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首页> 外文期刊>Fresenius' Journal of Analytical Chemistry >Speciation and oxidation kinetics of arsenic in the thermal springs of wiesbaden spa, germany
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Speciation and oxidation kinetics of arsenic in the thermal springs of wiesbaden spa, germany

机译:德国威斯巴登温泉温泉中砷的形态和氧化动力学

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摘要

Since 1886 arsenic has been known to be present as a trace component in the Wiesbaden thermal waters at concentrations of over 100 mug L~(-1). In this study for the first time molecular level speciation of arsenic was measured both in the water (by HG-AAS) and in well-stone scale deposits (by XANES). Most of the arsenic in the anoxic NaCl-type waters is in the reduced arsenite form. Hydrous ferric oxide (HFO) precipitates in the scale deposites scavenge only the minor dissolved arsenate portion which is, however, accumulated up to 3% w/w. Isothermal precipitation experiments at in - situ temperatures showed a difference between the progress of both arsenic and iron oxidation and precipitation. This can be explained in terms of adsorption of the aqueous arsenite and heterogeneous oxidation on the HFO surface, but subsequently rapid release of the arsenate thereby formed back into the aqueous phase at enhanced temperature and increased pH. Such relatively rapid pseudo-homogeneous arsenite oxidation is too slow to efficiently retard the As(III) load already on the wellhead, but fast enough to prevent arsenic seepage into ground water aquifers.
机译:自从1886年以来,就已经知道在威斯巴登温泉水中,微量元素砷的含量超过100杯L〜(-1)。在这项研究中,首次在水中(通过HG-AAS)和井眼结垢沉积物中(通过XANES)测量了砷的分子水平形态。缺氧NaCl型水中的大多数砷都是还原性的亚砷酸盐形式。氧化铁中的含水三氧化二铁(HFO)沉淀物仅清除了少量溶解的砷酸盐部分,但累积的砷含量高达3%w / w。在原位温度下的等温沉淀实验表明,砷和铁的氧化和沉淀过程之间存在差异。这可以用含水砷酸盐的吸附和在HFO表面的异质氧化来解释,但是随后砷酸盐的快速释放会在温度升高和pH升高的情况下重新形成为水相。这种相对较快的准均质亚砷酸盐氧化速度太慢,无法有效地抑制井口已经存在的As(III)负荷,但是又足够快,可以防止砷渗入地下水中。

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