than that of lithium hexafluorophosphate, electrolyte and solvent. The solvent accounts for 85% of the electrolyte in the mass, and the solvent accounts for about 25% of the cost in the electrolyte. They are mainly divided into cyclic carbonate organic solvents and chain carbonate organic solvents.



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