利用生物启发的 As-sequestering 多孔膜净化砷水

Francesco Galiano, Raffaella Mancuso, Lorenzo Guazzelli, Christian S. Pomelli, Jochen Bundschuh, Jörg Rinklebe, Shan-Li Wang, Carmine Apollaro, Fabio Palumbo, Cinzia Chiappe, Alberto Figoli, Bartolo Gabriele
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引用次数: 0

摘要

砷水污染是全球范围内的一个主要问题,尤其是在以地下水为主要饮用水和灌溉水来源的地区。因此,迫切需要以有效和环保的方式解决这一问题。迄今为止,已有几种传统和新兴的除砷技术用于去除水中的砷,包括混凝、絮凝、吸附和膜分离方法。在此,我们展示了一种新型生物启发多孔膜的成功开发,该膜可选择性地去除砷污染地下水中的砷(As(V)以及毒性更大、更难去除的 As(III))。在模型溶液和实际地下水中都成功评估了膜的砷去除效率。非常重要的是,由于膜对砷的高选择性,实际地下水没有发生严重的脱矿现象,因此可以直接供人类饮用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Arsenic water decontamination by a bioinspired As-sequestering porous membrane

Arsenic water decontamination by a bioinspired As-sequestering porous membrane

Arsenic water decontamination by a bioinspired As-sequestering porous membrane
Arsenic water contamination is a major issue worldwide, particularly in regions where groundwater is the primary source of drinking and irrigation water. Therefore, there is an urgent need of addressing this problem in an effective and environmentally friendly manner. So far, several conventional and emerging removal technologies have been implemented for arsenic removal from water, including coagulation, flocculation, adsorption and membrane-based separation approaches. Here we show the successful development of a new bio-inspired porous membrane that has been made selective for the removal of arsenic (As(V) as well as the more toxic and difficult to remove As(III)) present in arsenic-contaminated groundwaters. The arsenic removal efficiency of the membrane has been successfully assessed both in model solutions and in a real groundwater. Very importantly, owing to the high selectivity of the membrane towards arsenic, no substantial demineralization occurred with the real groundwater, which therefore became directly suitable for human consumption. Arsenic water contamination may affect spring water as well as water reservoirs around the world and requires the development of efficient and sustainable remediation technologies. A bioinspired porous membrane allows obtaining filtrated water with an As concentration below the recommendation from the World Health Organization.
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