The Role of Selected Technological Processes in Drinking Water Treatment

IF 0.5 Q4 ENGINEERING, CIVIL Architecture Civil Engineering Environment Pub Date : 2023-06-01 DOI:10.2478/acee-2023-0028
Iwona Wiewiórska
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Abstract

Abstract The selection of appropriate technological processes for water treatment has a key impact on the qualitative safety of water intended for human consumption. The article analyzes water treatment processes used in a selected Water Treatment Plant (WTP) in terms of surface and ground water treatment. Five-year results of the research are presented on selected physico-chemical and bacteriological parameters of water quality before treatment processes, after individual stages of treatment (settling tanks, DynaSand® filters, ozonation, carbon filters, UV rays and chlorine gas disinfection). The reduction of key pollutants at individual stages of technological processes was calculated. The results of the analyzes demonstrated that the technological processes used in WTP effectively remove turbidity, color, UVA254nm, permanganatate oxygen demand, Fetotal, Mn, coliform bacteria, Enterococcus faecalis and Clostridium Perfringens from the surface and underground water. Studies have shown that infiltration in the ground effectively removes selected pollutants from water and its effectiveness is comparable to high-efficiency treatment processes.
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选定工艺在饮用水处理中的作用
摘要选择合适的水处理工艺对人类消费用水的质量安全具有关键影响。本文从地表水和地下水处理两方面分析了某自来水处理厂的水处理工艺。五年的研究结果介绍了在处理过程之前和处理各个阶段(沉淀池、DynaSand®过滤器、臭氧化、碳过滤器、紫外线和氯气消毒)之后选定的水质理化和细菌学参数。计算了各工艺阶段主要污染物的减量。分析结果表明,WTP工艺流程能有效去除地表水和地下水中的浊度、色度、UVA254nm、高锰酸盐需氧量、Fetotal、Mn、大肠菌群、粪肠球菌和产气荚膜梭菌。研究表明,地下渗透可以有效地去除水中选定的污染物,其效果可与高效处理工艺相媲美。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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