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首页> 外文期刊>Journal of water and health >Catchment process affecting drinking water quality, including the significance of rainfall events, using factor analysis and event mean concentrations
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Catchment process affecting drinking water quality, including the significance of rainfall events, using factor analysis and event mean concentrations

机译:利用因子分析和事件平均浓度,影响饮用水质量的集水过程,包括降雨事件的重要性

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To ensure the protection of drinking water an understanding of the catchment processes which can affect water quality is important as it enables targeted catchment management actions to be implemented. In this study factor analysis (FA) and comparing event mean concentrations (EMCs) with baseline values were techniques used to asses the relationships between water quality parameters and linking those parameters to processes within an agricultural drinking water catchment. FA found that 55% of the variance in the water quality data could be explained by the first factor, which was dominated by parameters usually associated with erosion. Inclusion of pathogenic indicators in an additional FA showed that Enterococcus and Clostridium perfringens (C. perfringens) were also related to the erosion factor. Analysis of the EMCs found that most parameters were significantly higher during periods of rainfall runoff. This study shows that the most dominant processes in an agricultural catchment are surface runoff and erosion. It also shows that it is these processes which mobilise pathogenic indicators and are therefore most likely to influence the transport of pathogens. Catchment management efforts need to focus on reducing the effect of these processes on water quality.
机译:为了确保保护饮用水,了解可能影响水质的集水过程非常重要,因为它可以实施有针对性的集水管理行动。在这项研究中,因子分析(FA)以及将事件平均浓度(EMC)与基线值进行比较的技术被用于评估水质参数之间的关系,并将这些参数与农业饮用水集水区的过程联系起来。 FA发现水质数据中55%的方差可以由第一个因素解释,该因素主要由通常与侵蚀相关的参数决定。在另外的FA中包含致病性指标表明,肠球菌和产气荚膜梭菌(C. perfringens)也与侵蚀因子有关。对EMC的分析发现,在降雨径流期间,大多数参数明显更高。这项研究表明,农业流域中最主要的过程是地表径流和侵蚀。它还表明正是这些过程调动了病原学指标,因此最有可能影响病原体的运输。集水区管理工作应集中在减少这些过程对水质的影响上。

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