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利用生物指标评估俄罗斯奥涅加湖流域超淡水腐殖质条件下北欧河流系统的生态状况(松娜河)。

Assessment of the ecological status of the river water system in European North under conditions of ultra-fresh humus waters using biotic indices (Suna River, Lake Onega Basin, Russia).

机构信息

Institute of Biology, Karelian Research Center, Russian Academy of Sciences, Petrozavodsk, Russian Federation E-mail:

Institute of Biology, Karelian Research Center, Russian Academy of Sciences, Petrozavodsk, Russian Federation.

出版信息

Water Sci Technol. 2024 Aug;90(3):1023-1032. doi: 10.2166/wst.2024.254. Epub 2024 Jul 23.

DOI:10.2166/wst.2024.254
PMID:39141049
Abstract

Protecting rivers and lakes from pollution is crucial for maintaining the health of aquatic ecosystems and ensuring the well-being of both wildlife and humans. Present study intends to examine the water quality of the Suna River (Eastern Fennoscandia in the European North of Russia) to assess the ecological risk. Widespread methods for assessing water quality based on macrozoobenthos and phytoperiphoton were applied. It was found that in conditions of ultra-fresh waters with high humus content, biotic indicators may indicate pollution of water bodies that do not actually experience significant anthropogenic impact. Ratings ranging from 'poor' to 'excellent' were obtained for different stations, reflecting the influence of natural features of different sections of the river. 'Good' water quality was noted at the river stones biotopes. In river gravel, sand and silt biotopes, as well as all lake biotopes, 'mediocre' water quality was found. The low anthropogenic income on the river catchment allows us to conclude that most indices for assessing water quality significantly underestimate the results in the natural conditions of Eastern Fennoscandia. Biotic indices EPT, BBI and EBI are most accurate for assessing the water quality of rivers and lakes in Eastern Fennoscandia.

摘要

保护河流和湖泊免受污染对于维护水生生态系统的健康以及确保野生动植物和人类的福祉至关重要。本研究旨在检查俄罗斯欧洲北部北芬兰的苏纳河(Eastern Fennoscandia)的水质,以评估生态风险。应用了广泛的基于大型底栖动物和浮游植物的水质评估方法。研究发现,在高腐殖质含量的超淡水条件下,生物指标可能表明水体受到污染,而实际上这些水体并未受到显著的人为影响。不同站点获得了从“差”到“优”的评分,反映了河流不同河段自然特征的影响。在河石生境中发现了“良好”的水质。在河卵石、沙和淤泥生境以及所有湖泊生境中,发现水质为“中等”。河流流域的低人为收入使我们得出结论,大多数水质评估指标在北欧东部的自然条件下显著低估了结果。EPT、BBI 和 EBI 生物指数最适合评估北欧东部河流和湖泊的水质。

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Organic pollution of rivers: Combined threats of urbanization, livestock farming and global climate change.河流的有机污染:城市化、畜牧业和全球气候变化的综合威胁。
Sci Rep. 2017 Feb 23;7:43289. doi: 10.1038/srep43289.