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Zinc and nickel removal in simulated limestone treatment of mining influenced water

机译:模拟石灰石处理矿山受影响水中的锌和镍去除

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摘要

Mining influenced water (MIW) is often characterized by low pH (acid mine drainage) and high dissolved metal concentrations. Treatment of MIW is often required to mitigate these two characteristics. One option, which has traditionally been used only for pH neutralization, is limestone based treatment systems. However, there is field evidence that limestone systems are also effective at removing metals such as Zn and Ni. These field systems are often too complex to examine specific removal hypotheses, while certain modes of laboratory examination are too simplistic to be applied to field settings. Instead, the batch reactors used here were intentionally more complex to allow for the examination of how certain variables (pH, alkalinity, and primary metal concentrations) interact to affect Zn and Ni removal. The data herein suggest that one possible removal process for Zn and Ni is through surface interactions on the precipitated primary metals Fe and Al. The specific processes are complex and conditional, and were found to depend on pH, alkalinity, and total amount of primary metal present. Indeed the complex interplay between these variables led to an observed local maximum in Zn removal that would not be predicted from traditional surface complexation theory or observed from simpler experimental systems.
机译:受采矿影响的水(MIW)通常以低pH(酸性矿山排水)和高溶解金属浓度为特征。通常需要对MIW进行处理以减轻这两个特征。传统上仅用于pH中和的一种选择是基于石灰石的处理系统。但是,有现场证据表明,石灰石系统还可以有效去除锌和镍等金属。这些现场系统通常过于复杂,无法检查特定的去除假设,而某些实验室检查模式过于简单,无法应用于现场设置。取而代之的是,这里使用的间歇式反应器故意更复杂,以允许检查某些变量(pH,碱度和主要金属浓度)如何相互作用以影响锌和镍的去除。本文的数据表明,Zn和Ni的一种可能的去除方法是通过沉淀的初级金属Fe和Al上的表面相互作用。具体过程是复杂且有条件的,并且发现其取决于pH值,碱度和存在的主要金属总量。确实,这些变量之间复杂的相互作用导致观察到的锌去除局部最大值,这不能从传统的表面络合理论预测到,也不能从更简单的实验系统中观察到。

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