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首页> 外文期刊>Annals of the New York Academy of Sciences >Effect Of Ferrous Iron On Arsenate Sorption To Amorphous Ferric Hydroxide
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Effect Of Ferrous Iron On Arsenate Sorption To Amorphous Ferric Hydroxide

机译:亚铁对砷酸盐对非晶态氢氧化铁的吸附作用

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摘要

Amorphous ferric hydroxide (AFH) sorbents are commonly used for removal of arsenate from water. When disposed in microbially active, reducing environments, such as landfills, Fe(Ⅱ) will be generated by reductive dissolution of the AFH surface and arsenate will be desorbed. However, the observed ratio of arsenate (and, in fact, total arsenic) to total iron in the leachate is not consistent with the original ratio of arsenate to iron on the AFH. Work to determine if ferrous iron re-adsorption to the AFH can partially explain this inconsistency is described. As pH increases above 7, Fe(Ⅱ) increasingly sorbs onto the AFH surface. This sorption is largely independent of ionic strength and somewhat irreversible at high pH. In contrast, arsenate partitioning to AFH decreases with increasing pH. However, over the pH range from 5 to 9, the presence of Fe(Ⅱ) sorbed to the AFH surface increases the capacity for arsenate sorption. In addition, when no Fe(Ⅱ) is present, arsenate binding is largely to surface sites inaccessible to Fe(Ⅱ) binding. The results are also consistent with Fe(Ⅱ) sorption to AFH sites, otherwise unfavorable to arsenate binding and transformation of those sites into arsenate-amenable binding sites.
机译:非晶态氢氧化铁(AFH)吸附剂通常用于从水中去除砷酸盐。当将其置于具有微生物活性的还原性环境(例如垃圾填埋场)中时,AFH表面的还原性溶解会生成Fe(Ⅱ),并且砷酸盐会解吸。但是,在沥出液中观察到的砷酸盐(实际上是总砷)与总铁的比率与AFH上的砷与铁的原始比率不一致。描述确定亚铁再吸附到AFH上能否部分解释这种不一致的工作。随着pH值增加到7以上,Fe(Ⅱ)越来越多地吸附到AFH表面。这种吸附在很大程度上与离子强度无关,并且在高pH值下有些不可逆。相反,砷酸盐向AFH的分配随着pH的增加而降低。然而,在5至9的pH范围内,吸附到AFH表面的Fe(Ⅱ)的存在增加了砷的吸附能力。另外,当不存在Fe(Ⅱ)时,砷酸盐的结合在很大程度上与Fe(Ⅱ)结合不可及的表面位点有关。结果也与Fe(Ⅱ)对AFH位点的吸附一致,否则不利于砷的结合并将那些位点转变为适合砷的结合位点。

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