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Long-term influence of aeration on arsenic trapping in a ZVI/sand bed reactor

机译:ZVI /砂床反应器中砷诱捕的长期影响

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摘要

Arsenic toxicity and occurrence in the environment necessitate the development of easy-to-handle and cheap water treatment processes. Zero Valent Iron (ZVI) supports meet these requirements. However many ZVI by-products might be generated in the unit reactor process, mainly influenced by physicochemical conditions. This work deals with the influence of aeration onto arsenic trapping in ZVI/sand columns. The monitoring of a pilot unit that consisted of four reactors (two aerated and two non-aerated), at different durations (three days, three weeks and three months), enables the characterization of arsenic sorption capacity. In an aerated system, the highest arsenic removal levels were observed at the beginning of the experiment, and the performances greatly decreased with time. In the non-aerated systems, the highest arsenic trapping capacities were obtained (220 mgAs per gFe in the three months of running the system) but the arsenic removal percentage remained under 60%. Support analyses after dismantling were performed to characterize the arsenic sorption and the ZVI by-products generated. They confirmed the influence of aeration on the arsenic distribution along the reactor: a homogeneous repartition in non aerated conditions whereas it was highly heterogeneous under aerated conditions, with far higher concentrations at the inlet. This long-term study highlights that aeration modifies the oxidation of ZVI, resulting in by-products with high arsenic sorption capacities but for a limited duration whereas the absence of aeration limits the oxidation of ZVI into sorbant by-products but it significantly increases the duration of arsenic trapping and consequently the lifetime of the bed reactor.
机译:砷的毒性和环境发生在环境中需要开发易于处理和廉价的水处理过程。零价铁(ZVI)支持满足这些要求。然而,许多ZVI副产物可能在单位反应器过程中产生,主要受物理化学条件的影响。这项工作涉及曝气对ZVI /砂柱捕获的影响。监测由四个反应器(两个充气和两个非充气)组成的试验单元,在不同的持续时间(三天,三周和三个月),能够表征砷吸附能力。在充气系统中,在实验开始时观察到最高的砷去除水平,随着时间的推移,性能大大降低。在非充气系统中,获得了最高的砷捕获能力(在运行系统的三个月内每GFE 220mgas),但砷去除率仍为60%。进行拆解后的支持分析以表征砷吸附和产生的ZVI副产物。他们证实了通气对沿反应器的砷分布的影响:在非曝气条件下的均匀重置,而在曝气条件下它具有高度异质,在入口处具有远高浓度。这种长期的研究亮起曝气改变ZVI的氧化,导致具有高砷吸附能力的副产物,但持续时间有限,而没有通气将ZVI氧化限制为吸附剂副产物,但它显着增加了持续时间砷的诱捕,因此床反应器的寿命。

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  • 来源
    《RSC Advances》 |2016年第59期|共7页
  • 作者单位

    Univ Limoges GRESE EA 4330 123 Ave Albert Thomas F-87060 Limoges France;

    Univ Limoges GRESE EA 4330 123 Ave Albert Thomas F-87060 Limoges France;

    Univ Limoges GRESE EA 4330 123 Ave Albert Thomas F-87060 Limoges France;

    Univ Limoges GRESE EA 4330 123 Ave Albert Thomas F-87060 Limoges France;

    Univ Limoges GRESE EA 4330 123 Ave Albert Thomas F-87060 Limoges France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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