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首页> 外文期刊>Minerals >Potential of Soil, Sludge and Sediment for Mineral Carbonation Process in Selinsing Gold Mine, Malaysia
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Potential of Soil, Sludge and Sediment for Mineral Carbonation Process in Selinsing Gold Mine, Malaysia

机译:马来西亚塞林斯金矿的土壤,污泥和沉积物在矿物碳化过程中的潜力

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摘要

Soil, sludge and sediment that are rich in alkaline earth silicates play significant roles as passive agents for removing carbon dioxide through mineral carbonation process. This study was conducted to characterize the mineralogical component and chemical composition of gold mining wastes and to identify the availability of natural silicate minerals as a feedstock for the mineral carbonation process. Particle-size distribution analysis was performed, and pH of the soil, sludge, and sediment were determined, whereas the mineralogical component and chemical composition of the samples were also analyzed. Results demonstrated that the presence of sepiolite and chlorite-serpentine in the stockpile and mine tailings can sequester carbon dioxide into magnesium carbonates, while the presence of stilpnomelane in the stockpile can be sequestered into iron carbonate. The presence of large amounts of small-size particles (silt fraction) in sludge (78.23%) at the mine tailings was identified to have higher surface area to absorb carbon dioxide. pH conditions of sludge (pH 7.9) and sediment (pH 8.3) from the mine tailings were favorable to enhance carbonate precipitation. Therefore, gold mine wastes have shown the potential for passive sequestration of carbon dioxide, thus, providing more insights into the enhancement of mineral carbonation process and the potential of natural silicate minerals.
机译:富含碱土金属硅酸盐的土壤,淤泥和沉积物作为通过矿物碳酸化过程去除二氧化碳的钝化剂发挥着重要作用。进行这项研究是为了表征金矿废物的矿物学组成和化学组成,并确定天然硅酸盐矿物作为矿物碳化过程的原料的可用性。进行粒度分布分析,确定土壤,污泥和沉积物的pH,同时还分析样品的矿物成分和化学组成。结果表明,在储存库和矿山尾矿中存在海泡石和亚氯酸盐-蛇纹石可以将二氧化碳隔离成碳酸镁,而在储存物中可以将stilpnomelane隔离成碳酸铁。在矿山尾矿中,污泥(78.23%)中存在大量小尺寸颗粒(淤泥级分),具有较高的吸收二氧化碳的表面积。矿山尾矿的污泥(pH 7.9)和沉淀物(pH 8.3)的pH条件有利于增强碳酸盐沉淀。因此,金矿废物显示出了被动隔离二氧化碳的潜力,从而为增强矿物碳酸化过程和天然硅酸盐矿物的潜力提供了更多见识。

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