Analysis of concentrations of biogenic compounds discharged into water bodies with municipal wastewater

S. Shamanskyi, Lesia Pavliukh, Olena Horbachova, Victor Repeta
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引用次数: 1

Abstract

There were analyzed the effect of increased concentration of biogenic elements, as well as increased temperature on the frequency and magnitude of cyanobacteria reproduction. The goal was to identify the main causes of poor water quality in surface water bodies of Ukraine compared to European countries, as well as the impact of municipal wastewater entering water bodies on the quality of water in them. It is shown that pollution with biogenic elements (compounds of nitrogen and phosphorus) is one of the main reasons for unsatisfactory water quality in water bodies. This, in turn, is the cause of a number of such problems as the change in biological diversity and productivity of water bodies due to the eutrophication of freshwater and marine ecosystems, and the spread of diseases associated with unsatisfactory drinking water quality. One of the main sources of biogenic elements entering surface water bodies is municipal wastewater. Long-term observations of the composition of wastewater from municipal sewage systems indicate that the concentration of biogenic elements in them can be different. It largely depends on the sources of the effluents. In the total amount of nitrogen and phosphorus compounds entering the wastewater, a significant place is occupied by the economic activity of the inhabitants of the residential areas. Experience shows that, regardless of the level of water supply, the total mass of biogens entering the sewage systems from one inhabitant over a certain period of time is constant. However, taking into account the fact that the water availability for residents is different, the concentration of biogens in wastewater will also be different due to different dilutions. The calculation shows that for the entire possible range of water consumption levels (from 100 to 285 l/day per inhabitant according to the standards), the concentration of biogenic elements in wastewater can be: total nitrogen – from 38.6 to 110 mg/l; ammonium nitrogen – from 36.1 to 102.8 mg/l; nitrites – from 2.35 to 6.74 mg/l; nitrates – from 43.27 to 123.67 mg/l; total phosphorus – from 6.31 to 18 mg/l; phosphates – from 15.49 to 44.17 mg/l; organic phosphorus – from 1.26 to 3.60 mg/l.
城市污水排入水体的生物化合物浓度分析
分析了生物源元素浓度的增加和温度的升高对蓝藻繁殖频率和数量的影响。目的是查明与欧洲国家相比,乌克兰地表水水体水质差的主要原因,以及进入水体的城市废水对水体水质的影响。结果表明,生物源性元素(氮磷化合物)污染是水体水质不理想的主要原因之一。这又造成了一些问题,例如淡水和海洋生态系统的富营养化造成水体生物多样性和生产力的变化,以及与饮用水质量不理想有关的疾病的传播。城市污水是地表水中生物元素的主要来源之一。对城市污水系统废水组成的长期观察表明,其中生物源元素的浓度可能不同。这在很大程度上取决于污水的来源。在进入废水的氮磷化合物总量中,居住区居民的经济活动占据了重要的位置。经验表明,无论供水水平如何,一个居民在一定时期内进入污水系统的生物原总量是恒定的。但是,考虑到居民用水可得性不同,由于稀释度不同,废水中生物原的浓度也会不同。计算表明,在整个可能的用水水平范围内(按标准每人每天100至285升),废水中生物元素的浓度可以为:总氮-从38.6至110毫克/升;氮铵-从36.1至102.8毫克/升;亚硝酸盐-从2.35毫克/升至6.74毫克/升;硝酸盐-从43.27毫克/升到123.67毫克/升;总磷-从6.31毫克/升到18毫克/升;磷酸盐- 15.49至44.17毫克/升;有机磷-从1.26毫克/升到3.60毫克/升。
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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