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Diel mercury-concentration variations in streams affected by mining and geothermal discharge

机译:受采矿和地热排放影响的溪流中Diel汞浓度变化

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Diel variations of concentrations of unfiltered and filtered total Hg and filtered methyl Hg were documented during 24-h sampling episodes in water from Silver Creek, which drains a historical gold-mining district near Helena, Montana, and the Madison River, which drains the geothermal system of Yellowstone National Park. The concentrations of filtered methyl Hg had relatively large diel variations (increases of 68 and 93% from morning minima) in both streams. Unfiltered and filtered (0.1 -μm filtration) total Hg in Silver Creek had diel concentration increases of 24% and 7%, respectively. In the Madison River, concentrations of unfiltered and filtered total Hg did not change during the sampling period. The concentration variation of unfiltered total Hg in Silver Creek followed the diel variation in suspended-particle concentration. The concentration variation of filtered total and methyl Hg followed the solar photocycle, with highest concentrations during the early afternoon and evening and lowest concentrations during the morning. None of the diel Hg variations correlated with diel variation in streamflow or major ion concentrations. The diel variation in filtered total Hg could have been produced by adsorption-desorption of Hg~(2+) or by reduction of Hg(Ⅱ) to Hg~0 and subsequent evasion of Hg~0. The diel variation in filtered methyl Hg could have been produced by sunlight-and temperature-dependent methylation. This study is the first to examine diel Hg cycling in streams, and its results reinforce previous conclusions that diel trace-element cycling in streams is widespread but often not recognized and that parts of the biogeochemical Hg cycle respond quickly to the daily photocycle.
机译:在从锡尔克里克(Silver Creek)的水中进行24小时采样时,记录了未经过滤和过滤的总Hg和过滤后的甲基汞浓度的Diel变化。黄石国家公园系统。两种水流中过滤出的甲基汞浓度都有相对较大的迪尔变化(较早日最低值增加68%和93%)。 Silver Creek中未经过滤和过滤(0.1μm过滤)的总Hg的diel浓度分别增加24%和7%。在麦迪逊河,未过滤的和过滤的总汞浓度在采样期间没有变化。 Silver Creek中未过滤的总Hg的浓度变化随悬浮颗粒浓度的diel变化而变化。过滤后的总汞和甲基汞的浓度变化随太阳光周期变化,下午下午和傍晚浓度最高,早晨最低。 Diel Hg变化均与流量或主要离子浓度的diel变化无关。 Hg〜(2+)的吸附-解吸或Hg(Ⅱ)还原为Hg〜0并随后逸出Hg〜0可能导致过滤后总Hg的diel变化。滤过的甲基汞中diel的变化可能是由阳光和温度依赖性甲基化产生的。这项研究是第一个研究溪流中Diel Hg循环的研究,其结果进一步证实了先前的结论,即溪流中Diel痕量元素循环很普遍,但通常未被认识,并且生物地球化学Hg循环的某些部分对日常光周期反应迅速。

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