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首页> 外文期刊>The Science of the Total Environment >Isotopic evidence for mercury photoreduction and retention on particles in surface waters of Central California, USA
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Isotopic evidence for mercury photoreduction and retention on particles in surface waters of Central California, USA

机译:美国加利福尼亚中央加利福尼亚州表面水域粒子的同位素证据

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Cache Creek (Coast Range, California) and the Yuba River (Sierra Nevada Foothills, California) are two river systems affected by extensive mercury (Hg) contamination due to legacy sources of Hg related to mining. Stable Hg isotope techniques have proven useful for elucidating the complex cycling of Hg within aquatic ecosystems, and we applied these techniques to improve understanding of Hg and methylmercury (MeHg) transformations in these watersheds. Total mercury (THg) concentrations and Hg stable isotope ratios were measured in filtered surface waters and suspended particulate matter collected from 14 sites within the Cache Cr. and Yuba R. watersheds. Filtered surface waters from both watersheds exhibited values of Delta Hg-199 (0.37 parts per thousand to 0.71 parts per thousand), consistently elevated above those observed in sediments (Delta Hg-199 average = 0.07%). Associated suspended particulates from these surface water samples displayed a much greater range of values for Delta Hg-199 (-0.61 parts per thousand to 0.70 parts per thousand), although suspended particulates from the Yuba R. exhibited mostly negative Delta Hg-199 values (-0.61 parts per thousand to 0.10 parts per thousand). The relationship between Delta Hg-199 and Delta Hg-201 in the filtered surface waters and associated suspended particulates was calculated using a bivariate York regression, yielding a slope of 1.57 +/- 0.49 (+/- 2SE) for the Yuba R. and 1.40 +/- 0.27 (+/- 2SE) for Cache Cr., both within error of the previously reported experimentally-derived slopes for MeHg- and inorganic Hg(II)-photoreduction. This provides isotopic evidence that Hg photoreduction is occurring within these surface waters to a significant degree, and suspended particulate phases are retaining the reduced product of Hg photoreduction, particularly within the Yuba R. The isotopic compositions of filtered surface waters are consistent with the isotopic signatures recorded in biota at low trophic positions within these watersheds, suggesting that the reservoir of Hg incorporated within the biota of these systems is similar to the filter-passing Hg fraction in surface waters. (C) 2019 Elsevier B.V. All rights reserved.
机译:Cache Creek(海岸范围)和加州河(Calra Nevada Foothills,加利福尼亚山脉)是两个河流系统,受到与采矿相关的遗产的遗产来源的广泛汞(HG)污染。已证明稳定的Hg同位素技术可用于阐明水生态系统内Hg的复杂循环,并且我们应用这些技术以改善这些流域的HG和甲基汞(Mehg)转化的理解。在过滤的表面水中测量总汞(THG)浓度和Hg稳定同位素比,并从缓存Cr内的14位点收集悬浮的颗粒物质。和yuba R.流域。来自流域的过滤的表面水展示了Delta Hg-199的值(0.37份每千至0.71份/份),始终高于沉积物中观察到的那些(Delta Hg-199平均= 0.07%)。来自这些表面水样品的相关悬浮颗粒为Delta HG-199(千分之一至0.70份每千份)显示了更大的值,尽管来自yuba R的悬浮的颗粒。主要达到阴性Delta Hg-199值( -0.61千分之一至0.10‰)。使用一体的约克回归计算ΔHg-199和δHg-201之间的关系,在过滤表面水中和相关悬浮颗粒中的关系,为yuba r的斜率为1.57 +/- 0.49(+/- 2se)。 1.40 +/- 0.27(+/- 2se)用于缓存Cr。,在先前报道的MeHG-和无机HG(II)的试验斜坡的错误内。这提供了同位素证据,即Hg光电在这些表面水中发生至显着程度,悬浮的颗粒相保持Hg光电的降低的产物,特别是在yuba R内。过滤表面水的同位素组合物与同位素签名一致在这些流域的低营养位置记录在Biota中,表明在这些系统的Biota内掺入的Hg储存器类似于表面水中的过滤器通过Hg级分。 (c)2019 Elsevier B.v.保留所有权利。

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