规范废水成分,最大限度降低水库富营养化风险

IF 1.3 Q4 ENGINEERING, ENVIRONMENTAL Journal of Ecological Engineering Pub Date : 2024-06-01 DOI:10.12911/22998993/186822
Оleg Proskurnin, N. Tsapko, Тaras Ivashchenko, Sergey Vasilenko, Karina Belokon, Nikolay Zakharchenko, Anatolii Yurchenko, Natalia Teliura
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引用次数: 0

摘要

这篇文章旨在确定排入水库的废水中营养物质的允许含量,最终目的是将富营养化的风险降至最低。人们注意到,乌克兰和大多数欧洲国家目前使用的控制废水中污染物排放的方法,只是为了不超过基于卫生指标的天然水中允许的污染水平,这并不能保证水体没有富营养化的风险。文章介绍了一种根据生物源指标确定废水允许成分的方法。所提出的方法考虑到了营养物质的连续转化、决定水体水质的各种因素的概率性质以及净化废水中各种污染物的成本。考虑的问题是废水通过水道排入水库的情况。这项研究为进一步改进废水成分标准化方法提供了实用的科学依据,从而保护水体免受富营养化的影响。
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Standardizing the Wastewater Composition in Order to Minimize the Eutrophication Risk for the Reservoir
The article strives to determine the allowable content of nutrients in the wastewater that is being discharged into a reservoir, with the end goal of minimizing the risk of eutrophication. It was noted that the methodology currently used in Ukraine and most European countries to control pollutant discharge in wastewater is designed to simply not exceed the permissible pollution level in natural water based on sanitary indicators, which does not guarantee the absence of the eutrophication risk to the water bodies. The article describes a developed method for determining the allowable composition of wastewater based on biogenic indicators. The proposed method takes into account the consecutive transformation of nutrients, the probabilistic nature of the factors that determine the quality of water in water bodies, as well as the cost of purifying wastewater from various pollutants. The problem was considered for the case of wastewater discharge into a reservoir through a watercourse. This research is a practical scientific basis for further improving the methodology for standardization of the wastewater composition in order to protect water bodies from eutrophication.
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来源期刊
Journal of Ecological Engineering
Journal of Ecological Engineering ENGINEERING, ENVIRONMENTAL-
CiteScore
2.60
自引率
15.40%
发文量
379
审稿时长
8 weeks
期刊介绍: - Industrial and municipal waste management - Pro-ecological technologies and products - Energy-saving technologies - Environmental landscaping - Environmental monitoring - Climate change in the environment - Sustainable development - Processing and usage of mineral resources - Recovery of valuable materials and fuels - Surface water and groundwater management - Water and wastewater treatment - Smog and air pollution prevention - Protection and reclamation of soils - Reclamation and revitalization of degraded areas - Heavy metals in the environment - Renewable energy technologies - Environmental protection of rural areas - Restoration and protection of urban environment - Prevention of noise in the environment - Environmental life-cycle assessment (LCA) - Simulations and computer modeling for the environment
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