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Mechanism analysis and experimental research on the interception of Nitrogen and Phosphorus pollutants by gullies in northern China

机译:北方沟壑沟壑扫氮和磷污染物的机制分析及实验研究

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The discharge of urban sewage and agricultural non-point source pollutants is the main reason causing eutrophication in gullies in most cities of northern China. Based on a careful analysis on the ecological structure and ecological characteristics of a gully, this article preliminarily studies the interception and degradation mechanisms of nitrogen pollutants by the gully. Meanwhile, to take gullies in Changchun as the object of the study, this article carries out an experiment on the interception effect of nitrogen pollutants by gullies. This experiment respectively establishes a control section in the upper and lower reaches of a gully, and takes water samples four times in each section from May to August to determine total nitrogen, total phosphorus, nitrate nitrogen, ammonia nitrogen and salinity. The result shows: the gully plays some role in the interception of pollutants;;total phosphorus accounts for the largest interception in pollutants in the experimented gully section, with the relative interception rate of 27.46%, followed by ammonia nitrogen, with the interception rate of 21.80%, which is the result of the combined effects of aquatic plants, microorganisms and sediment in the gully.
机译:城市污水和农业非点源污染物的排放是大多数中国大多数城市沟渠中富营养化的主要原因。根据沟壑的生态结构和生态特征的仔细分析,本文初步研究了沟壑氮污染物的拦截和降解机制。同时,为了在长春拍摄作为研究的对象,本文对牙龈进行氮污染物的截取效果进行实验。该实验分别在沟壑的上游和下游的控制部分,从5月至8月在每个部分中进行水样,以确定总氮,总磷,硝酸盐氮,氨氮和盐度。结果表明:GULLY在捕获污染物截留中发挥了一些作用;;总磷占污染物中最大的捕获量,相对截取率为27.46%,其次是氨氮,截取率21.80%,这是沟壑中水生植物,微生物和沉积物综合影响的结果。

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