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Fixed bed column studies for decontamination of acidic mineral effluent using porous fly ash-basic oxygen furnace slag based geopolymers

机译:固定床柱研究采用多孔粉煤灰基氧炉渣酸性矿泉水去污的研究

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This paper presents column studies conducted to evaluate and assess the potential use of Fly Ash (FA). Basic Oxygen Furnace Slag (BOFS) based geopolymers to remove metals, sulphates and acidity from Acid Mine Drainage (AMD). Geopolymers were prepared using NaOH, Fly ash (FA) was used as source of silica additive to supplement BOFS. The blending ratio was fixed to 10% FA and the S/L ratio was kept 20%. The H2O2 was used as a blowing agent to increase the porosity of the FA/BOFS based geopolymer at four different percentages (1.5%, 1%, 0.5% and 0%). The four different geopolymers with distinct porosities were employed in different columns respectively. It was found that over 99% removal efficiency of metals and sulphates was achieved in the first 60 days of column studies. The dissolution of Ca(OH)(2) was the main constituent responsible for the removal of acidity in AMD. Characterization revealed that precipitation was the main mechanism for removal of metals. Gypsum was the main byproduct formed with precipitated metals presented by goethite, spertite and manganite.
机译:本文展示了对粉煤灰(FA)进行评估和评估潜在使用的柱研究。基于基于酸矿排水(AMD)的基于基于氧气炉渣(BOF)的地质聚合物去除金属,硫酸盐和酸度。使用NaOH制备地质聚合物,粉煤灰(Fa)用作二氧化硅添加剂的补充BOF。将混合比固定为10%Fa,S / L比保持20%。将H 2 O 2用作发泡剂,以在四种不同百分比(1.5%,1%,0.5%和0%)中增加基于Fa / BOFS的地质聚合物的孔隙率。具有不同孔隙孔的四种不同的地质聚合物分别用于不同的柱。发现在柱研究的前60天内实现了超过99%的金属和硫酸盐的效率。 Ca(OH)(2)的溶解是负责在AMD中除去酸度的主要成分。表征显示,沉淀是去除金属的主要机制。石膏是由甲石,埃弗莱斯和锰料呈现的沉淀金属形成的主要副产品。

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