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Nitrate in groundwater: an isotopic multi-tracer approach

机译:地下水中的硝酸盐:同位素多示踪法

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In spite of increasing efforts to reduce nitrogen inputs into groundwater from intensive agriculture, nitrate (NO_3) remains one of the major pollutants of drinking-water resources worldwide. Determining the source(s) of NO_3 contamination in groundwater is an important first step for improving groundwater quality by emission control, and it is with this aim that we investigated the viability of an isotopic multi-tracer approach (δ~(15)N, δ~(11)B, ~(87)Sr/~(86)Sr), in addition to conventional hydrogeologic analysis, in two small catchments of the Arguenon watershed (Brittany, France). The main anthropogenic sources (fertilizer, sewage effluent, and hog, cattle and poultry manure) were first characterized by their specific B, N and Sr isotope signatures, and compared to those observed in the ground- and surface waters. Chemical and isotopic evidence shows that both denitrification and mixing within the watershed have the effect of buffering NO_3 contamination in the groundwater. Coupled δ~(11)B, δ~(15)N and ~(87)Sr/~(85)Sr results indicate that a large part of the NO_3 contamination in the Arguenon watershed originates from the spreading of animal manure, with hog manure being a major contributor. Point sources, such as sewage effluents, contribute to the NO_3 budget of the two watersheds.
机译:尽管加大了减少集约化农业向地下水中氮输入的努力,硝酸盐(NO_3)仍然是全世界饮用水资源的主要污染物之一。确定地下水中NO_3污染的来源是通过排放控制来改善地下水质量的重要的第一步,因此,我们研究了同位素多示踪方法(δ〜(15)N, δ〜(11)B,〜(87)Sr /〜(86)Sr),除了常规的水文地质分析外,还在Arguenon流域的两个小流域(法国布列塔尼)中。主要的人为来源(肥料,污水,猪,牛和家禽粪便)首先以其特定的B,N和Sr同位素特征为特征,然后与在地下水和地表水中观察到的特征进行比较。化学和同位素证据表明,流域内的反硝化作用和混合作用都具有缓冲地下水中NO_3污染的作用。 δ〜(11)B,δ〜(15)N和〜(87)Sr /〜(85)Sr的耦合结果表明,Arguenon流域的大部分NO_3污染源自动物粪便的传播和生猪。肥料是主要贡献者。点源(如污水)对两个流域的NO_3预算有贡献。

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