采用多指标生物完整性指数方法确定湖泊污染最严重的主要河流集水区

C. Aura, C. Nyamweya, J. Njiru, R. Omondi, J. Manyala, S. Musa, H. Owiti, F. Guya, C. Ongore, Z. Ogari, J. Mwamburi
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引用次数: 2

摘要

我们提出了生物完整性的多度量指数方法,该方法允许根据非洲维多利亚湖肯尼亚部分的污染状况对主要河流集水区进行排名。这项研究具有更广泛的适用性,适用于所有维多利亚湖、其他非洲大湖和所有有河流排放的湖泊。所提出的方法利用水质和环境数据、当地知识和已有文献。所考虑的参数是在2016年至2018年的旱季(7月采样)和雨季(3月采样)期间采样的。Mann-Whitney U检验的分离力(p < 0.05)将大型无脊椎动物和鱼类样本的11个判别指标纳入1、3和5的评分系统中,以制定最终的多度量生物完整性指数方法学方法。与南部河流相比,北部河流的生物完整性多度量指数方法得分较低。本文采用多指标生物完整性指数方法进行排名,并通过社区对污染水平的感知进行验证。Nzoia河流域污染最严重,其次是Yala河、Kuja河和Sondu-Miriu河。淤积、家庭洗涤、垃圾和垃圾成为主要的污染源。管理当局应加强对重要水资源的平衡利用,以尽量减少未来的影响,并促进确保湖泊生态系统的生态健康和可持续性的全流域做法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Using the Multi-metric Index of Biotic Integrity methodological approach to determine the major river catchment that most pollutes a lake
We present the Multi-metric Index of Biotic Integrity methodological approach that allows for the ranking of major river catchments based on pollution status in the Kenyan portion of Lake Victoria, Africa. The study has a broader applicability to all of Lake Victoria, other African Great Lakes, and all lakes that have riverine discharge. The method presented utilizes water quality and environmental data, local knowledge, and pre-existing literature. The parameters considered were sampled from 2016 to 2018 during the dry season (July sampling) and the wet season (March sampling). Separation power of Mann-Whitney U test (p < 0.05) qualified 11 discriminant metrics for both macroinvertebrate and fish samples into the scoring system of 1, 3 and 5 in the formulation of final Multi-metric Index of Biotic Integrity methodological approach. Rivers in the northern section had lower Multi-metric Index of Biotic Integrity methodological approach scores, as compared to southern counterparts. The Multi-metric Index of Biotic Integrity methodological approach ranking herein was validated by community perceptions on pollution levels. River Nzoia catchment emerged as the most polluted, followed by River Yala, River Kuja, and Sondu-Miriu. Siltation, domestic washing, litter and refuse emerged as the main agents of pollution. Management authorities ought to reinforce a balanced utilization of the vital water resources to minimize future impacts, and promote catchment wide practices that ensure ecological health sustainability of the lake ecosystem.
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