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Responses of Macroinvertebrate Community Metrics to a Wastewater Discharge in the Upper Blue River of Kansas and Missouri, USA

机译:美国堪萨斯州和密苏里州蓝河上游大型无脊椎动物群落指标对废水排放的响应

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摘要

The Blue River Main wastewater treatment facility (WWTF) discharges into the upper Blue River (725 km~2), and is recently upgraded to implement biological nutrient removal. We measured bio-tic condition upstream and downstream of the discharge utilizing the macroinvertebrate protocol developed for Kansas streams. We examined responses of 34 metrics to determine the best indicators for discriminating site differences and for predicting biological condition. Significant differences between sites upstream and downstream of the discharge were identified for 15 metrics in April and 12 metrics in August Upstream biotic condition scores were significantly greater than scores at both downstream sites in April (p = 0.02), and in August the most downstream site was classified as non-biologically supporting. Thirteen EPT taxa (Ephemeroptera, Plecoptera, Tri-choptera) considered intolerant of degraded stream quality were absent at one or both downstream sites. Increases in tolerance metrics and filtering macroinvertebrates, and a decline in ratio of scrapers to filterers all indicated effects of increased nutrient enrichment. Stepwise regressions identified several significant models containing a suite of metrics with low redundancy (R~2 = 0.90 - 0.99). Based on the rapid decline in biological condition downstream of the discharge, the level of nutrient removal resulting from the facility upgrade (10% - 20%) was not enough to mitigate negative effects on macroinvertebrate communities.
机译:蓝河主要废水处理设施(WWTF)排放到蓝河上游(725 km〜2),最近进行了升级,以实现生物营养去除。我们利用为堪萨斯州河流开发的大型无脊椎动物协议,测量了排放上游和下游的生物条件。我们检查了34种指标的响应,以确定区分部位差异和预测生物学状况的最佳指标。分别在4月的15个指标和8月的12个指标中确定了排放上游和下游站点之间的显着差异。上游生物条件得分显着大于4月两个下游站点的得分(p = 0.02),而8月是最下游站点被归类为非生物支持。一个或两个下游站点均不存在被认为不能容忍水流质量下降的13个EPT类群(星翅目,鞘翅目,三翅目)。耐受性指标的提高和对大型无脊椎动物的过滤以及刮刀与过滤器比率的降低均表明营养物富集增加。逐步回归确定了几个重要模型,这些模型包含一组具有低冗余度的度量(R〜2 = 0.90-0.99)。基于排放下游生物条件的迅速下降,设施升级带来的营养去除水平(10%-20%)不足以减轻对大型无脊椎动物群落的负面影响。

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