Entropy approach to assessment of the ecological state of a water course

IF 0.3 Q4 GEOLOGY
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引用次数: 3

Abstract

Purpose. Water quality assessment of the Dnipro Reservoir using the entropy index. Methods. Analytical-synthetic method, geo-informational (cartographic modeling), analysis of information sources, entropy analysis. Results. It was established that the water does not meet the upper limit of the 1st quality class according to DSTU 4808:2007 by all parameters except BOD5, COD and suspended matter. There is a decrease in the level of BOD5 at posts in the city of Dnipro, which indicates the entry into the watercourse of substances that inhibit biochemical processes (t4 and t5) and a gradual increase of this indicator at the exit from the city and further downstream, which indicates the entry of organic substances. The oxygen content decreases in the part of the watercourse located in the city (t4 - t6) and increases in the middle and lower part of the reservoir. There is also a trend of growth of sulfates, nitrogen compounds, phosphates, SPAR and COD for control points located within the city of Dnipro. The highest values of the entropy index of water quality are characteristic of points t2 (0.5444), t7 (0.6264) and t8 (0.5322). These control points are located at a considerable distance from industrial centers, so pollution caused by agricultural production probably plays a decisive role in the formation of water quality. The lowest value of the index (0.3889) is characteristic of item t1 - s. Shulgivka, after GVK Dnipro-Donbas. Conclusions. It was established that the main water pollutants are nitrites, nitrates, phosphates and suspended solids. It can cause a negative impact on health due to mutagenic and carcinogenic effects, and also accelerates the eutrophication of the water body. A negative impact of agro-industrial production on the ecological condition of the Dnieper Reservoir is observed. The value of the entropy index of water quality ranges from 0.3889 to 0.6264.
河道生态状态评价的熵值法
目的。利用熵指数评价第聂伯罗水库水质。分析综合方法,地理信息(制图建模),信息源分析,熵分析。结果。结果表明,除BOD5、COD、悬浮物外,其余参数均不符合DSTU 4808:2007规定的一级质量等级上限。第聂伯罗市岗哨的BOD5水平下降,表明抑制生化过程的物质(t4和t5)进入了河道,而该指标在出城处和下游逐渐增加,表明有机物进入了河道。含氧量在位于城市的河道部分(t4 - t6)呈下降趋势,在水库中下游呈上升趋势。位于第聂伯罗市的控制点的硫酸盐、氮化合物、磷酸盐、SPAR和COD也有增长的趋势。水质熵指数最高的特征点为t2(0.5444)、t7(0.6264)和t8(0.5322)。这些控制点距离工业中心相当远,因此农业生产造成的污染可能对水质的形成起决定性作用。该指数的最低值(0.3889)是继GVK第聂伯-顿巴斯之后的第t1 - s项Shulgivka的特征。确定了水体污染物主要为亚硝酸盐、硝酸盐、磷酸盐和悬浮物。它会因诱变和致癌作用对健康造成负面影响,也会加速水体的富营养化。农业工业生产对第聂伯河水库的生态状况产生了负面影响。水质熵指数的取值范围为0.3889 ~ 0.6264。
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