State Key Laboratory of Pollution Control and Resources Reuse, College of Environmental Science and Engineering, Tongji University , Shanghai 200092, P.R. China.
State Key Laboratory of Pollution Control and Resources Reuse, School of Environment, Nanjing University , Nanjing 210023, Jiangsu, P.R. China.
Environ Sci Technol. 2017 May 2;51(9):5090-5097. doi: 10.1021/acs.est.6b04832. Epub 2017 Apr 10.
Although the electron selectivity (ES) of zerovalent iron (ZVI) for target contaminant and its utilization ratio (UR) decide the removal capacity of ZVI, little effort has been made to improve them. Taking selenate [Se(VI)] as a target contaminant, this study investigated the coupled influence of aeration gas and Fe(II) on the ES and UR of ZVI. Oxygen was necessary for effective removal of Se(VI) by ZVI without Fe(II) addition. Due to the application of 1.0 mM Fe(II), the ES of ZVI was increased from 3.2-3.6% to 6.2-6.8% and the UR of ZVI was improved by 5.0-19.4% under aerobic conditions, which resulted in a 100-180% increase in the Se(VI) removal capacity by ZVI. Se(VI) reduction by Fe was a heterogeneous redox reaction, and the enrichment of Se(VI) on ZVI surface was the first step of electron transfer from Fe core to Se(VI). Oxygen promoted the generation of iron (hydr)oxides, which facilitated the enrichment of Se(VI) on the ZVI particle surface. Therefore, the high oxygen fraction (25-50%) in the purging gas resulted in only a slight decrease in the ES of ZVI. Fe(II) addition resulted in a pH drop and promoted the generation of lepidocrocite and magnetite, which benefited Se(VI) adsorption and the following electron transfer from underlying Fe to surface-located Se(VI).
虽然零价铁 (ZVI) 对目标污染物的电子选择性 (ES) 和利用率 (UR) 决定了 ZVI 的去除能力,但很少有人努力提高它们。本研究以硒酸盐 [Se(VI)] 为目标污染物,考察了曝气气体和 Fe(II) 对 ZVI 的 ES 和 UR 的耦合影响。在没有添加 Fe(II) 的情况下,氧气是有效去除 Se(VI) 的必要条件。由于添加了 1.0 mM Fe(II),在有氧条件下,ZVI 的 ES 从 3.2-3.6%增加到 6.2-6.8%,ZVI 的 UR 提高了 5.0-19.4%,从而使 ZVI 去除 Se(VI)的能力提高了 100-180%。Fe 还原 Se 是一种非均相氧化还原反应,Se(VI)在 ZVI 表面的富集是电子从 Fe 核向 Se(VI)转移的第一步。氧气促进了铁 (氢) 氧化物的生成,这有利于 Se(VI)在 ZVI 颗粒表面的富集。因此,吹扫气体中高氧分 (25-50%) 只会导致 ZVI 的 ES 略有下降。Fe(II)的添加导致 pH 值下降,并促进了纤铁矿和磁铁矿的生成,这有利于 Se(VI)的吸附和随后的电子从底层 Fe 向表面 Se(VI)的转移。