High-purity barium carbonate (BaCO₃) provides optimized chemical stability, superior reactivity, and enhanced compatibility for ceramic, glass, and industrial applications. Designed for efficient material integration, it ensures uniform distribution, extended durability, and high adaptability.
Product Overview
High purity barium carbonate (BaCO₃) is an inorganic compound that appears as a white powder. It is highly reactive in chemical reactions and can react with acids to form corresponding salts. When heated, barium carbonate decomposes into barium oxide and carbon dioxide. It has a high melting point and strong electrolytic properties. Due to its excellent chemical stability and strong electrolyte nature, it is widely used across various industries.
Product Features
- Good Chemical Stability: Exhibits high chemical stability at room temperature and good resistance to acids and alkalis.
- High Melting Point: Decomposes into barium oxide and carbon dioxide when heated, making it suitable for high-temperature environments.
- Low Solubility: Extremely low solubility in water, exhibiting strong insolubility.
- Electrolyte Properties: Completely ionizes when molten, demonstrating strong electrolyte characteristics.
Applications
- Coatings Industry: Used as a filler or whitening agent to enhance coverage and durability of coatings.
- Plastic Industry: Improves the performance of plastic products, increasing their strength and heat resistance.
- Paper Industry: Provides brightness and opacity to paper, enhancing paper quality.
- Cosmetics Industry: Used in the production of cosmetics to improve texture and appearance.
- Ceramics Industry: Acts as a component in ceramics, enhancing quality and stability.
- Electronics Industry: Used in multilayer ceramic capacitors, disk ceramic capacitors, positive temperature coefficient thermistors, and other dielectric materials.
Grain Diameter (SEM) | 0.1±0.1 μm | 0.2±0.1μm | 0.3±0.1μm |
Specific Surface Area | 10.0-20.0 m²/g | 5.0-10.0m²/g | 2.0-4.0m²/g |
Purity | ≥ 99.9 % | ≥ 99.9 % | ≥ 99.9 % |