现代条件下水处理系统的新技术解决方案

Ye. M. Matseluk, D. V. Charnyy, V. Levytska, S. Marysyk
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引用次数: 2

摘要

考虑了第聂伯河流域作为饮用水源的地表水水体的水质形成现状。分析了乌克兰目前使用的水处理技术。这些技术与这些供水来源的当前水质不一致,因为这些技术不太适合净化含有任何来源的大量有机成分的水。研究发现,影响暖期水体水质的主要因素之一是浮游植物,特别是浮游植物“开花”期。指出了伴随这一现象的因素,分析了其发展趋势及其对水处理系统运行的影响。考虑了使用具有氧化源水中有机成分作用的试剂的可行性,特别是二氧化氯,二氧化氯的使用可以有效地消毒耐氯微生物群和酚类氧化。此外,在预期霉菌毒素浓度增加的条件下,二氧化氯可以与臭氧类似,成为这些毒素的相当有效的氧化剂,具有持久的消毒效果。在现有典型的水处理厂电容式和包式装置的基础上,提出了强化生物理化过程的水处理系统的发展前景。在这些条件下,确立了现有水处理设施现代化有效解决方案的科学技术发展前景领域,即只考虑那些在不全面或彻底改变水处理技术的情况下有效净化高浓度浮游植物水的解决方案是合理的。也就是说,这些方法应该最大限度地利用现有的处理设施,要么对其进行改造,要么使用新的试剂,要么两者结合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
New technological solutions for water treatment systems in modern conditions
The current state of water quality formation in surface water bodies, which serve as sources of drinking water supply in the Dnieper river basin, was considered. The water treatment technologies currently used in Ukraine, were analyzed. The inconsistency of these technologies with the current water quality in these sources of water supply was established, as these technologies are not quite suitable for the purification of water with a significant organic component of any genesis. It was found that one of the main factors that influences the quality of water in water bodies in the warm period is phytoplankton, especially during their "flowering. The factors accompanying this phenomenon were shown, the development trends and their influence on the operating water treatment systems were analyzed. It was considered the feasibility of using reagents with the effect of oxidation of the organic component of the source water, in particular chlorine dioxide, the use of which is effective in disinfection of chlorine-resistant microbiota and phenols oxidations. Moreover, in the conditions of the expected increase in the concentration of mycocystins, chlorine dioxide can be, by analogy with ozone, a fairly effective oxidant of these toxins with a prolonged disinfection effect. The potential development areas of water treatment systems by intensifying bio-physico-chemical processes on the basis of the existing typical capacitive and package units of water treatment plants are given. The perspective areas of scientific and technological developments for substantiation of effective solutions on modernization of existing water treatment facilities were established in these conditions, namely it is reasonable to consider only those solutions, which provide effective purification of water with high concentration of phytoplankton without comprehensive or radical change of water treatment technology. That is, these approaches should make maximum use of existing treatment facilities, either by their reconstruction, or with the use of new reagents, or a combination of both.
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