Effect of Particle Size on Leachate Formation Characteristics from Gold Mine Waste Rocks: At Source Acid Mine Drainage Management in Tanzania

A. Marwa
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Abstract

Waste rocks from gold mining operations represents a significant environmental burden and impairs sustainable environmental management in developing countries. This study focused on understanding the leachate properties of different particle sizes (>10mm, 20mm, 30mm and 50mm) from the waste rock dump (WRD) - GPAF in the 30 liters containers to represent waste rocks by using quick static testing to determine a more rational design basis for material storage and management. This study found that small particle sizes of waste rocks with <10 mm showed a strong leaching with a low pH of 3.5, while large particle sizes of 50 mm showed a high pH of 6.5. Metal leaching of small particle sizes had a higher concentration of Manganese, Zinc and Iron than large particle size. Similarly, sulphate concentration from leachate of small particle size of waste rocks had higher levels than large particle size. In addition, this study also demonstrated that the majority of dissolved metals (Mn, Zn and Fe) leached higher in the low pH (3.5) leachate. This study recommended that great emphasis be taken on the separation of small particles from large particle sizes of mine waste rocks during and after mining operations to reduce the risk of metal leaching and the possibility of acid mine drainage (AMD) formation and pollute surface and groundwater.
粒度对金矿废石浸出液形成特征的影响:坦桑尼亚酸性矿山排水的源头管理
金矿开采过程中产生的废石对环境造成了巨大的负担,并影响了发展中国家的可持续环境管理。本研究的重点是通过快速静态测试,了解废石堆放场(WRD)--GPAF 的 30 升容器中代表废石的不同粒径(>10 毫米、20 毫米、30 毫米和 50 毫米)的浸出液特性,从而确定更合理的材料储存和管理设计基础。这项研究发现,粒径小于 10 毫米的废石具有较强的浸出性,pH 值低至 3.5,而粒径为 50 毫米的大废石的 pH 值则高达 6.5。小粒径金属沥滤的锰、锌和铁浓度高于大粒径。同样,小粒径废石沥滤液中的硫酸盐浓度也高于大粒径废石。此外,这项研究还表明,大部分溶解金属(锰、锌和铁)在低 pH 值(3.5)的沥滤液中沥滤率较高。这项研究建议,在采矿作业期间和之后,应高度重视将矿山废石中的小颗粒与大颗粒分离,以降低金属沥滤的风险和酸性矿井排水(AMD)形成的可能性,并减少对地表水和地下水的污染。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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