在生物盘装置中固定化微生物病转化含氮污染的废水处理

IF 0.6 Q4 ECOLOGY Ecological Questions Pub Date : 2022-03-24 DOI:10.12775/eq.2022.017
V. Iurchenko, K. Tsytlishvili, M. Malovanyy
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引用次数: 2

摘要

实验工作致力于研究在生物盘装置中处理废水过程中的脱氨和脱氮效率。工作假设-固定化微生物群落可以同时深度处理有机化合物和无机含氮化合物产生的废水。这项工作的目的是评估在生物盘装置中从氮化合物中净化高浓度有机污染物和矿化废水的效率,并确定固定化氮转化微生物群落中包括的微生物的主要生态营养群。固定化微生物群落的研究方法——微生物学。生理、生化(抑制实验)、天然和模拟废水-水化学。已经证实,在固定在圆盘上的微生物群落中,产生了允许异养和自养微生物在好氧和无氧条件下主动代谢有机和无机化合物的条件。已经确定了处理过的废水中有机物浓度对过程动力学影响的定量指标。在固定化微生物群落的微生物学、生理学和生物化学研究的基础上,发现了铵盐细菌(可能还有古菌)亚硝酸和反硝化细菌,以及在环境中不存在有机物质的情况下——厌氧氨氧化细菌。此外,在环境中没有有机物质的情况下形成的生物膜中,厌氧氨氧化菌的脱氨活性显著超过铵氧化菌和古菌的活性。所获得的结果和定量要求用于组织工业条件下生物分散厂的实际废水处理。
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Wastewater treatment by conversion of nitrogen-containing pollution by immobilized microbiocenosis in a biodisk installation
Experimental works are devoted to research the efficiency of deamonization and de-nitrogenation of wastewater during treatment in a biodisk installation. Working hypothesis - immobilization of the microbiocenosis can provide simultaneous deep treatment of wastewater from organic compounds and inorganic nitrogen-containing compounds. The purpose of this work is to assess the efficiency of purification of highly concentrated organic pollutants and mineralized wastewater from nitrogen compounds in a biodisk installation and to determine the main ecological-trophic groups of microorganisms included in the immobilized nitrogen-transforming microbiocenosis. Methods of research of immobilized microbiocenosis - microbiological. physiological, biochemical (inhibitory experiments), natural and model wastewater - hydrochemical. It has been established that in microbiocenosis immobilized on disks conditions that allow heterotrophic and autotrophic microorganisms to actively metabolize organic and inorganic compounds under aerobic and anoxidic conditions are created. The quantitative indicators of the influence on the kinetics of the processes of the concentration of organic substances in the treated wastewater have been determined. On the basis of microbiological, physiological and biochemical studies in the immobilized microbiocenosis, ammonium-acid bacteria (and, possibly, archaea) nitrite-acid and denitrifying bacteria were found, and in the absence of organic substances in the environment - anammox bacteria. Moreover, in the biofilm that was formed in the absence of organic substances in the environment, the activity of anammox bacteria in deamonization significantly exceeded the activity of ammonium oxidizing bacteria and archaea. The obtained results and quantitative requirements were used in the organization of real wastewater treatment in a biodisc plant in industrial conditions.
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来源期刊
CiteScore
1.90
自引率
0.00%
发文量
38
期刊介绍: The fundamental task set by the editors of the journal is to bring together and present a diversity of research connected with ecology. Apart from the traditional ecological research areas, the scope of the journal will embrace more peripheral ecological issues connected with other disciplines of biology. Recognizing the increasing importance of the humanities in ecological research, the editors will strive to give such issues due representation in the journal. We hope to encourage the researchers contributing to the journal to adopt an unconventional approach to solving ecological problems, to go beyond classical, well-established conceptions, and to include methodological and anthropological issues. Such an approach is validated by the intensive development of the sciences bordering on both biology and the humanities that has been observed over recent years.
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