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The initial step in water treatment typically involves the removal of suspended particles and turbidity, which can harbor microorganisms. Coagulants, such as aluminum sulfate (alum) and ferric chloride, are applied to the water to facilitate the aggregation of these particles. The coagulant chemically reacts with impurities, causing them to clump together into larger particles known as flocs. These flocs can then be removed through sedimentation and filtration, significantly improving water clarity.


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Moreover, chlorination is relatively cost-effective and easy to implement compared to other disinfection methods. It requires minimal training and can be integrated into existing water treatment infrastructure efficiently. Additionally, chlorine has a relatively long shelf life and can be stored easily, making it a practical choice for water treatment facilities.


Moreover, the global supply chain for these intermediates can be fraught with disruptions, as seen during the COVID-19 pandemic when many pharmaceutical manufacturers faced shortages. Companies are now exploring localized production strategies and investing in advanced synthesis technologies to mitigate these risks.


2. Soil Stabilization In agriculture, polyacrylamide is used to improve soil structure and minimize erosion. By enhancing water retention and soil permeability, it helps maintain moisture levels in arid regions, promoting crop growth and resilience against drought.


polyacrylamide cas no

polyacrylamide

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