首页> 美国卫生研究院文献>International Journal of Environmental Research and Public Health >Using Principal Components Analysis and IDW Interpolation to Determine Spatial and Temporal Changes of Surface Water Quality of Xin’anjiang River in Huangshan China
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Using Principal Components Analysis and IDW Interpolation to Determine Spatial and Temporal Changes of Surface Water Quality of Xin’anjiang River in Huangshan China

机译:基于主成分分析和IDW插值的黄山新安江地表水水质时空变化

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摘要

This study was aimed at assessing the spatial and temporal distribution of surface water quality variables of the Xin’anjiang River (Huangshan). For this purpose, 960 water samples were collected monthly along the Xin’anjiang River from 2008 to 2017. Twenty-four water quality indicators, according to the environmental quality standards for surface water (GB 3838-2002), were detected to evaluate the water quality of the Xin’anjiang River over the past 10 years. Principal component analysis (PCA) was used to comprehensively evaluate the water quality across eight monitoring stations and analyze the sources of water pollution. The results showed that all samples could be analyzed by three main components, which accounted for 87.24% of the total variance. PCA technology identified important water quality parameters and revealed that nutrient pollution and organic pollution are major latent factors which influence the water quality of Xin’anjiang River. It also showed that agricultural activities, erosion, domestic, and industrial discharges are fundamental causes of water pollution in the study area. It is of great significance for water quality safety management and pollution control of the Xin’anjiang River. Meanwhile, the inverse distance weighted (IDW) method was used to interpolate the PCA comprehensive score. Based on this, the temporal and spatial structure and changing characteristics of water quality in the Xin’anjiang River were analyzed. We found that the overall water quality of Xin’anjiang River (Huangshan) was stable from 2008 to 2017, but the pollution of the Pukou sampling point was of great concern. The results of IDW helped us to identify key areas requiring control in the Xin’anjiang River, which pointed the way for further delicacy management of the river. This study proved that the combination of PCA and IDW interpolation is an effective tool for determining surface water quality. It was of great significance for the control of water pollution in Xin’anjiang River and the reduction of eutrophication pressure in Thousand Island Lake.
机译:本研究旨在评估新安江(黄山)地表水水质变量的时空分布。为此,从2008年至2017年,每月在新安江沿线采集960个水样。根据地表水环境质量标准(GB 3838-2002),检测了二十四个水质指标以评估水质。近十年来新安江水质主成分分析(PCA)用于全面评估八个监测站的水质并分析水污染源。结果表明,所有样本均可以通过三个主要成分进行分析,占总方差的87.24%。 PCA技术确定了重要的水质参数,并揭示了养分污染和有机污染是影响新安江水质的主要潜在因素。它还表明,农业活动,水土流失,家庭和工业排放是研究区域水污染的根本原因。这对新安江水质安全管理和污染控制具有重要意义。同时,采用反距离加权(IDW)方法对PCA综合评分进行插值。在此基础上,分析了新安江水质的时空结构及其变化特征。我们发现,新安江(黄山)的总体水质在2008年至2017年期间是稳定的,但浦口采样点的污染却引起了极大关注。 IDW的结果帮助我们确定了新安江需要控制的关键区域,这为进一步管理该河流的美味佳肴指明了道路。这项研究证明了PCA和IDW插值的组合是确定地表水水质的有效工具。这对于控制新安江水污染和降低千岛湖富营养化压力具有重要意义。

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