第聂伯罗水库各地区底栖动物的生产

Agrology Pub Date : 2019-09-01 DOI:10.32819/019023
N. Hubanova
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引用次数: 2

摘要

引用本文:Hubanova,N.L.(2019)。第聂伯罗(扎波里日亚)水库各地区底栖动物的生产。农学,2(3),156-160。doi:10.32819/019023摘要。本文介绍了在不同库区发现的受各种环境因素影响的底栖动物的研究结果。本研究的目的是利用Shannon、Menchinik和Goodnight指数分析海底生物的物种多样性、底栖生物群的分布和水生生物的丰度。储层环境受水生生物丰度及其功能特征的影响。底栖动物在水库水生态中起着重要作用,因此,研究其物种组成是一个重要问题。作为研究的一部分,分析了水库不同区域底栖动物群落的多样性和丰度。水库的底栖动物由五个系统群代表,包括104种不同起源的物种,处于不同的发育阶段,主要为幼虫阶段。物种多样性不仅受到外部环境因素的影响,还受到水库深部和沿岸带的影响。由于该地区有机质含量的增加,形成了许多底层泥泞的生物群落。使用Mayer和Menchinic指数测定水质,使用Shannon指数测量水生生物的物种多样性。Viyskove村附近的生物区被发现是一个有条件清洁的地区,因为那里的水质符合标准,海底生物的登记数量明显高于其他群体。应特别注意位于第聂伯罗管道厂和第聂伯罗冶金厂附近的区域,这些区域排放的工业废水含有大量不同来源的污染物;这些地区的水生生物极其贫乏,那里的水不符合质量标准。它们的物种多样性也很差,以一两种无脊椎动物为代表。鉴于水生和陆地生态系统的进一步变化、全球气候变化、轻工业和重工业的进一步发展及其对第聂伯罗(扎波里日亚)水库生态系统的影响,我们得出的结论是,应对水库饲草基地形成过程中的各类水生生物、水化学特征和营养环节进行持续监测研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Production of zoobenthos in various areas of the Dnipro (Zaporizhzhia) reservoir
Cite this article: Hubanova, N. L. (2019). Production of zoobenthos in various areas of the Dnipro (Zaporizhzhia) reservoir. Agrology, 2(3), 156‒160. doi: 10.32819/019023 Abstract. The paper presents the results obtained during the study of zoobenthos found in various reservoir areas located at a considerable distance from each other and influenced by various environmental factors. The purpose of the study was to analyze the species diversity of benthos using the Shannon, Menchinik and Goodnight indices, distribution of benthic groups and abundance of hydrobionts. The reservoir environment is influenced by the abundance of hydrobionts and their functional features. Zoobenthos plays a key role in hydroecology of the reservoir, therefore, the study of its species composition is an important issue. As part of the study, diversity and abundance of zoobenthic groups were analyzed in various areas of the reservoir. Zoobenthos of the reservoir is represented by five systematic groups that include 104 species of various origins at different stages of development with the dominant larval stage. The species diversity is influenced not only by external environmental factors, but also by the profundal and littoral zones of the reservoir. There are numerous biotopes with muddy bottom layers formed by the increased amounts of organic matter in the areas. The water quality was determined using the Mayer and Menchinic indices, and the species diversity of hydrobionts was measured using the Shannon index. The biotopes near Viyskove village was found to be a conditionally clean area as the water quality there complied with the standards and the registered number of benthic organisms was significantly higher compared with other groups. Particular attention should be paid to the areas located near the Dnipro Pipe and Dnipro Metallurgical Plants that discharge industrial wastewater with significant levels of pollutants of various origins; these areas are extremely poor in hydrobionts and the water there does not meet the quality standard. They also have poor species diversity, represented by one or two species of invertebrates. In view of further changes in aquatic and terrestrial ecosystems, global climate changes, further development of light and heavy industries and their impact on the ecosystem of the Dnipro (Zaporizhzhia) Reservoir, we came to the conclusion that continuous monitoring studies should be performed on all groups of aquatic organisms as well as hydrochemical characteristics of water and trophic links in the formation of the reservoir forage base.
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