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首页> 外文期刊>The Science of the Total Environment >Kinetics and mechanism of selenite reduction by zero valent iron under anaerobic condition activated and enhanced by dissolved Fe(Ⅱ)
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Kinetics and mechanism of selenite reduction by zero valent iron under anaerobic condition activated and enhanced by dissolved Fe(Ⅱ)

机译:溶解态Fe(Ⅱ)活化和增强厌氧条件下零价铁还原亚硒酸盐的动力学及机理

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Batch test was conducted to investigate Se(IV) removal kinetics and mechanism by zero valent iron (ZVI) in presence of Fe(II) under anaerobic condition. Dissolved Fe(II) activated and enhanced Se(IV) reduction by ZVI, which also determined the removal efficiency, reduction rate, final corrosion products and their structures. Se(IV) was completely removed at initial Fe(II)/Se(IV) = 1.0, and the specific rate constant significantly increased from 0.6 to 3.44 L h(-1) m(-2) with the augment of ratio from 1.0 to 1.4. At Fe(II)/Se(IV) 1.0 (take 0.6 as an example), Raman, XPS, SEM-EDS and XRD results suggested that Se(IV) was reduced to amorphous Se(0) in forms of red suspended solids, amorphous FeSe and crystal maghemite (gamma-Fe2O3) coated on ZVI surface. At Fe(II)/Se(IV) = 1.0 (take 1.0 and 1.4 as examples), crystal FeSe and magnetite (Fe2O3) deposits formed on ZVI surface with a core-shell structure. Additionally, final pH increased due to Se(IV) reduction. This study suggested that traditional ZVI passivation problem could be overcome through the addition of excess dissolved Fe(II) under anaerobic condition, which also provided an alternative method to produce a reactive ammonia-free Fe2O3/ZVI/Fe(II) system. (C) 2019 Elsevier B.V. All rights reserved.
机译:在厌氧条件下,在Fe(II)存在下,采用零价铁(ZVI)进行批处理试验以研究Se(IV)的去除动力学和机理。 ZVI活化了溶解的Fe(II)并增强了Se(IV)的还原,这也决定了去除效率,还原率,最终腐蚀产物及其结构。当初始Fe(II)/ Se(IV)> = 1.0时,Se(IV)被完全去除,并且比速率常数从0.6显着增加到3.44 L h(-1)m(-2),比例从1.0至1.4。在Fe(II)/ Se(IV)<1.0(以0.6为例)时,拉曼光谱,XPS,SEM-EDS和XRD结果表明,Se(IV)以红色悬浮固体的形式还原为无定形Se(0) ,无定形的FeSe和晶体磁铁矿(γ-Fe2O3)涂覆在ZVI表面上。当Fe(II)/ Se(IV)> = 1.0(以1.0和1.4为例)时,晶体FeSe和磁铁矿(Fe2O3)沉积在具有核-壳结构的ZVI表面上。另外,由于Se(IV)的减少,最终pH值增加。这项研究表明,通过在厌氧条件下添加过量的溶解的Fe(II)可以克服传统的ZVI钝化问题,这也为生产反应性无氨Fe2O3 / ZVI / Fe(II)系统提供了另一种方法。 (C)2019 Elsevier B.V.保留所有权利。

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