- Hydrotalcite
- Highly transparent hydrotalcite
- Catalyst carrier hydrotalcite
- Flame retardant hydrotalcite
- Stabilizer hydrotalcite
- Agricultural film hydrotalcite
- Nucleating agent hydrotalcite
- Magnesium hydroxide
- Mineral-derived magnesium hydroxide D100
- Synthesized magnesium hydroxide D110
- Electronic grade magnesium hydroxide D120
- Chemical method magnesium hydroxide D5
- Chemical method magnesium hydroxide D6
- Flame retardant
- Rubber specific flame retardant D130
- Efficient flame retardant D320/D320MD
- Efficient flame retardant D320T
- Efficient flame retardant H5VA/D330
- Thermal insulation materials
- Automotive lining
- Automotive insulation materials
- New energy battery insulation film
- Industrial insulation materials
Magnesium hydroxide
Advantage
|
Excellent dispersibility |
![]() |
|
Good weather resistance |
|
|
Efficient flame retardancy |
|
|
High thermal stability |
|
|
broad applications |
D100 is magnesium hydroxide produced by A&H Technology through ore method, which has the characteristics of high purity and uniform particle size distribution. Simultaneously possessing excellent flame retardant and smoke suppression functions, it is an excellent choice for manufacturing green halogen-free and environmentally friendly flame retardant materials. Compared with magnesium hydroxide produced by ordinary ore method, it has the advantages of high heat absorption during decomposition, good thermal stability, and low relative hardness. It can be widely used in the field of flame retardancy for engineering plastics, epoxy resins, rubber, wires and cables, and their accessories. Silane modification can improve the compatibility between inorganic fillers and polymers, significantly enhancing the flame retardancy, tensile strength, water resistance, and low-temperature performance of composite materials.
|
Excellent dispersibility |
![]() |
|
Good weather resistance |
|
|
Efficient flame retardancy |
|
|
High thermal stability |
|
|
broad applications |
D100 is magnesium hydroxide produced by A&H Technology through ore method, which has the characteristics of high purity and uniform particle size distribution. Simultaneously possessing excellent flame retardant and smoke suppression functions, it is an excellent choice for manufacturing green halogen-free and environmentally friendly flame retardant materials. Compared with magnesium hydroxide produced by ordinary ore method, it has the advantages of high heat absorption during decomposition, good thermal stability, and low relative hardness. It can be widely used in the field of flame retardancy for engineering plastics, epoxy resins, rubber, wires and cables, and their accessories. Silane modification can improve the compatibility between inorganic fillers and polymers, significantly enhancing the flame retardancy, tensile strength, water resistance, and low-temperature performance of composite materials.
Product characteristics
| Parameter | Premium Grade | Standard Grade |
|
Magnesium Oxide (MgO) Content, wt.% |
≥ 62.0 |
≥ 60.0 |
|
Loss on Ignition (800°C), % |
≥ 29.5 |
≥ 28.0 |
|
Iron Content (Fe), % |
≤ 0.15 |
≤ 0.30 |
|
Chloride Content (Cl−), % |
≤ 0.06 |
≤ 0.10 |
|
Surface Moisture, % |
≤ 0.5 |
≤ 0.6 |
|
Particle Size (d50), μm |
3.5 - 4.0 |
7.5 - 8.0 |
|
325 Mesh Sieve Passing Rate, % |
≥ 99.75 |
≥ 99.50 |
|
Whiteness Index, % |
≥ 88.0 |
≥ 85.0 |
|
Bulk Density, g/cm³ |
0.3 - 0.4 |
0.3 - 0.4 |
| Parameter | Premium Grade | Standard Grade |
|
Magnesium Oxide (MgO) Content, wt.% |
≥ 62.0 |
≥ 60.0 |
|
Loss on Ignition (800°C), % |
≥ 29.5 |
≥ 28.0 |
|
Iron Content (Fe), % |
≤ 0.15 |
≤ 0.30 |
|
Chloride Content (Cl−), % |
≤ 0.06 |
≤ 0.10 |
|
Surface Moisture, % |
≤ 0.5 |
≤ 0.6 |
|
Particle Size (d50), μm |
3.5 - 4.0 |
7.5 - 8.0 |
|
325 Mesh Sieve Passing Rate, % |
≥ 99.75 |
≥ 99.50 |
|
Whiteness Index, % |
≥ 88.0 |
≥ 85.0 |
|
Bulk Density, g/cm³ |
0.3 - 0.4 |
0.3 - 0.4 |
Application scope














