Trichloroisocyanuric Acid 90% (TCCA 90) – High-Chlorine Disinfection for Pools and Water Systems
💧 Product Description
Trichloroisocyanuric Acid 90% (TCCA 90) is a high-chlorine solid compound widely used for pool, spa, water park, and industrial water disinfection. With its slow-dissolving property, it ensures long-lasting protection against bacteria, viruses, algae, and other harmful microorganisms.
Teget Kimya provides TCCA 90 in tablet, granular, and powder forms. Its stable chlorine release helps maintain pH balance and makes it suitable for both shock chlorination and regular maintenance.
🔬 Technical Specifications
Form: Powder, granular, table
Chlorine Content: ≥ 90% active chlorine
CAS Number: 87-90-1
Molecular Formula: C₃Cl₃N₃O₃
Solubility (25°C): 1.2 g/100 mL water
pH (1% solution): 2.7 – 3.3
Packaging: 25 kg drum, 50 kg drum, tablet bucket
Usage: Industrial and professional use only
🏊 Applications
Indoor / outdoor swimming pools
Spa and jacuzzi systems
Water parks
Industrial cooling towers
Wastewater treatment plants
Agricultural irrigation water disinfection
💡 Advantages
High chlorine content for powerful disinfection
Slow, controlled release for extended protection
Minimal impact on pH balance
Suitable for both maintenance and shock chlorination
Broad-spectrum control against bacteria, viruses, and algae
⚠️ Safety Information
Strong oxidizing agent, keep away from flammable materials.
Use gloves, goggles, and mask during handling.
Store in a cool, dry, and closed place.
🌍 The Teget Kimya Advantage
High-purity TCCA 90 compliant with international standards
Multiple form options (tablet, granular, powder)
Technical support for accurate dosing and application
Fast delivery and reliable logistics
🔍 Keywords
trichloroisocyanuric acid, tcca 90, pool chlorine, chlorine tablet, chlorine granule, high chlorine disinfectant, pool water cleaning, spa chlorine, water park chlorine, tcca 90 cas 87-90-1, swimming pool chemicals, chlorine-based disinfectant, water treatment chlorine, algae control chlorine, shock chlorination