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Drinking Water Treatment Activated Carbon

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Ozone is highly oxidized, it was first used as a disinfectant for drinking water, and it can also remove the color and odor of water. With the development of water treatment technology, the molecular structure of organic compounds can be destroyed to achieve the purpose of changing the material composition by utilizing the strong oxidizing capacity of ozone.
Activated Carbon is a kind of porous material with developed void structure and huge specific surface area. The pores of activated Carbon are divided into macropores, transition holes and micropores, and large pores are mainly distributed on the surface of activated carbon, and the adsorption of organic matter is very small. Transition hole is macromolecular organic matter in water adsorption sites and small molecule organic matter into the pore channels, and pores are the main areas of the activated carbon adsorption of organic compounds, microporous structure than the area accounted for 95% of the total area of activated carbon for the removal of organic matter is influenced by organic matter characteristics, is mainly the influence of the polarity of the organic matter and molecular size, organic matter of same size, the greater the solubility, hydrophilic stronger, activated carbon for the adsorption.
O3 is used in combination with activated carbon and can receive good results. The use of activated carbon in water treatment, small molecules can effectively remove organic matter, but to macromolecular organic matter removal is very limited, if the content of macromolecular organic matter in water is more, will accelerate to the surface of activated carbon adsorption saturation and not make full use of, shortening the period of use. If water oxidized by O3 first, make the state of macromolecular organic matter is decomposed into small molecules in water, will increase the possibility of organic matter into the internal microporous activated carbon and make full use of activated carbon adsorption on the surface, prolong the life cycle. At the same time, the subsequent Activated Charcoal adsorption O3 and oxidation process of a large number of intermediate, including O3 can't remove chloroform and its precursors, guarantee the last water chemical stability.

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