Features of dynamics of the Southern Buh river aquatic environment parameters during the summer low-water period

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Abstract

Formulation of the problem. Global climate change causes transformation in the humidification regime and, as a result, makes adjustments to economic activities and features of water use. In the context of Ukraine, against the background of climate change, the runoff of most domestic rivers is declining, which especially in the limited period exacerbates the issue of balanced use of ecosystem services of aquatic ecosystems and prioritization of needs during resource allocation, control of rivers and establishment of their functioning. The purpose of the article. Recognizing the strategic importance of freshwater ecosystems in ensuring sustainable regional and national development, the study of the Southern Bug River was aimed at assessing its ecological status in order to identify sources of negative anthropogenic impact and identify general ecosystem distortions that may affect the functional integrity of the aquatic ecosystem. Methods. The research points on the Southern Bug River were determined by the method of randomization. The total length of the route was about 200 km. Also, the spatial location of settlements was taken into account, so that the investigated points were both upstream and downstream. Measurement of physicochemical parameters was performed by instruments: TDS-3, TDS/ЕС/Temp-meter HM COM-100, pH-meter Ezodo 6011A. The task of hydrobiological research was to find and identify species at the family level. The research was conducted at the end of July 2020, when the river entered to low flow phase. Results. On the basis of field research, the assessment of the ecological state of the Southern Bug River in the lower course (from the city of Pivdennoukrainsk) was carried out in the work. Regularities of pH dynamics and mineralization of the aquatic environment are established. The limits of the spatial influence of the Black Sea waters on the Southern Bug, the continental advance of which (upstream) almost 100 km up is due to the high level of regulation of basin runoff, have been specified. The same processes, as a consequence, affect not only biodiversity, but also the features of industrial and domestic water use. Using the stenobiontic approach, the level of ecological safety of the Southern Bug ecosystem in the lower course was assessed. Based on the obtained results of stenobioindication, the zoning of the studied area of the Southern Bug is proposed, which compares quite well with the results of pH and mineralization measurements. Only 1% of the route, which corresponds to the porous section of the river channel, was classified as a "healthy ecosystem". The closer to the mouth, the pH of the water gradually increases, which contributes to the intensification of the eutrophication process. Scientific novelty and practical significance. The obtained results are considered to be an integral part of future field research on the identification of sources of negative impact on the aquatic ecosystem of the Southern Bug. The novelty of the results obtained is a comprehensive assessment of the ecological state of the river ecosystem in the low flow period, which, in contrast to the concept of maximum permissible concentration, characterizes the state of the Southern Bug not point, but takes into account the cumulative and synergistic effects of anthropogenic impact. The latter are best manifested during the summer season, as a result of which the structure and biomass of the river's food chain change significantly. In addition, the analysis of the rational use of water resources of rivers allowed us to state that the modern system of environmental standards, which in particular regulate the quality of the aquatic environment, cannot ensure the preservation of river ecosystems.
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夏季低潮期南布河水环境参数动态特征
问题的表述。全球气候变化导致了加湿制度的转变,并因此对经济活动和用水特征进行了调整。以乌克兰为背景,在气候变化的背景下,大多数国内河流的径流量正在下降,特别是在有限的时期内,这加剧了平衡利用水生生态系统生态系统服务和在资源分配、河流控制和建立其功能过程中优先考虑需求的问题。文章的目的。认识到淡水生态系统在确保区域和国家可持续发展中的战略重要性,对南布格河的研究旨在评估其生态状况,以确定负面人为影响的来源,并确定可能影响水生生态系统功能完整性的一般生态系统扭曲。采用随机化方法确定南布格河的研究点。路线的总长度约为200公里。同时考虑了聚落的空间位置,使调查点在上游和下游都有。理化参数测量仪器:TDS-3、TDS/ЕС/ temp - HM COM-100、pH-meter Ezodo 6011A。水生生物学研究的任务是在科的水平上发现和鉴定物种。该研究于2020年7月底进行,当时河流进入低流量阶段。在实地调查的基础上,对南布格河下游(从皮维登努克兰斯克市开始)的生态状况进行了评估。建立了水环境的pH动态和矿化规律。已经明确指出了黑海水域对南部臭虫的空间影响的极限,南部臭虫的大陆推进(上游)几乎向上100公里是由于盆地径流的高度调节。因此,同样的过程不仅影响生物多样性,而且也影响工业和家庭用水的特点。采用窄仿生方法,对河段下游南蝽生态系统的生态安全水平进行了评价。根据所获得的生物指示结果,提出了南虫研究区的分区,并与pH和矿化测量结果进行了比较。只有1%的路线,对应于河道的多孔部分,被归类为“健康生态系统”。越靠近河口,水的pH值逐渐升高,这有助于富营养化过程的加剧。具有科学新颖性和现实意义。所获得的结果被认为是未来对南蝽水生生态系统负面影响来源识别的实地研究的一个组成部分。所得结果的新颖之处在于对河流生态系统在低流量期的生态状态进行了综合评估,与最大允许浓度的概念相反,它表征了南虫点的状态,但考虑了人为影响的累积效应和协同效应。后者在夏季表现最好,因此河流食物链的结构和生物量发生了显著变化。此外,对河流水资源合理利用的分析表明,现代环境标准体系,特别是规范水环境质量的标准体系,并不能保证河流生态系统的保护。
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