Coarse porous microsphere silica gel

100-200 mesh, specific surface area: 300-550 m2/g

Reagent Code: #93017
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Alias Micropowder silica gel
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Properties The average pore diameter is 8.0-12.0 nm, the pore volume is 0.8-1.1 mL/g, the specific heat is 0.92 KJ/kg.°C, and the thermal conductivity is 0.167 KJ/m.hr.°C. the

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inventory_2 Storage & Handling
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description Product Description

Coarse porous microsphere silica gel is widely used in chromatography as a stationary phase due to its high surface area and uniform pore structure, which enhances separation efficiency. It is also employed in catalysis as a support material, providing a stable and reactive surface for various chemical reactions. In the pharmaceutical industry, it serves as a desiccant to control moisture in packaging, ensuring the stability of sensitive drugs. Additionally, it is utilized in environmental applications for adsorbing pollutants and impurities from water and air, contributing to purification processes. Its robust structure and adsorption properties make it a versatile material in industrial and scientific applications.

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Test Parameter Specification
Appearance white powder and/or chunks
Granularity 100-200
Qualification Rate of Particles 94.5-100%
Attrition rate 0-14%
Specific surface area (m²/g) 300-550
Pore Volume 0.8-1.3 ml/g

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Size Availability Unit Price Quantity
inventory 1kg
10-20 days ฿1,780.00
inventory 5kg
10-20 days ฿6,780.00

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Coarse porous microsphere silica gel
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Coarse porous microsphere silica gel is widely used in chromatography as a stationary phase due to its high surface area and uniform pore structure, which enhances separation efficiency. It is also employed in catalysis as a support material, providing a stable and reactive surface for various chemical reactions. In the pharmaceutical industry, it serves as a desiccant to control moisture in packaging, ensuring the stability of sensitive drugs. Additionally, it is utilized in environmental applications f

Coarse porous microsphere silica gel is widely used in chromatography as a stationary phase due to its high surface area and uniform pore structure, which enhances separation efficiency. It is also employed in catalysis as a support material, providing a stable and reactive surface for various chemical reactions. In the pharmaceutical industry, it serves as a desiccant to control moisture in packaging, ensuring the stability of sensitive drugs. Additionally, it is utilized in environmental applications for adsorbing pollutants and impurities from water and air, contributing to purification processes. Its robust structure and adsorption properties make it a versatile material in industrial and scientific applications.

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