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Silica Sand

Silica Sand

Silica Sand (Quartz Sand) is a naturally occurring industrial mineral composed primarily of high-purity silicon dioxide (SiO2).

It is produced by mining, washing, grading, drying, and sieving to obtain controlled particle sizes and low impurity levels. High-quality silica sand offers excellent chemical purity, hardness, thermal stability, and consistent grain size, making it an essential raw material for numerous industrial applications.

Silica Sand

Applications

Float Glass Industry

  • Primary raw material for manufacturing clear and tinted float glass.
  • Provides transparency, strength, and chemical durability.
  • Low iron silica sand is essential for producing high-quality architectural and automotive glass.
  • Used in windows, mirrors, facades, and interior glass products.

Solar Glass / Solar Panel Industry

  • Ultra-low iron silica sand is used to manufacture solar glass for photovoltaic (PV) panels.
  • Ensures maximum light transmission, improving solar panel efficiency.
  • Essential for producing high-performance renewable energy glass.

Construction Industry

  • Used in cement, ready-mix concrete, dry mortar, tile adhesives, and flooring compounds.
  • Acts as a durable filler and aggregate.
  • Enhances compressive strength, wear resistance, and dimensional stability.
  • Used in decorative plasters and engineered stone products.

Playground & Sports Turf

  • Used as infill sand for artificial grass and sports fields.
  • Provides cushioning, stability, and proper drainage.
  • Also used in children’s playground sand pits after proper washing and grading.
  • Rounded, dust-free grades improve safety and cleanliness.

Foundry Industry

  • Used for manufacturing moulds and cores in metal casting.
  • Offers excellent refractoriness, permeability, and dimensional stability.
  • Produces smooth casting surfaces with accurate dimensions.
  • Suitable for ferrous and non-ferrous metal casting applications.

Key Features

High SiO2 content (typically 98–99.8%+ depending on grade)
Low iron (Fe2O3) content for high optical clarity
Controlled particle size distribution
High hardness (Mohs hardness: 7)
Excellent thermal and chemical stability
Low moisture and inert nature
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