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High Purity Caustic Magnesia

Updated: 2026-07-15

Overview

High Purity Caustic Magnesia is a premium form of magnesium oxide (MgO) with minimal impurities, typically exceeding 98% purity. It is produced through calcination of magnesium carbonate or hydroxide at high temperatures. The term 'caustic' refers to its alkaline nature and reactivity, distinguishing it from dead-burned magnesia used in less demanding applications. This material is favored in industries requiring exceptional thermal and chemical resistance, such as refractory manufacturing. Its low impurity profile ensures consistent performance in high-temperature environments, making it a critical raw material for advanced ceramics and metallurgical processes.

Physical and Chemical Properties

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High Purity Caustic Magnesia exhibits a high melting point (2,852°C) and density (3.58 g/cm³), making it ideal for refractory applications. Its alkaline properties allow it to neutralize acids, while its low solubility in water ensures stability in humid conditions. The material’s white powder form is easy to process into pellets or bricks. Key chemical properties include resistance to reduction by carbon and compatibility with other refractory materials like alumina. Particle size distribution (commonly 1-100 microns) affects sintering behavior, with finer grades offering superior reactivity for ceramic bonding.

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Main Applications

The primary use of High Purity Caustic Magnesia is in refractory linings for steelmaking furnaces, cement kilns, and glass tanks, where it withstands temperatures exceeding 1,600°C. It also serves as a binding agent in magnesium oxychloride cements and as a raw material for advanced ceramics, including electrical insulators. In environmental applications, it treats acidic wastewater and flue gases due to its neutralizing capacity. The pharmaceutical and food industries utilize food-grade MgO as an antacid or nutrient supplement, though such grades require additional purification.

Safety and Storage

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While non-toxic, High Purity Caustic Magnesia can irritate respiratory tracts and eyes upon prolonged exposure. Dust control measures (e.g., ventilation, NIOSH masks) are recommended during handling. Storage requires airtight containers to prevent moisture absorption, which can reduce reactivity. Incompatible materials include strong acids (e.g., hydrochloric acid), which react exothermically. Spills should be cleaned with dry methods to avoid slurry formation. Suppliers typically provide Material Safety Data Sheets (MSDS) with detailed hazard mitigation protocols.

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B2B Procurement Guide

Procuring High Purity Caustic Magnesia requires attention to purity (≥98% MgO), impurity profiles (e.g., SiO₂, CaO limits), and particle size specifications. Bulk buyers should request certificates of analysis (CoA) and traceability documentation to ensure consistency. Leading producers are concentrated in China, Russia, and the Middle East. Prices fluctuate based on energy costs and demand from the steel industry. Negotiate long-term contracts to mitigate price volatility. For niche applications (e.g., pharmaceuticals), consider specialty suppliers with ultra-high-purity (99.9%) capabilities.

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