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Iron oxide-modified nanoporous geopolymers for arsenic removal from ground water

机译:氧化铁改性的纳米多孔地质聚合物,用于去除地下水中的砷

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Abstract Composite materials of hierarchically porous geopolymer and amorphous hydrous ferric oxide were produced and characterized as a new potentially cost-effective arsenic adsorbent. The arsenic removal capabilities of the iron (hydr)oxide (HFO) media were carried out using batch reactor experiments and laboratory scale continuous flow experiments. The Rapid Small-Scale Column Tests (RSSCT) were employed to mimic a scaled up packed bed reactor and the toxicity characteristic leaching procedure (TCLP) test of arsenic adsorbed solid material was carried out to investigate the mechanical robustness of the adsorbent. The best performing media which contained ~20 wt% Fe could remove over 95?μg of arsenic per gram of dry media from arsenic only water matric. The role of the high porosity in arsenic adsorption characteristics was further quantified in conjunction with accessibility of the adsorption sites. The new hierarchically porous geopolymer-based composites were shown to be a good candidate for cost-effective removal of arsenic from contaminated water under realistic conditions owing to their favorable adsorption capacity and very low leachability.
机译:摘要制备了分层多孔地质聚合物和无定形含水三氧化二铁的复合材料,并将其表征为一种潜在的具有成本效益的新型砷吸附剂。使用间歇反应器实验和实验室规模的连续流实验进行了氧化铁(HFO)介质的除砷能力。采用快速小规模柱试验(RSSCT)来模拟放大的填充床反应器,并进行了砷吸附固体材料的毒性特征浸出程序(TCLP)试验,以研究吸附剂的机械强度。含铁约20%(重量)的性能最好的培养基可以从仅含砷的水基质中除去每克干培养基中95?μg以上的砷。结合吸附位的可及性,进一步定量了高孔隙度在砷吸附特性中的作用。由于具有良好的吸附能力和极低的浸出性,新的分层多孔的基于地质聚合物的复合材料被证明是在现实条件下经济有效地从污染水中去除砷的良好选择。

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