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Monitoring groundwater nitrate attenuation in a regional system coupling hydrogeology with multi-isotopic methods: The case of Plana de Vic (Osona, Spain)

机译:用多位同位素方法监测区域系统偶联水文地质化的地下水硝酸盐衰减:Plana de Vic(奥索纳,西班牙)的情况

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摘要

This paper describes an integrated application of classical hydrogeological methods and multi-isotopic methods (δ15N, δ 18ON O3, δ34S, δ 18OS O4, δ13C) to assess the fate of groundwater nitrate in the Osona area, declared vulnerable to nitrate pollution by the Catalan Government in 1998, where nitrate is derived from intensive pig farming activities. Previous studies, involving a small area, indicated the occurrence of denitrification processes and their relationship with pyrite oxidation [Vitòria, L., Soler, A., Canals, A., Otero, N., 2008. Environmental isotopes (N, S, C, O, D) to determine natural attenuation processes in nitrate contaminated waters: example of Osona (NE Spain). Appl. Geochem. 23, 3597-3611]. For the present study, groundwater samples were collected at 60 production wells at three different periods between April 2005 and May 2006 to confirm that denitrification takes place in a larger area than that studied by Vitòria et al. [Vitòria, L., Soler, A., Canals, A., Otero, N., 2008. Environmental isotopes (N, S, C, O, D) to determine natural attenuation processes in nitrate contaminated waters: example of Osona (NE Spain). Appl. Geochem. 23, 3597-3611]. The aim of the study was to characterize the denitrification processes that control natural attenuation and to study their spatial and temporal variations. Nitrate concentration ranged from 10 to 529 mg/l, with 82% of the wells above the drinking water threshold of 50 mg NO3/l. Nitrate isotopic composition ranged from +5.3‰ to +35.3‰ for δ15N and from +0.4‰ to +17.6‰ for δ 18ON O3, and the samples showed a positive correlation between δ15N and δ 18ON O3, with a εN/εO ratio of 1.8, consistent with denitrification processes. The link between denitrification and pyrite oxidation is demonstrated by coupling chemical data with nitrate and sulfate isotopes. Furthermore, a spatial distribution of samples with significant denitrification was observed, allowing us to determine two main hydrogeological zones where natural attenuation was most effective. In several of the studied points, denitrification processes related to pyrite oxidation predominated and an estimation of the isotopic enrichment factors was performed using the temporal variations of nitrate concentration and the isotopic composition of dissolved nitrate (δ 15NN O3 and δ 18ON O3). Finally, using estimated isotopic enrichment factors, an approximation of the degree of natural attenuation of nitrate was performed on those samples showing clear denitrification, and a median value of 30% of contaminant diminution was obtained
机译:本文描述的经典的水文地质方法和多同位素的方法(δ15N,δ18ON O3,δ34S,δ18OS O4,δ13C)的综合应用,以评估在Osona区域地下水硝酸盐的命运,宣布加泰罗尼亚易受硝酸盐污染政府在1998年,其中硝酸盐集约化生猪养殖活动的。以前的研究,涉及小区域,表示反硝化过程的发生和它们与黄铁矿氧化[维多利亚,L.,索勒,A.,运河,A.,奥特罗,N.,2008年环境同位素(N,S的关系, C,O,d),以确定在硝酸盐污染的水域自然衰减处理:例如Osona(NE西班牙)。苹果。 Geochem。 23,3597-3611]。对于目前的研究,在60口生产井收集在2005年4月和2006年5月之间的三个不同时期,以确认脱氮发生在比由维多利亚等人研究一个更大的区域地下水样品。 [维多利亚,L.,索勒,A.,运河,A.,奥特罗,N.,2008年环境同位素(N,S,C,O,d),以确定在硝酸盐污染的水域自然衰减处理:例如Osona的( NE西班牙)。苹果。 Geochem。 23,3597-3611]。该研究的目的是表征控制自然衰减,并研究它们的空间和时间变化的脱硝处理。硝酸浓度为10至529毫克/升,与高于50毫克NO3 /升的饮水阈孔的82%。硝酸盐同位素组成范围从+ 5.3‰至+ 35.3‰,δ15N和从+ 0.4‰至+ 17.6‰,δ18ON O3,且样品显示δ15N之间和δ18ON O3正相关,与1.8的εN/ε0比与反硝化过程是一致的。反硝化作用和黄铁矿氧化之间的链路通过耦合与硝酸和硫酸的同位素化学数据显示。此外,观察到有显著脱硝样品的空间分布,使我们能够确定的两个主要水文地质区域,其中自然衰减是最有效的。在若干所研究的点的,与黄铁矿氧化为主脱氮工艺和使用硝酸浓度的时间变化,并溶于硝酸的同位素组成进行同位素富集因子的估计(δ15NN O3和δ18ON O3)。最后,使用估计的同位素富集因子,已于表示清楚脱氮那些样品进行硝酸盐自然衰减的程度的近似,并且得到的污染物缩减30%的中位值

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