Got Inquiry .... ?
Got Inquiry .... ?

Antiscalant Solutions for RO Systems

Specifications

Molecular Formula :

Grade :

Industrial Grade

CAS Number :

Provided Acc. to Customer Request

Packaging:

Jerry Can

Antiscalant Solutions for RO Systems | High-Performance RO Scale Control

Horizon Chemical Antiscalant Solutions are high-performance scale control chemicals developed to prevent mineral deposition on reverse osmosis membranes. Antiscalant Solutions play a critical role in maintaining membrane permeability, improving recovery rates, and reducing operational downtime caused by scaling.

Our Antiscalant Solutions effectively inhibit carbonate, sulfate, and silicate scale formation, allowing RO systems to operate efficiently even under high salinity and challenging feed water conditions.

Available Grades

HC-6600 – Antiscalant for Brackish Water RO Systems
Highly effective liquid antiscalant specially formulated for brackish water RO systems with feed water TDS up to 5000 ppm. HC-6600 prevents scale formation and maintains stable membrane performance while reducing cleaning frequency.

HC-6800 – Antiscalant for Sea & High TDS RO Systems
Highly effective liquid antiscalant designed for seawater and brackish water RO systems up to 50,000 ppm TDS. HC-6800 prevents carbonate, silicate, and sulfate scale formation, ensuring reliable operation under high salinity conditions.

HC-6900 – Alkaline Antiscalant Solution
Highly effective alkaline liquid antiscalant formulated for seawater and brackish water RO systems. HC-6900 provides superior protection against carbonate, silicate, and sulfate scaling, especially in alkaline feed water environments.

Key Benefits of Antiscalant Solutions for RO Systems

  • Prevents membrane scaling
  • Improves RO recovery efficiency
  • Extends membrane lifespan
  • Reduces chemical cleaning frequency
  • Supports stable system operation
  • Lowers operating and maintenance costs

Horizon Chemical Antiscalant Solutions ensure continuous RO plant performance by preventing scale formation and maintaining optimal membrane efficiency, enabling higher productivity and long-term operational reliability.