Magnesium Oxide (Heavy, USP)

  • Product Code: 127223

high purity Magnesium Oxide (USP grade)

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Test Name Specification
Appearance & physical characteristics White powder, odorless, tasteless and non-toxic
Solubility status Practically insoluble in water, Insoluble in ethanol, soluble in acid or ammonium salt solution
Magnesium oxide (MgO) 98.0% ~ 100.5%
Calcium oxide (CaO) ≤ 0.5%
Soluble Substances ≤ 2.0%
Hydrochloric acid insoluble matter ≤ 0.1%
Iron (Fe) ≤ 3.0 ppm
Lead (Pb) ≤ 3.0 ppm
Arsenic (As) ≤ 3.0 ppm
Loss on ignition ≤ 5.0%
Bulk Density (g/ml) --
Total plate count (cfu/g) < 1000
Yeasts & Moulds (cfu/g) < 100
Coliforms (cfu/g) < 100

Magnesium Oxide Light vs Heavy

Magnesium oxide (MgO) is available in two main forms: light magnesium oxide and heavy magnesium oxide. These two forms differ in their physical properties, production methods, and applications. Here's a detailed comparison:

1. Production Method

  • Light Magnesium Oxide:
    • Produced by calcining magnesium carbonate (MgCO₃) or magnesium hydroxide (Mg(OH)₂) at relatively low temperatures (around 700–1000°C).
    • The process results in a fluffy, low-density powder with a large surface area.
  • Heavy Magnesium Oxide:
    • Produced by calcining magnesium oxide at high temperatures (above 1500°C).
    • The high-temperature process leads to a denser, more compact form with smaller surface area.

2. Physical Properties

Property Light Magnesium Oxide Heavy Magnesium Oxide
Density Low density (0.2–0.5 g/cm³) High density (3.0–3.4 g/cm³)
Particle Size Fine, fluffy particles Coarse, dense particles
Surface Area Large surface area Smaller surface area
Bulk Volume High bulk volume Low bulk volume
Reactivity More reactive Less reactive

3. Applications

  • Light Magnesium Oxide:
    • Used in applications where high reactivity and large surface area are important.
    • Common uses:
      • Pharmaceuticals: As an antacid or laxative.
      • Food Industry: As a food additive or nutrient supplement.
      • Rubber and Plastics: As a filler or curing agent.
      • Environmental Protection: For wastewater treatment or flue gas desulfurization.
  • Heavy Magnesium Oxide:
    • Used in applications where density, thermal stability, and durability are critical.
    • Common uses:
      • Refractory Materials: For manufacturing refractory bricks or linings.
      • Construction: As a component in cement or flooring materials.
      • Electrical Insulation: In cable insulation due to its high thermal conductivity.
      • Agriculture: As a slow-release magnesium fertilizer.

4. Key Differences

Aspect Light Magnesium Oxide Heavy Magnesium Oxide
Density Low High
Reactivity High Low
Surface Area Large Small
Production Cost Lower Higher
Typical Use Cases Pharmaceuticals, food, rubber Refractories, construction, insulation

5. Choosing Between Light and Heavy Magnesium Oxide

  • Choose light magnesium oxide if you need high reactivity, large surface area, or fine particles.
  • Choose heavy magnesium oxide if you need density, thermal stability, or durability.



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Magnesium Oxide (Heavy, USP)

high purity Magnesium Oxide (USP grade)

Magnesium Oxide Light vs Heavy

Magnesium oxide (MgO) is available in two main forms: light magnesium oxide and heavy magnesium oxide. These two forms differ in their physical properties, production methods, and applications. Here's a detailed comparison:

1. Production Method

  • Light Magnesium Oxide:
    • Produced by calcining magnesium carbonate (MgCO₃) or magnesium hydroxide (Mg(OH)₂) at relatively low temperatures (around 700–1000°C).
    • The process results in a fluffy, low-density powder with a large surface area.
  • Heavy Magnesium Oxide:
    • Produced by calcining magnesium oxide at high temperatures (above 1500°C).
    • The high-temperature process leads to a denser, more compact form with smaller surface area.

2. Physical Properties

Property Light Magnesium Oxide Heavy Magnesium Oxide
Density Low density (0.2–0.5 g/cm³) High density (3.0–3.4 g/cm³)
Particle Size Fine, fluffy particles Coarse, dense particles
Surface Area Large surface area Smaller surface area
Bulk Volume High bulk volume Low bulk volume
Reactivity More reactive Less reactive

3. Applications

  • Light Magnesium Oxide:
    • Used in applications where high reactivity and large surface area are important.
    • Common uses:
      • Pharmaceuticals: As an antacid or laxative.
      • Food Industry: As a food additive or nutrient supplement.
      • Rubber and Plastics: As a filler or curing agent.
      • Environmental Protection: For wastewater treatment or flue gas desulfurization.
  • Heavy Magnesium Oxide:
    • Used in applications where density, thermal stability, and durability are critical.
    • Common uses:
      • Refractory Materials: For manufacturing refractory bricks or linings.
      • Construction: As a component in cement or flooring materials.
      • Electrical Insulation: In cable insulation due to its high thermal conductivity.
      • Agriculture: As a slow-release magnesium fertilizer.

4. Key Differences

Aspect Light Magnesium Oxide Heavy Magnesium Oxide
Density Low High
Reactivity High Low
Surface Area Large Small
Production Cost Lower Higher
Typical Use Cases Pharmaceuticals, food, rubber Refractories, construction, insulation

5. Choosing Between Light and Heavy Magnesium Oxide

  • Choose light magnesium oxide if you need high reactivity, large surface area, or fine particles.
  • Choose heavy magnesium oxide if you need density, thermal stability, or durability.
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