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评估新泽西州北部城市河口地表水水质的人为影响:多元方法。

Assessment of anthropogenic influences on surface water quality in urban estuary, northern New Jersey: multivariate approach.

机构信息

New Jersey Meadowlands Commission, Meadowlands Environmental Research Institute, 1 DeKorte Park Plaza, Lyndhurst, NJ 07071, USA.

出版信息

Environ Monit Assess. 2013 Mar;185(3):2777-94. doi: 10.1007/s10661-012-2748-0. Epub 2012 Jul 7.

DOI:10.1007/s10661-012-2748-0
PMID:22773080
Abstract

Concentrations of selected heavy metals (Cd, Cr, Cu, Pb, Ni, Fe, and Zn), nutrients (NO (3) (-) and NH(3)), fecal coliform colonies, and other multiple physical-chemical parameters were measured seasonally from 12 locations in an urban New Jersey estuary between 1994 and 2008. Stepwise regression, principal component analysis, and cluster analysis were used to group water quality results and sampling locations, as well as to assess these data's relationship to sewage treatment effluents and the distance to the mouth of the river. The BOD(5), NH(3), NO (3) (-) and fecal coliform counts clustered as one group and positively correlated to the distances from treated effluent and the measures of magnitude at the discharge points. Dissolved solids and most metal species scored high along a single principal component axes and were significantly correlated with the proximity to the industrialized area. From these data, one can conclude that the effluent discharge has been a main source of anthropogenic input to the Hackensack River over the past 15 years. Therefore, the greatest improvement to water quality would come from eliminating the few remaining combined sewer overflows and improving the removal of nutrients from treated effluents before they are discharged into the creeks and river.

摘要

1994 年至 2008 年期间,从新泽西州一个城市河口的 12 个地点采集了选定重金属(Cd、Cr、Cu、Pb、Ni、Fe 和 Zn)、养分(NO3-和 NH3)、粪便大肠菌群和其他多种物理化学参数的样本,测量其浓度。采用逐步回归、主成分分析和聚类分析对水质结果和采样地点进行分组,评估这些数据与污水处理厂排放物和河流入海口距离的关系。BOD5、NH3、NO3-和粪便大肠菌群计数聚集为一组,与从处理后的污水和排放点的数量测量值的距离呈正相关。溶解固体和大多数金属种类沿单个主成分轴得分较高,与靠近工业区显著相关。从这些数据可以得出结论,在过去的 15 年中,污水排放一直是哈肯萨克河人为输入的主要来源。因此,水质的最大改善将来自消除少数剩余的合流污水溢流,并在处理后的污水排放到小溪和河流之前提高对养分的去除。

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