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- W4226329695 abstract "The article deals with the problem of treatment and purification of domestic waste water. Today, many treatment facilities do not have a reagent treatment system and are limited only by mechanical and biological methods of water treatment. We have considered the possibility of using a new scheme for reagent treatment of domestic wastewater. The existing reagent treatment at treatment facilities does not always cope with the tasks of water treatment. It is not possible to achieve the required values for many indicators: COD, residual phosphate content, residual iron content, etc. The water under study was treated with traditional coagulants (iron chloride and aluminum sulfate) and new highly dispersed modified aluminosilicate adsorbents of the KS brand. Lime and alkali were used as alkalizing reagents. A feature of KS grade reagents is their high coagulation-adsorption activity in relation to the extracted components. This is due to the high activity of modifiers on the surface of the aluminosilicate matrix. In the course of the study, a coagulation-flocculation experiment was carried out. During the purification process, the water was examined for the residual content of various components: pH, phosphates, ammonium nitrogen, chlorides, and iron. Effective dosages have been established for each of the reagents used and the possibility of using reagents for the treatment of domestic wastewater to the required standards has been shown. Traditional reagents have shown insufficient efficiency in wastewater treatment. When using iron chloride and aluminum sulfate, it is not possible to reduce the phosphate content to the required values. For the KS reagent, the effective dose was 40 mg / dm3 with the combined use of lime at a dose of 30 mg/dm3" @default.
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- W4226329695 date "2022-01-17" @default.
- W4226329695 modified "2023-09-26" @default.
- W4226329695 title "The use of high-fine modified aluminosilicate adsorbents in the processes of purification of household waste water" @default.
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- W4226329695 doi "https://doi.org/10.20914/2310-1202-2021-4-274-279" @default.
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