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Evaluating a chemical source-tracing suite for septic system nitrate in household wells

机译:评估家庭水井中化粪池系统硝酸盐的化学来源追踪套件

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Reducing human and ecological risks of groundwater nitrate contamination requires understanding the source of nitrate. Land use practices, such as agriculture and residential development, can increase groundwater nitrate concentrations. This study evaluated a chemical source-tracing suite that paired analysis of agricultural herbicide metabolites and human wastewater constituents. The source-tracing suite was tested in an area subject to nitrate from both agriculture and on-site waste ("septic") systems. Monitoring wells showed that agricultural contamination was deeper (5 m) in the aquifer consistent with its origin a greater distance from wells and that on-site waste ("septic system") contamination was shallower in the aquifer (3 m). Repeated sampling of seventeen household wells showed evidence of both agricultural and on-site waste contamination in wells with higher nitrate concentrations. The artificial sweeteners sucralose and acesulfame and the antibiotic sulfamethoxazole were the only septic system indicators consistently detected. Less persistent compounds, such as caffeine and acetaminophen, were never detected in the household wells indicating they were attenuated over the distance between septic system and well and reducing their utility as a tracer of septic system nitrate. Overall, there was a positive relationship between sucralose, acesulfame and nitrate in wells with low levels of agricultural contamination although the relationship varied between wells. (C) 2018 Elsevier Ltd. All rights reserved.
机译:减少地下水硝酸盐污染的人类和生态风险需要了解硝酸盐的来源。农业和住宅开发等土地使用做法会增加地下水中硝酸盐的浓度。这项研究评估了一种化学源追踪套件,该套件将农业除草剂代谢物和人类废水成分的分析配对。源跟踪套件在一个受到农业和现场废物(“化粪池”)系统硝酸盐影响的地区进行了测试。监测井显示,含水层中的农业污染较深(> 5 m),这与水源距井的距离更大一致,含水层中的现场废物(“化粪池系统”)污染较浅(<3 m) 。重复采样了17口家庭用水井,表明硝酸盐浓度较高的水井中同时存在农业和现场废物污染的迹象。人造甜味剂三氯蔗糖和醋磺酰胺以及抗生素磺胺甲恶唑是唯一能持续检出的化粪池系统指标。持久性较弱的化合物,如咖啡因和对乙酰氨基酚,在家庭井中从未发现,表明它们在化粪池和化粪池之间的距离上衰减,并降低了其作为化粪池硝酸盐示踪剂的效用。总体而言,在农业污染水平较低的井中,三氯蔗糖,乙酰磺胺和硝酸盐之间存在正相关关系,尽管各井之间的关系有所不同。 (C)2018 Elsevier Ltd.保留所有权利。

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