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Modification, adsorption, and geochemistry processes on altered minerals and amorphous phases on the nanometer scale: examples from copper mining refuse, Touro, Spain

机译:纳米尺度上改变的矿物和非晶态相的改性,吸附和地球化学过程:西班牙图罗的铜矿垃圾举例

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The sulfide oxidation and precipitation of Al-Fe-secondary minerals associated with abandoned acid mine drainage (AMD) from the abandoned copper mine waste pile at Touro, Spain, has been studied by sequential extraction (SE) combined with several techniques with the intent of understanding the role of these processes play in the natural attenuation of hazardous element contaminants in the AMD. In addition, the fragile nature of nanominerals and ultrafine particle (UFP) assemblages from contaminated sediment systems from the abandoned copper mine required novel techniques and experimental approaches. The investigation of the geochemistry of complex nanominerals and UFP assemblages was a prerequisite to accurately assess the environmental and human health risks of contaminants and cost-effective chemical and biogeological remediation strategies. Particular emphasis was placed on the study and characterization of the complex mixed nanominerals and UFP containing potentially toxic elements. Nanometer-sized phases in sediments were characterized using energy-dispersive X-ray spectrometer (EDS), field-emission scanning electron microscope (FE-SEM), and high-resolution transmission electron microscopy (HR-TEM) images. The identification of the geochemical and mineralogical composition of AMD in Touro, as well as the different formation mechanisms proposed, complement the existing literature on secondary mineral assemblages and provide new emphasis to increase the understanding of extreme environments. The results also demonstrated that variations in the geochemical fractionation of hazardous elements in AMD were more influenced by the secondary mineral proportion and by AMD pH.
机译:通过序贯萃取(SE)结合多种技术研究了与西班牙图罗市废弃铜矿废料堆中废弃酸性矿山排水(AMD)相关的Al-Fe次生矿物的硫化物氧化和沉淀。了解这些过程在AMD中有害元素污染物的自然衰减中所起的作用。此外,来自废弃铜矿的受污染沉积物系统的纳米矿物和超细颗粒(UFP)组件的易碎性质需要新颖的技术和实验方法。对复杂的纳米矿物和UFP组合物的地球化学进行研究是准确评估污染物对环境和人类健康的风险以及具有成本效益的化学和生物地质修复策略的前提。特别强调研究和表征复杂的混合纳米矿物和含有潜在毒性元素的UFP。使用能量色散X射线光谱仪(EDS),场发射扫描电子显微镜(FE-SEM)和高分辨率透射电子显微镜(HR-TEM)图像对沉积物中的纳米级相进行了表征。在图罗地区对AMD的地球化学和矿物学组成的识别以及提议的不同形成机制的补充,补充了有关次生矿物组合的现有文献,并提供了新的重点以增进对极端环境的理解。结果还表明,AMD中有害元素的地球化学分馏变化受次生矿物比例和AMD pH的影响更大。

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