High-Quality Potassium Silicate, Sodium Silicate, Lithium Silicate for Global Markets
PRODUCT PARAMETERS
Description
Overview of Lithium Silicate
Lithium silicate is a compound used primarily in construction and industrial applications for its unique properties. It is often applied as a hardening and densifying agent for concrete surfaces, enhancing durability and resistance to wear and chemicals.
Features of Lithium Silicate
Hardening and Densifying: Enhances the surface hardness and density of concrete, improving wear resistance.
Chemical Resistance: Provides superior resistance to chemical attacks, making treated surfaces more durable.
Efflorescence Control: Reduces the occurrence of efflorescence on concrete surfaces.
Quick Reaction Time: Reacts quickly with concrete components, speeding up the curing process.
Low Viscosity: Easily penetrates concrete surfaces, ensuring deep sealing and protection.

(Raw Material For Molten Salt Electrolysis To Produce Lithium MetalAnhydrous Lithium Chloride Cas 7447-41-8 With Whole )
Specifications of Raw Material For Molten Salt Electrolysis To Produce Lithium MetalAnhydrous Lithium Chloride Cas 7447-41-8 With Whole
This anhydrous lithium chloride has CAS number 7447-41-8. It is the crucial resources for making lithium steel utilizing liquified salt electrolysis. High pureness is definitely necessary for this process. We provide numerous pureness qualities to satisfy various demands. The main qualities readily available are 99%, 99.5%, and 99.9% pure.
Wetness control is extremely important. Water ruins the electrolysis. Our product has extremely low dampness. We maintain it listed below 200 parts per million. This guarantees the salt melts properly and conducts power well.
The physical kind matters too. This lithium chloride is a great white powder. The bit size is managed. Most fragments are between 100 and 500 microns. This size aids the powder dissolve swiftly and equally in the molten salt bathroom. It prevents clumping.
Contamination levels are crucial. Also percentages of other aspects cause problems. They reduce present effectiveness. They make the final lithium metal much less pure. We strictly restrict key pollutants. Sodium and potassium degrees are kept very reduced. Calcium and magnesium are likewise decreased. The chloride ion material is precisely determined. It must match the lithium material exactly. This ensures the appropriate chemical balance.
The product is packaged for safety and top quality. It is secured inside durable plastic bags. These bags go within solid metal drums. Each drum holds 25 kilograms. This packaging secures the product from air and dampness throughout storage space and transport.

(Raw Material For Molten Salt Electrolysis To Produce Lithium MetalAnhydrous Lithium Chloride Cas 7447-41-8 With Whole )
Applications of Raw Material For Molten Salt Electrolysis To Produce Lithium MetalAnhydrous Lithium Chloride Cas 7447-41-8 With Whole
Anhydrous lithium chloride, CAS number 7447-41-8, is the vital raw material for making pure lithium metal with molten salt electrolysis. This process happens inside special high-temperature electrolysis cells. The lithium chloride have to be absolutely dry. Also little amounts of water cause large problems. Water breaks down during electrolysis. This makes hydrogen gas and lithium hydroxide. These impurities destroy the lithium steel top quality and lower production effectiveness. They additionally make the procedure harmful. So, severe dryness is vital.
Producers require very high purity lithium chloride. Pollutants matter a whole lot. Points like various other antacids steels, alkaline planet metals, or heavy steels are bad. They pollute the last lithium metal. They likewise transform just how the molten salt electrolyte behaves. This influences the electrolysis performance. High-purity anhydrous lithium chloride makes certain smooth procedure. It helps create lithium metal meeting the strictest criteria. This metal is the base for innovative uses.
The primary use lithium metal from this procedure is in innovative batteries. Lithium metal anodes are crucial for next-generation batteries. These batteries aim for much higher power density. Lithium metal is additionally important for making specialized alloys. An additional crucial usage is generating lithium soaps. These soaps are thickeners for high-performance greases. The electronics market needs ultra-pure lithium metal too. It’s used in particular specialized applications. The quality of the starting lithium chloride directly impacts all these final products. Safeguarding reliable, high-purity anhydrous lithium chloride supply is basic for lithium metal producers.
Company Introduction
Welcome to Iberocruceros, a leading supplier in the international market for high-quality potassium silicate, sodium silicate, and lithium silicate.
Our products are meticulously crafted to meet the diverse needs of various industries, including construction, agriculture, and manufacturing. With state-of-the-art production facilities and a commitment to excellence, we ensure superior product quality and customer satisfaction.
We pride ourselves on our innovative solutions, competitive pricing, and reliable delivery services. Partner with us for your silicate needs and experience the difference that expertise and dedication can make. Let’s build a sustainable future together.
If you have any questions, please feel free to contact us(nanotrun@yahoo.com).
Payment Methods
T/T, Western Union, Paypal, Credit Card etc.
Shipment Methods
By air, by sea, by express, as customers request.
5 FAQs of Raw Material For Molten Salt Electrolysis To Produce Lithium MetalAnhydrous Lithium Chloride Cas 7447-41-8 With Whole
Anhydrous Lithium Chloride (LiCl, CAS 7447-41-8) for Molten Salt Electrolysis: Key Questions Answered
1. Why is purity crucial for anhydrous lithium chloride in electrolysis?
Extreme purity is essential. Impurities damage the electrolysis process. They cause unwanted side reactions. These reactions reduce lithium metal yield. They also lower product quality. High-purity LiCl ensures efficient, stable operation. It minimizes energy waste. It protects the electrolysis cell components.
2. How is moisture controlled during handling?
Moisture is the main enemy. Water reacts violently with lithium metal. Handling must prevent any contact with air humidity. This requires strict procedures. Material is processed in dry rooms. It’s packed under inert argon gas. Sealed containers are mandatory. Use glove boxes for any transfer. Never expose the powder to open air.
3. Why use lithium chloride instead of lithium carbonate?
Lithium carbonate (Li2CO3) isn’t suitable for direct molten salt electrolysis. LiCl melts at a lower temperature. This is vital for the process. LiCl dissolves well in molten salt mixtures. It provides chloride ions directly. These ions carry the current efficiently. Li2CO3 decomposes poorly. It introduces oxygen. Oxygen harms the lithium metal product.
4. How is the material stored safely?
Store LiCl only in its original, unopened, airtight containers. Keep containers in a cool, dry place. Avoid any temperature extremes. Protect containers from physical damage. Ensure the storage area is well-ventilated. Never store near water or acids. Use appropriate personal protective equipment (PPE) always. Follow the Safety Data Sheet (SDS) exactly.
5. What are the primary applications beyond lithium metal production?
High-purity anhydrous LiCl serves several advanced uses. It’s a key electrolyte in certain batteries. It acts as a flux in aluminum soldering. It’s used in special optical glass formulations. It serves as a precursor for other lithium chemicals. It’s vital in some aluminum-lithium alloy production. Consistent quality is critical for all these uses.

(Raw Material For Molten Salt Electrolysis To Produce Lithium MetalAnhydrous Lithium Chloride Cas 7447-41-8 With Whole )
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