≥99% Magnesium Metaphosphate Mg(PO₃)₂ CAS 13573-62-1 for Specialty Ceramics, Glass Materials, and High-Purity Phosphate Applications
1. Product Overview Magnesium Metaphosphate (Mg(PO₃)₂) is an important high-purity phosphate material. ≥99% magnesium metaphosphate features high purity, good thermal stability, and good chemical stability. As a functional inorganic phosphate material, it is mainly used in specialty ceramics, ...
1. Product Overview
Magnesium Metaphosphate (Mg(PO₃)₂) is an important high-purity phosphate material.
≥99% magnesium metaphosphate features high purity, good thermal stability, and good chemical stability. As a functional inorganic phosphate material, it is mainly used in specialty ceramics, phosphate glasses, high-temperature resistant materials, and specialty inorganic material systems.
Compared with ordinary magnesium salt products, high-purity magnesium metaphosphate places greater emphasis on purity, metal impurity control, material consistency, and high-temperature application performance.
For the Russian market, this product is mainly targeted at specialty ceramic enterprises, glass material companies, high-temperature material producers, research institutions, and traders of high-purity inorganic materials.
2. Specifications
Product Name: Magnesium Metaphosphate
Russian Name: Метафосфат магния
Chemical Formula: Mg(PO₃)₂
Purity: ≥99%
Appearance: White powder
Product Category: High-purity phosphate material
Packaging: 25 kg bags, bulk bags, or customized packaging
Storage: Store in a dry, moisture-proof environment in sealed containers
3. Main Application Areas
① Specialty Ceramics and Functional Materials
Magnesium metaphosphate can be used in phosphate ceramics, inorganic functional materials, and specialty formulation systems, providing good thermal stability and material bonding properties.
② Phosphate Glass Materials
Used in specialty phosphate glass systems, it can improve glass structural stability, suitable for functional glass and specialty industrial glass manufacturing.
③ High-Temperature and Refractory Materials
Due to its good thermal stability, it can be used in high-temperature material systems, refractory binders, and specialty inorganic materials.
④ High-Purity Phosphate Research and Development
Serves as a magnesium-based phosphate raw material for functional material development and specialty chemical production.
4. Key Purchasing Criteria in the Russian Market
When sourcing ≥99% magnesium metaphosphate, Russian customers typically focus on:
-Mg(PO₃)₂ content;
-Magnesium and phosphorus element ratio;
-Metal impurities: Fe, Na, Ca, Al, etc.;
-Particle size distribution;
-Moisture content;
-High-temperature stability performance;
-Technical documentation including COA, TDS, and SDS.
5. Product Advantages
-≥99% high purity;
-Good thermal and chemical stability;
-Suitable for specialty ceramics and phosphate glass applications;
-Stable batch-to-batch supply and quality control;
-Compliant with international trade technical documentation requirements.
6. Packaging and Storage
Magnesium metaphosphate should be packaged in moisture-proof, sealed packaging to prevent moisture absorption and contamination.
It is recommended to store in a dry, well-ventilated environment and to keep packaging intact to ensure product performance stability.
7. Frequently Asked Questions (FAQ)
Q: Which industries primarily use ≥99% magnesium metaphosphate?
A: It is mainly used in specialty ceramics, phosphate glasses, high-temperature materials, functional inorganic materials, and high-purity phosphate systems.
Q: Why is higher purity required for magnesium metaphosphate?
A: High purity minimizes the impact of impurities such as Fe, Na, Ca, and Al on material performance, improving product suitability for ceramics, glass, and high-temperature material applications.
Q: What is the difference between magnesium metaphosphate and ordinary magnesium salts?
A: Magnesium metaphosphate has a polyphosphate structure, offering advantages in high-temperature stability, glass formation, and inorganic material bonding; ordinary magnesium salts are mainly used for conventional industrial applications.
Q: What is the difference between magnesium metaphosphate, aluminum metaphosphate, and calcium metaphosphate?
A: Magnesium metaphosphate is mainly used in functional ceramics, high-temperature materials, and specialty glass systems; aluminum metaphosphate is more focused on refractories and inorganic bonding systems; calcium metaphosphate is more commonly used in phosphate glass and ceramic materials.
Q: What documents are required for purchasing magnesium metaphosphate in Russia?
A: Typically, COA, TDS, SDS, certificate of origin, and packaging information are required.