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Tracing nitrates and sulphates in river basins using isotope techniques

机译:使用同位素技术追踪流域中的硝酸盐和硫酸盐

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The objective of this paper is to outline how stable isotope techniques can contribute to the elucidation of the sources and the fate of riverine nitrate and sulphate in watershed studies. The example used is the Oldman River Basin (OMRB), located in southern Alberta (Canada). Increasing sulphate concentrations and decreasing delta S-34 values along the flowpath of the Oldman River indicate that oxidation of pyrite in tills is a major source of riverine sulphate in the agriculturally used portion of the OMRB. Chemical and isotopic data showed that manure-derived nitrogen contributes significantly to the increase in nitrate concentrations in the Oldman River and its tributaries draining agricultural land. It is suggested that hydrological conditions control agricultural return flows to the surface water bodies in southern Alberta and impart significant seasonal variations on concentrations and isotopic compositions of riverine nitrate. Combining isotopic, chemical, and hydrometric data permitted us to estimate the relative contribution of major sources to the total solute fluxes. Hence, we submit that isotopic measurements can make an important contribution to the identification of nutrient and pollutant sources and to river basin management.
机译:本文的目的是概述稳定的同位素技术如何有助于在流域研究中阐明河源硝酸盐和硫酸盐的来源和命运。使用的示例是位于加拿大艾伯塔省南部的奥尔德曼河流域(OMRB)。硫酸盐浓度的增加和沿奥尔德曼河水流径的δS-34值的降低表明,耕作中黄铁矿的氧化是OMRB农业使用部分中河硫酸盐的主要来源。化学和同位素数据表明,粪肥中的氮显着增加了奥尔德曼河及其支流农田的支流中硝酸盐的浓度。有人认为,水文条件控制着农业返回阿尔伯塔省南部地表水体的流量,并使硝酸河的浓度和同位素组成出现明显的季节性变化。结合同位素,化学和水文数据,我们可以估算主要来源对总溶质通量的相对贡献。因此,我们认为同位素测量可以对营养和污染物源的识别以及流域管理做出重要贡献。

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