About Litharge (1317-36-8) (223.2 g/mol)
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Technical profile of Litharge, a high-purity raw chemical material supplied by Triveni Chemicals for industrial manufacturing and laboratory synthesis.
Technical Specifications:
CAS Number: 1317-36-8
Industrial Uses & Applications:
Litharge Is An Inorganic Lead Compound Consisting Primarily Of Lead Monoxide And Is Commonly Found In A Yellow Or Reddish Crystalline Form. It Is Widely Used In Industrial Applications Such As Glass And Ceramic Manufacturing, Where It Improves Density, Gloss, And Durability. Litharge Is Also Used In The Production Of Lead Based Chemicals, Pigments, And Batteries, As Well As In Metallurgical Processes As A Flux.
Versatile Industrial ApplicationsLitharge serves as a vital raw material across various industries. Its primary uses include the production of specialty glass, ceramics, and high-performance pigments, as well as the manufacturing of lead stabilizers in PVC. Its unique properties as a flux and oxidizing agent make it indispensable in metallurgical processes, while its ability to enhance glaze and varnish formulas adds value in the coatings industry.
Distinctive Physical and Chemical PropertiesThis powder boasts a striking yellow to red-yellow color and a high melting point of 888C. Litharge is insoluble in water but dissolves in acids, aligning well with both ceramics manufacturing and chemical processing. Its high refractive index and purity levels (98-99%) ensure consistency and reliability across a broad spectrum of demanding industrial uses.
Benefits for Manufacturers and SuppliersLitharge enables manufacturers to achieve the desired optical, thermal, and chemical properties in their end products. By using litharge, suppliers can deliver materials with enhanced durability, stability, and performance. Its multifaceted role streamlines production processes and improves the quality of finished goods in glass, ceramics, and paint applications.
FAQ's of Litharge (1317-36-8) (223.2 g/mol):
Q: How is litharge typically used in industrial applications?
A: Litharge is mainly used as a raw material in the production of specialty glass, ceramics, pigments, and paints. It is also essential in manufacturing lead stabilizers for PVC, and serves as both an oxidizing agent and flux in metallurgical processes.
Q: What is the process for using litharge in glass and ceramic manufacturing?
A: During production, litharge is blended with other raw materials and melted at high temperatures. It acts as a flux, helping to reduce the melting point, and enhances the final product's optical and thermal properties, making it ideal for glass and ceramic formulations.
Q: When should litharge be used over other lead compounds?
A: Litharge is chosen when a dense, high-purity, and easily dissolvable lead compound is needed, especially for formulations requiring efficient fluxing action and optimal stabilizing properties, such as specialty glass or advanced ceramic glazes.
Q: Where is litharge commonly supplied from and who uses it?
A: Litharge is produced and distributed globally, with India being a significant manufacturer and supplier. Its primary users are industries involved in glass, ceramics, PVC, pigment, and paint production.
Q: What benefits does litharge provide in pigment and paint manufacturing?
A: Litharge's high purity and strong coloring properties make it valuable for creating vibrant and durable pigments. It acts as an effective precursor, ensuring stability and longevity in high-performance paints.
Q: How is litharge handled given its solubility characteristics?
A: Litharge is insoluble in water but dissolves in acids. It should be handled with appropriate industrial precautions, ensuring it is mixed or processed according to intended formulations to leverage its solubility profile safely.
Q: What are the advantages of using litharge in PVC production?
A: In PVC manufacturing, litharge is a critical component in producing lead stabilizers. These stabilizers improve the thermal and chemical stability of PVC, extending its performance and lifespan in various applications.