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Al nanoclusters in coagulants and granulates: application in arsenic removal from water

机译:混凝剂和颗粒中的铝纳米团簇:在去除水中砷中的应用

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The contamination of drinking and irrigation water by arsenic is a severe health risk to millions of people, particularly in developing countries. Arsenic treatment methods therefore need to advance to more durable and cost-effective solutions. In recent years, the unique properties of nanomate-rials have received much attention in water treatment research, and their properties (e.g., high number of reactive surface binding sites) may make them suitable for arsenic removal. The aluminum nanoclusters Al_(13) (AlO4Al_(12)(OH)_(24)H2O_(12)~(7+)) and Al_(30) (Al2O8Al_(28)(OH)_(56)(H2O)_(26)~(18+)) have high specific surface charge, deprotonate over a wide pH range and exhibit a high reactivity due to a great number of OH~- and H2O groups. This contribution evaluates these chemical properties of aluminum nanoclusters and their efficiency for water treatment, particularly for arsenic removal. It assesses the advantages and constraints when applied in an industrially produced aluminum coagulant or in Al granulate during water treatment.
机译:砷对饮用水和灌溉水的污染对数以百万计的人,特别是在发展中国家,是严重的健康风险。因此,砷处理方法需要发展到更耐用和更具成本效益的解决方案。近年来,纳米材料的独特性质在水处理研究中受到了广泛的关注,并且它们的性质(例如,大量的反应性表面结合位点)可能使其适于除砷。铝纳米簇Al_(13)(AlO4Al_(12)(OH)_(24)H2O_(12)〜(7+))和Al_(30)(Al2O8Al_(28)(OH)_(56)(H2O)_ (26)〜(18+))具有较高的比表面电荷,可在较宽的pH范围内去质子化,并由于存在大量的OH-和H2O基团而具有较高的反应活性。这一贡献评估了铝纳米团簇的化学性质及其在水处理,特别是除砷方面的效率。它评估了在水处理过程中应用于工业生产的铝凝结剂或铝颗粒中时的优势和局限性。

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