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Stream Health Evaluation Using a Combined Approach of Multi-Metric Chemical Pollution and Biological Integrity Models

机译:多指标化学污染与生物完整性模型相结合的河流健康评估

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Bouchung Stream is a large tributary of the Geum River watershed that is simultaneously affected by wastewater treatment plant effluents and agricultural activities in the watershed area. The focal subject was to diagnose the chemical and biological health of the temperate stream by using a combined approach of the multi-metric water pollution index (WPI) and the index of biological integrity (IBI KR ), using datasets from 2008–2014. Water chemistry analyses indicated seasonal and inter-annual variations mainly linked to the intensity of monsoon rainfall in the watershed, potentially causing the availability of agricultural runoff water. The main events of phosphorus inflow and nitrogen dilutions occurred during July–August. Temporal and spatial heterogeneities were observed and were largely recognizable due to nutrient enrichment and organic matter intensification. Chlorophyll showed weak linear relation to total phosphorus ( R 2 = 0.17) but no relation to total nitrogen ( p 0.05). Fish compositions analyzed as trophic/tolerance guilds in relation to water chemistry showed visible decline and modifications. Average WPI site scores ranged from 33–23, indicating an excellent upstream to fair downstream water quality status. Correspondingly, IBI KR scores ranged between 38–28 approximating with WPI site classification, as well as both indices showed higher regression relation ( R 2 = 0.90). Fish guild analyses revealed tolerant and omnivore species dominating the downstream, while sensitive and insectivores depleting in approximation with changing water chemistry and was confirmed by the principal component analysis. In addition, the fish guilds meticulously responded to phosphorus inflows. In conclusion, overall stream health and water chemistry analyses indicated continuous chemical and biological degradation influencing the trophic and tolerance fish guilds. Moreover, the combined application approach of WPI and IBI KR could help in better understanding the chemical and biological mechanisms in rivers and streams.
机译:Bouchung Stream是锦江分水岭的大型支流,同时受到分水岭地区的废水处理厂废水和农业活动的影响。重点研究对象是采用多指标水污染指数(WPI)和生物完整性指数(IBI KR)相结合的方法,使用2008-2014年的数据集,对温带河流的化学和生物健康进行诊断。水化学分析表明,季节和年际变化主要与流域的季风降雨强度有关,可能导致农业径流水的供应。磷流入和氮稀释的主要事件发生在7月至8月之间。观察到时间和空间的异质性,并且由于营养物的富集和有机质的增强而在很大程度上可以识别。叶绿素与总磷呈弱线性关系(R 2 = 0.17),而与总氮无线性关系(p> 0.05)。被分析为与水化学相关的营养/耐受性协会的鱼类组成显示出明显的下降和变化。 WPI站点的平均得分在33-23之间,表明上游水质状况良好,下游水质状况一般。相应地,IBI KR评分介于38–28之间,与WPI站点分类相近,并且两个指数均显示出较高的回归关系(R 2 = 0.90)。鱼行协会的分析表明,耐受性和杂食性物种占主导地位,而敏感性和食虫性物种则随着水化学变化而逐渐消失,并通过主成分分析得到了证实。此外,鱼行会对磷的流入做出了精心的响应。总之,总体河流健康和水化学分析表明,持续的化学和生物降解会影响营养和耐受性鱼类行会。此外,WPI和IBI KR的组合应用方法可以帮助更好地了解河流和溪流中的化学和生物机制。

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