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Advances in the Hydrogeochemistry and Microbiology of Acid Mine Waters

机译:酸性矿山水的水文地球化学与微生物学研究进展

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摘要

The last decade has witnessed a plethora of research related to the hydrogeochemistry and microbiology of acid mine waters and associated tailings and waste-rock waters. Numerous books, reviews, technical papers, and proceedings have been published that examine the complex biogeochemical process of sulfide mineral oxidation, develop and apply geochemical models to site characterization, and characterize the microbial ecology of these environments. This review summarizes many of these recent works, and provides references for those investigating this field. Comparisons of measured versus calculated Eh and measured versus calculated pH for water samples from several field sites demonstrate the reliability of some current geochemical models for aqueous speciation and mass balances. Geochemical models are not, however, used to predict accurately time-dependent processes but to improve our understanding of these systems and to constrain possible processes that contribute to actual or potential water quality issues. Microbiological studies are demonstrating that there is much we have yet to learn about the types of different microorganisms and their function and ecology in mine-waste environments. A broad diversity of green algae, bacteria, archaea, yeasts, and fungi are encountered in acid mine waters, and a better understanding of their ecology and function may potentially enhance remediation possibilities as well as our understanding of the evolution of life.
机译:在过去的十年中,目睹了与酸性矿井水以及相关尾矿和废石水的水文地球化学和微生物学相关的大量研究。已经出版了许多书籍,评论,技术论文和会议记录,这些文件检查了硫化物矿物氧化的复杂生物地球化学过程,开发并应用了地球化学模型进行现场表征,并表征了这些环境的微生物生态。这篇综述总结了许多这些近期的著作,并为那些研究该领域的人提供了参考。对来自几个现场的水样的实测Eh与计算的Eh以及实测pH与计算的pH进行比较,证明了当前一些地球化学模型对水形态和质量平衡的可靠性。但是,地球化学模型并未用于准确预测随时间变化的过程,而是用于增进我们对这些系统的理解,并限制可能导致实际或潜在水质问题的过程。微生物学研究表明,关于矿山废物环境中不同微生物的种类及其功能和生态,我们还有很多要学习的知识。在酸性矿井水中会遇到各种各样的绿藻,细菌,古细菌,酵母和真菌,对它们的生态学和功能的更好了解可能会增强补救的可能性,并加深我们对生命进化的理解。

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