Clean water is something we often take for granted, but behind every drop is a precise treatment process supported by essential chemicals.
This visual breaks down the Coagulation–Flocculation process, one of the most critical steps in water treatment:
🔹 Coagulants (e.g., alum, ferric chloride) help destabilize and clump tiny particles.
🔹 Flocculants (e.g., polymers) bind those particles into heavier flocs.
🔹 Sedimentation allows these flocs to settle, leaving clarified water.
🔹 Disinfectants like chlorine or ozone remove harmful pathogens.
🔹 pH Adjusters ensure water quality, system protection, and regulatory compliance.
These steps work together to transform raw water into safe, consumable water for our communities.
Water treatment isn't just science — it’s public health, sustainability, and innovation.
This visual breaks down the Coagulation–Flocculation process, one of the most critical steps in water treatment:
🔹 Coagulants (e.g., alum, ferric chloride) help destabilize and clump tiny particles.
🔹 Flocculants (e.g., polymers) bind those particles into heavier flocs.
🔹 Sedimentation allows these flocs to settle, leaving clarified water.
🔹 Disinfectants like chlorine or ozone remove harmful pathogens.
🔹 pH Adjusters ensure water quality, system protection, and regulatory compliance.
These steps work together to transform raw water into safe, consumable water for our communities.
Water treatment isn't just science — it’s public health, sustainability, and innovation.
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