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综述:酸性矿山排水的形成、预防和治理。

A review: The formation, prevention, and remediation of acid mine drainage.

机构信息

School of Chemical & Environmental Engineering, China University of Mining & Technology (Beijing), Beijing, 100083, People's Republic of China.

General Prospecting Institute of China National Administration of Coal Geology, Beijing, 100039, People's Republic of China.

出版信息

Environ Sci Pollut Res Int. 2023 Nov;30(52):111871-111890. doi: 10.1007/s11356-023-30220-5. Epub 2023 Oct 17.

Abstract

In abandoned open-pit coal mines, surface water and groundwater form acidic waters with high concentrations of metal ions due to chemical interactions with ores such as pyrite, and the formation of acid mine drainage (AMD) is one of the major sources of pollution of world concern. For this reason, this paper reviews the formation mechanisms and influencing factors of AMD. It also describes the prediction, prevention, and remediation techniques for AMD, identifying key research gaps. It also discusses the current challenges and shortcomings faced globally in the management of AMD. The formation of AMD is mainly caused by the oxidation of pyrite in mines, but it is mainly influenced by history, climate, topography, and hydrogeology, making the formation mechanism of AMD extremely complex. Currently, the remediation technologies for AMD mainly include active treatment and passive treatment, which can effectively neutralize acidic wastewater. However, the prediction technology for AMD is blank, and the source treatment technology such as passivation and microencapsulation only stays in the experimental stage. This leads to the high cost of treatment technologies at this stage and the inability to identify potential risks in mines. Overall, this review provides remediation tools for AMD from predicting root causes to treatment. Geophysical technology is an effective method for predicting the motion path and pollution surface of AMD in the future, and resource recovery for AMD is a key point that must be paid attention to in the future. Finally, integrated treatment technologies that deserve further exploration need to be emphasized.

摘要

在废弃的露天煤矿中,由于与黄铁矿等矿石的化学反应,地表水和地下水形成了高浓度金属离子的酸性水,酸性矿山排水(AMD)的形成是世界关注的主要污染来源之一。出于这个原因,本文综述了 AMD 的形成机制和影响因素。还描述了 AMD 的预测、预防和修复技术,确定了关键的研究空白。还讨论了全球在 AMD 管理方面目前面临的挑战和缺点。AMD 的形成主要是由矿山中的黄铁矿氧化引起的,但主要受历史、气候、地形和水文地质的影响,使得 AMD 的形成机制极其复杂。目前,AMD 的修复技术主要包括主动处理和被动处理,可以有效中和酸性废水。然而,AMD 的预测技术是空白的,钝化和微封装等源头处理技术仅停留在实验阶段。这导致现阶段处理技术成本高,无法识别矿山中的潜在风险。总体而言,本综述从预测根本原因到处理为 AMD 提供了修复工具。地球物理技术是预测未来 AMD 运动路径和污染表面的有效方法,AMD 的资源回收是未来需要关注的重点。最后,需要强调值得进一步探索的综合处理技术。

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