White, voluminous, and highly fine powder.
| Item | Technical Standard |
| Main Content (MgO) | ≥ 96.0% |
| Calcium Oxide (CaO) | ≤ 1.5% |
| Iron(III) Oxide (Fe2O3) | ≤ 0.1% |
| Loss on Ignition (LOI) | ≤ 5.0% |
| Bulk Density | ≤ 0.15 g/cm³ |
| Residue on Sieve (150μm) | ≤ 0.05% |
Construction & Cements: Serves as a fundamental raw material in the production of Magnesium Oxychloride Cement (MOC) and Magnesium Oxysulfate (MOS) for fireproof building boards and panels. It is also utilized as a specialized shrinkage-compensating admixture in mass concrete (like dams) to prevent thermal and drying cracks.
Rubber & Plastics Industry: Acts as a premium acid acceptor, scorch retarder, and vulcanization accelerator in the manufacturing of chloroprene rubber (Neoprene) and fluoroelastomers, preventing early cross-linking during processing.
Ceramics & Refractories: Used as a raw material for advanced ceramics, crucible manufacturing, and specialized refractory surface coatings due to its high melting point.
Environmental & Water Treatment: Functions as an effective alkaline neutralizing agent for acid industrial wastewater and aids in the precipitation and removal of heavy metal ions.
Precautions: The fine powder can generate significant dust. Inhalation may cause mild mechanical irritation to the respiratory tract. Ensure excellent ventilation and wear appropriate personal protective equipment (PPE), including dust masks and safety goggles, during handling.
Standard Packaging: 20kg or 25kg multi-wall paper bags with PE inner liners.
Storage Recommendations: Highly sensitive to moisture and carbon dioxide. It will slowly absorb moisture and CO2 from the air to form magnesium hydroxide and basic magnesium carbonates. Must be stored in a strictly dry, cool, and well-ventilated indoor warehouse. Ensure bags are tightly sealed immediately after partial use.
Shelf Life: 12 months (under strictly dry and sealed conditions).
We leverage advanced molecular design to optimize the workability and durability of concrete. Our polycarboxylate-based solutions are engineered to reduce water usage significantly while maintaining excellent slump retention, even in the most challenging climates and complex mix designs