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In Situ Measurements of Labile Al and Mn in Acid Mine Drainage Using Diffusive Gradients in Thin Films

机译:薄膜中扩散梯度的酸性矿山排水中不稳定铝和锰的原位测量

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The technique of diffusive gradients in thin films (DGT)can be used for in situ measurements of labile metal species in water, but the application for this method on acid mine drainage (AMD) is complicated due to reduced sampler adsorption of metals at low pH. This study evaluates the use of DGT on labile Al and Mn in AMD (pH 3.1-4.2). DGT measurements were performed both in standard solutions in the laboratory and in situ in the field. Laboratory results show that DGT can be used in water with pH as low as 3.0 for Al and 4.0 for Mn without correcting for reduced adsorption. Below pH 4.0, the adsorption of Mn showed a linearly decrease with pH to approx55percent at pH 3.0. Taking this correction into account revealed that 84-100percent of the total dissolved Al and Mn measured in the field was DGT-labile. Measurements using DGT agreed well with predictions using the speciation program WHAM VI. This study shows that the use of DGT can be extended below the previously reported pH working range for Al, and for Mn using a simple linear correction with respect to pH, and demonstrates that the technique can be applied for monitoring time-integrated labile metal concentrations at AMD sites.
机译:薄膜中的扩散梯度技术(DGT)可用于水中不稳定金属物种的原位测量,但由于低pH下金属对采样器的吸附减少,该方法在酸性矿山排水(AMD)中的应用非常复杂。这项研究评估了DGT在AMD(pH 3.1-4.2)中对不稳定的Al和Mn的使用。 DGT测量既可以在实验室的标准溶液中进行,也可以在现场进行。实验室结果表明,DGT可以在pH值低至Al(3.0)和Mn(4.0)的水中使用,而无需校正降低的吸附量。在pH 4.0以下,Mn的吸附量随pH呈线性下降,在pH 3.0时约为55%。考虑到这种校正,表明在现场测得的总溶解Al和Mn中84-100%对DGT不稳定。使用DGT进行的测量与使用物种形成程序WHAM VI的预测非常吻合。这项研究表明DGT的使用可以扩展到先前报告的Al和Mn的pH工作范围以下,并且可以通过简单的pH线性校正来实现Mn的应用,并证明该技术可以用于监测时间积分的不稳定金属浓度在AMD网站上。

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