...
首页> 外文期刊>Chemical geology >Mineralogically-induced metal partitioning during the evaporative precipitation of efflorescent sulfate salts from acid mine drainage
【24h】

Mineralogically-induced metal partitioning during the evaporative precipitation of efflorescent sulfate salts from acid mine drainage

机译:从酸性矿泉排水中脱氯硫酸盐盐的蒸发沉淀过程中矿物学诱导的金属分配

获取原文
获取原文并翻译 | 示例

摘要

Efflorescent sulfate salts constitute a transient storage of acidity and metals during the dry season in mining areas affected by acid mine drainage, especially under semiarid climates. The main goal of this work was to study the metal partitioning among the dissolved and solid phases through the evaporative precipitation sequence of extremely metal-rich mine waters. The evaporative sequence was induced in the laboratory under controlled conditions for 24 days. The loss of water caused a progressive decrease of pH values (from 2.71 to 1.33) and increase of metal concentrations (e.g., from 1826 to 17800 mg/L of Al, 836 mg/L to 9783 mg/L of Fe and 301 to 2879 mg/L of Zn), which caused the precipitation of efflorescent sulfate salts. The precipitated salts were mainly composed of a mixture of minerals of Ca (gypsum, CaSO4 center dot 2H(2)O), Al (alunogen, Al-2(SO4)(3)center dot 17H(2)O), Fe (copiapite, Fe2+Fe3+(SO4)(6)(OH)(2)center dot 20H(2)O and melanterite Fe2+SO4 center dot 7H(2)O) and Mg (hexahydrite, MgSO4 center dot 6H(2)O), although the proportion of each mineral phase varied throughout the experiment. A preferential precipitation of Al and Mg sulfate salts, together with melanterite, was observed until the second week of the experiment, with evaporation rates lower than 70%. The precipitation of gypsum predominated with higher evaporation rates, reaching values higher than 80% of the mineral assemblage. The evaporative precipitation sequence was modeled using PHREEQC, obtaining good agreement with experimental data for gypsum, but failing in turn to accurately reproduce the evaporative sequence of other minerals such as hexahydrite, alunogen and melanterite. A metal partitioning pattern was observed during the evaporative precipitation sequence. Fe-sulfate minerals (e.g., copiapite and melanterite) present a higher affinity for Cu, Y and Th (and other trace metals such as Mn, Cd or Sc) while Al and Mg sulfate salts would retain Zn, Co, Ni and to a lesser extent Cr. In the case of gypsum, found prominently in the mineral assemblage during the experiment, it seems to have affinity for REE. This metal partitioning pattern is not observed in field data reported in literature. Such discrepancies, as well as those observed between modeled and experimental results, must be investigated in further studies.
机译:在受酸性矿区排水影响的矿区的干燥季节,脱氯磺酸硫酸盐盐构成酸度和金属的暂态储存,特别是在半干旱下。这项工作的主要目标是通过极其金属富含矿水的蒸发沉淀序列来研究溶解和固相之间的金属分配。在实验室在受控条件下诱导蒸发序列24天。水的丧失导致pH值(从2.71至1.33)的逐渐降低,并增加金属浓度(例如,从1826-17800 mg / L Al,836mg / L至9783 mg / L的Fe和301至2879 Mg / L的Zn),导致脱氯硫酸盐盐的沉淀。沉淀的盐主要由Ca的矿物质混合物(石膏,CasO4中心点2h(2)),Al(Alunogen,Al-2(SO 4)(3)中心点17h(2)O),Fe( CopiaPite,Fe2 + Fe3 +(SO4)(6)(OH)(2)中心点20H(2)o和甜瓜Fe2 + SO4中心点7h(2)O)和Mg(六水石,MgSO4中心点6H(2)O. ),但是在整个实验中各种矿物相的比例变化。观察到Al和Mg硫酸盐盐的优先沉淀,并在实验的第二周之前观察到母体盐,蒸发速率低于70%。石膏沉淀以较高的蒸发速率占据,达到高于矿物组合的80%的值。使用PhReeqc建模蒸发沉淀序列,与石膏的实验数据获得良好的一致性,但反过来不能准确地再现其他矿物质的蒸发序列,如六水石,溶致母体等含氯化物等其他矿物质的蒸发序列。在蒸发沉淀序列期间观察到金属分配图案。 Fe-硫酸盐矿物(例如,Copiapite和Melanteritite)对Cu,Y和Th(以及其他痕量金属如Mn,Cd或Sc)呈现更高的亲和力,而Al和Mg硫酸盐盐将保持Zn,Co,Ni和A较小程度的Cr。在石膏的情况下,在实验过程中占据矿物组合中的突出发现,它似乎对REE具有亲和力。在文献中报告的现场数据中未观察到这种金属分配图案。必须在进一步的研究中调查这种差异,以及在建模和实验结果之间观察到的差异。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号