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基于硅烷的黄铁矿涂层修复酸性矿山排水。

Silane-based coatings on the pyrite for remediation of acid mine drainage.

机构信息

School of Environmental Science and Engineering, Sun Yat-Sen University, Guangzhou 510275, PR China.

出版信息

Water Res. 2013 Sep 1;47(13):4391-402. doi: 10.1016/j.watres.2013.05.006. Epub 2013 May 14.

Abstract

Acid mine drainage (AMD) resulting from the oxidation of pyrite and other metal sulfides has caused significant environmental problems, including acidification of rivers and streams as well as leaching of toxic metals. With the goal of controlling AMD at the source, we evaluated the potential of tetraethylorthosilicate (TEOS) and n-propyltrimethoxysilane (NPS) coatings to suppress pyrite oxidation. The release of total Fe and SO4(-2) from uncoated and coated pyrite in the presence of a chemical oxidizing agent (H2O2) or iron-oxidizing bacteria (Acidithiobacillus ferrooxidans) was measured. Results showed that TEOS- and NPS-based coatings reduced chemical oxidation of pyrite by as much as 59 and 96% (based on Fe release), respectively, while biological oxidation of pyrite was reduced by 69 and 95%, respectively. These results were attributed to the formation of a dense network of Fe-O-Si and Si-O-Si bonds on the pyrite surface that limited permeation of oxygen, water, and bacteria. Compared with results for TEOS-coated pyrite, higher pH and lower concentrations of total Fe and SO4(-2) were observed for oxidation of NPS-coated pyrite, which was attributed to its crack-free morphology and the presence of hydrophobic groups on the NPS-based coating surface. The silane-based NPS coating was shown to be highly effective in suppressing pyrite oxidation, making it a promising alternative for remediation of AMD at its source.

摘要

酸性矿山排水(AMD)是由黄铁矿和其他金属硫化物氧化引起的,已造成严重的环境问题,包括河流和溪流酸化以及有毒金属浸出。为了从源头控制 AMD,我们评估了正硅酸乙酯(TEOS)和正丙基三甲氧基硅烷(NPS)涂层抑制黄铁矿氧化的潜力。在化学氧化剂(H2O2)或铁氧化细菌(氧化亚铁硫杆菌)存在的情况下,测量未涂层和涂层黄铁矿中总 Fe 和 SO4(-2) 的释放。结果表明,TEOS 和 NPS 基涂层分别减少了高达 59%和 96%的化学氧化黄铁矿(基于 Fe 释放),而生物氧化黄铁矿分别减少了 69%和 95%。这些结果归因于黄铁矿表面形成了一层致密的 Fe-O-Si 和 Si-O-Si 键网络,限制了氧气、水和细菌的渗透。与 TEOS 涂层黄铁矿的结果相比,NPS 涂层黄铁矿的氧化过程中观察到更高的 pH 值和更低的总 Fe 和 SO4(-2)浓度,这归因于其无裂纹形态和 NPS 基涂层表面存在疏水性基团。基于硅烷的 NPS 涂层在抑制黄铁矿氧化方面非常有效,是一种很有前途的 AMD 源头修复替代方法。

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