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Chromium isotopes tracking the resurgence of hexavalent chromium contamination in a past-contaminated area in the Friuli Venezia Giulia Region, northern Italy

机译:追踪意大利北部弗留利·威尼斯·朱利亚地区过去受污染地区六价铬污染再度发生的铬同位素

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The origin of a resurgent hexavalent chromium contamination in groundwater from a phreatic aquifer in the Friuli Venezia Giulia Region plain was investigated by chromium isotopic systematics. The area underwent a severe Cr(VI) contamination by industrial effluents in 1997, when Cr(VI) concentration in groundwater reached 4500 mu g/L. In subsequent years the contamination naturally attenuated, totally disappearing in 2003. A renewal of water contamination was observed in 2008, Cr(VI) reaching 1560 mu g/L. The delta Cr-53 value in groundwater and extracts from sediments was measured in 2009-2011, and it ranges between -3.21 and +0.21 parts per thousand and between -4.71 and +1.26 parts per thousand, respectively. Due to the lack of geogenic Cr-sources, these data are interpreted as evidence of the subsequent oxidation through Mn-oxides of the Cr(III) hosted in the aquifer and originated by the reduction of the original industrial chromates. Cr(III) is characterized by negative delta Cr-53, starting from the delta Cr-53 value around zero of Cr(VI) in industrial effluents. Oxidation liberates soluble Cr(VI) which is transported by groundwater and permeated soils. The complex Cr-isotopic vs. concentration distribution reflects both the new Cr(VI) reduction and dilution processes in the aquifer system. From an environmental point of view, the data raise concerns regarding the potential impact of past Cr(VI)-contamination.
机译:通过铬同位素系统研究了弗留利·威尼斯·朱利亚地区平原的潜水层中地下水中六价铬的死灰复燃的起源。该地区在1997年受到工业废水的严重Cr(VI)污染,当时地下水中的Cr(VI)浓度达到4500 g / L。在随后的几年中,污染物自然衰减,在2003年完全消失。2008年观察到水污染物的更新,六价铬达到1560克/升。在2009-2011年期间测量了地下水和沉积物提取物中的Cr-53δ值,其范围分别在千分之-3.21和+0.21之间以及千分之-4.71和+1.26之间。由于缺乏地质成因的铬源,这些数据被解释为随后通过含水层中所含的Cr(III)的Mn-氧化物的Mn氧化的证据,并源于原始工业铬酸盐的还原。 Cr(III)的特征在于Cr-53为负值,从工业废水中Cr(VI)的零附近的Cr-53值开始。氧化释放出可溶性Cr(VI),Cr(VI)被地下水和渗透的土壤运输。复杂的Cr同位素对浓度分布反映了含水层系统中新的Cr(VI)还原和稀释过程。从环境角度来看,数据引起了人们对过去六价铬污染的潜在影响的关注。

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