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Fe2+在零价铁还原去除NO3-中的作用效应

陈欢,张亚平*,阮晓红   

  • 出版日期:2018-02-20 发布日期:2018-02-26

Effect of Fe2+ on Nitrate Reduction Using Zero-valent Iron

CHENHuan, ZHANG Yaping*, RUANXiaohong   

  • Online:2018-02-20 Published:2018-02-26

摘要: 零价铁(Fe0) 被广泛用于地下水中硝酸盐原位与异位修复,但二价铁(Fe2+) 的存在对具有氧化膜的Fe0还原硝酸盐的作用效应仍有待研究。以100 目的未经酸化的颗粒状零价铁作为还原剂,采用室内批试验方法,研究了Fe2+在零价铁还原去除NO3-系统中的作用效应。实验结果表明,Fe2+可显著提高Fe0对于NO3-的去除速率与去除效率,且Fe2+浓度越高,去除速率与效率越高;由于未经酸化的Fe0具有氧化膜,反应初期的NO3-还原速率较慢。Fe2+将零价铁表面的Fe2O3氧化膜转化为Fe3O4,加速电子由Fe0向NO3-的转移,促进NO3-还原。此外,在反应系统中加入Fe3O4,可进一步提高Fe0对于硝酸盐的去除能力,若Fe2+不存在,仅添加Fe3O4,NO3-的去除效率没有提高。

关键词: 零价铁, Fe2+, Fe3O4, 硝酸盐还原, 地下水

Abstract: Zero-valent iron(Fe0) was widely used for in-situ and ex-situ remediation of nitrate in groundwater, however, it remained to
be studied that how existing of Fe2+ worked in the reduction of nitrate by Fe0 which was covered by iron oxides. In this study, batch
experiments were conducted to investigate the effect of Fe2 + on NO3- reduction using 100 mesh untreated zero-valent iron (Fe0) as
reductant. The results showed that, Fe2+ could significantly enhance the removal rate and removal efficiency of NO3- in the presence of
Fe0, and the removal efficiency increased with elevated Fe2+ concentration; but the reaction experienced an initial stage of low rate due
to the existence of oxide film on the Fe0 surface. Fe2+ could directly revolved in the reaction and transformed Fe2O3 which covers the Fe0
to Fe3O4, which accelerates the transfer of electrons from Fe0 to NO3- and promote the reduction of nitrate. What’s more, the removal
efficiency of NO3- by Fe0 will be further improved while adding Fe3O4 into the reaction system, however, with the absence of Fe2+ , the
adding of Fe3O4 only will not influence the reduction efficiency by Fe0.

Key words: zero-valent iron, Fe2+, Fe3O4, nitrate reduction, groundwater