根据2016-2022年资料,沃罗涅日水库在“开花”状态下的生态和卫生状况

Galina A. Antsiferova, Sergey L. Shevyrev, Vadim V. Kul‘nev, Nadezhda I. Rusova, Ekaterina S. Galkina
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摘要

的目标。研究了沃罗涅日水库在蓝藻“开花”条件下的生态状态。材料与方法。评价水质数据包括水化学分析、水域悬浮物分布和温度评价、水生生物研究材料(浮游植物)、水中微囊藻毒素含量等。结果和讨论。对2016-2022年库区生态状态发生的人为变化方向进行了追踪。在2010-2012年夏季异常高温的影响下,与水质恶化相关的不可逆效应非常明显,同时还伴有大规模的水华。这产生了不可逆转的后果,大部分水域最终形成了生态退化。目前,包括2022年,有一个漫长的夏秋“水华”水域,与之相关的是有机物体积的增加,由于蓝藻产生的蓝藻毒素形成水生毒性。在此期间,我们评估了悬浮物相对含量和水温的分布。结论。水质变化的预测是不利的,因为它伴随着水库生态系统的定向生态回归,并且被密集的水“盛开”所强调。对于他们的康复,可以推荐一种生物技术的algalization方法。
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Ecological and sanitary condition of the Voronezh water reservoir under “blooming” conditions based on materials from 2016–2022
The aim. Study of the ecological state of the Voronezh reservoir under conditions of “blooming” of water by cyanobacteria. Materials and Methods. EEvaluating water quality data of hydrochemical analysis, assessment of suspended solids distribution and temperature in the water area, materials of hydrobiological study (phytoplankton), microcystin content in water have been taken into account. Results and Discussion. The direction of anthropogenic changes occurring in the ecological state of the reservoir has been traced for 2016–2022. The irreversible effects associated with water quality deterioration were clearly evident under the influence of abnormally high summer air temperatures in 2010–2012, accompanied by the massive development of water “blooms”. This has had irreversible consequences, as an ecological regression has finally taken shape in most of the water area. At present, including 2022, there is a prolonged summer-autumn “bloom” of waters, the associated with it an increase in the volume of organic matter, formation of aquatic toxicity due to cyanotoxins produced by cyanobacteria. For this period we have evaluated the distribution of the relative content of suspended solids and water temperature. Conclusion. The prognosis ofwater quality transformation is unfavourable, as it is accompanied by a directed ecologicalregression of the reservoir ecosystem, and is emphasized by intensive “blooming” of waters. For their rehabilitation, a biotechnological method of algolisation can be recommended.
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