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Specifications of Lithium oxide丨CAS 12057-24-8
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Appearance |
White to off-white powder |
|
Assay |
99.8% min |
|
Na |
0.001% max |
|
Zn |
0.001% max |
|
Co |
0.001% max |
|
Mn |
0.002% max |
|
Cu |
0.001% max |
|
Cd |
0.002% max |
|
Mo |
0.001% max |
|
Fe |
0.001% max |
Transport Information of Lithium oxide丨CAS 12057-24-8
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Parameter |
Specification |
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UN Number |
3262 |
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Class |
8 |
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Packing Group |
III |
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H.S. Code |
2825209000 |
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Stability & Reactivity |
The product is chemically stable under standard ambient conditions. |
|
Storage |
Tightly closed. Store in a closed, dry, ventilated place |
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Condition to Avoid |
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Package |
Manufacturing Information of Lithium oxide丨CAS 12057-24-8
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Parameter |
Specification |
|
Capacity |
20,000MT/year |
|
Frequency |
|
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Main Export Countries |
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Capacity/Batch |
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Experience |
Production since 2001 |
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Stock |
Applications
1. Battery Industry (Especially Solid-State Batteries)
Used in the development of solid electrolytes and lithium-rich cathode materials for next-generation lithium-ion and solid-state batteries.
Plays a role in enhancing ionic conductivity and cycling stability of battery materials.
2. Glass and Ceramics Manufacturing
Lithium oxide丨CAS 12057-24-8 acts as a fluxing agent to lower the melting point of silica and improve glass properties:
Enhances thermal shock resistance
Increases brightness and strength in ceramic glazes
Widely used in:
Glass-ceramics
Enamels
Specialty optical glasses
3. Nuclear Industry
Proposed for use in tritium breeding materials in fusion reactors:
Lithium oxide can react with neutrons to produce tritium, a potential fuel for nuclear fusion.
High melting point and chemical stability make it suitable under reactor conditions.
4. Chemical Synthesis
Acts as a strong base and reagent in organic and inorganic synthesis.
Sometimes used in lithium metathesis reactions and in preparing other lithium compounds like lithium salts or peroxides.
5. CO₂ Scrubbing and Capture
Has potential application in carbon capture systems, particularly in space missions or closed environments.
Reacts with CO₂ to form lithium carbonate, enabling reversible absorption cycles.
Benefits
1. High Lithium Content
As a simple lithium compound (Li₂O), it serves as a concentrated source of lithium, especially valuable in battery and nuclear applications.
2. Thermal and Chemical Stability
Withstands high temperatures and hostile environments, making it ideal for high-temperature ceramics and nuclear materials.
3. Functional Versatility
Can be transformed into a variety of useful lithium compounds (e.g., lithium hydroxide, lithium carbonate), enabling broad utility in industrial chemistry.
4. Improves Material Performance
Enhances mechanical strength, durability, and optical clarity of glass and ceramics, leading to superior end products in consumer and industrial sectors.
Conclusion
Lithium oxide丨CAS 12057-24-8 is a high-value inorganic compound used across multiple advanced technologies, from solid-state batteries and fusion reactors to glassmaking and ceramics. Its rich lithium content, high stability, and reactivity with CO₂ and water make it a key material in energy storage, green technology, and nuclear science. As demand for lithium-related technologies continues to grow, lithium oxide remains an essential compound in both research and industrial production.

