School of Science, Xihua University, Chengdu, 610039, China; Asymmetric Synthesis and Chiral Technology Key Laboratory of Sichuan Province, Xihua University, Chengdu, 610039, China; Research and Application of Small Organic Chiral Molecules Key Laboratory of Yibin City, Yibin Research Institute of Xihua University, Yibin, 644000, China.
School of Science, Xihua University, Chengdu, 610039, China.
J Environ Manage. 2022 Oct 1;319:115619. doi: 10.1016/j.jenvman.2022.115619. Epub 2022 Jul 7.
Heavy metals (HMs) pose serious threats to both human and environmental health and therefore, effective and low-cost techniques to remove HMs are urgently required. Here we report a facile Fe-tannin coating method for zero-valent iron (ZVI) including nanoparticles (nZVI) and foam (Fe), and demonstrate that the generated Fe-tannin coating would remove the inherent passive iron oxide shell of ZVI and provide channels for the galvanic replacement reaction between ZVI and HM ions. Electrochemical characterizations demonstrate that the Fe core of the modified ZVI materials could be easily oxidized and transfer electrons to HM ions owing to the facile mass transport and charge transfer. In 40 min, nZVI@Fe-TA exhibits excellent performances for Cd(II), Ni(II), Pb(II), Hg(II), Cu(II) and Cr(VI) removal, with the apparent removal rate constants of 0.083, 0.085, 0.083, 0.073, 0.092 and 0.078 min, respectively. It is found that the surface area normalized rate constants of nZVI@Fe-TA are 4-7 times higher than that of nZVI@FeO counterpart, suggesting that the improved HM removal reactivity of nZVI@Fe-TA is derived from the surface modification. Moreover, nZVI@Fe-TA has advantages in resisting interference and in the simultaneous removal of different HM ions. Under a 30 min hydraulic retention time, Fe@Fe-TA could remove 98% HMs in the successive process. For real electroplating wastewater, Fe@Fe-TA exhibits excellent performance for Cr(VI) and Ni(II) removal, producing effluent of stable quality that meets local emission regulation. This study provides a facile strategy to remove the inherent passive iron oxide shell and enhance the HM removal reactivity for ZVI materials.
重金属(HMs)对人类和环境健康构成严重威胁,因此,迫切需要有效且低成本的技术来去除 HMs。在这里,我们报告了一种简便的 Fe-单宁酸涂层方法,用于包括纳米颗粒(nZVI)和泡沫(Fe)的零价铁(ZVI),并证明生成的 Fe-单宁酸涂层将去除 ZVI 的固有被动氧化铁壳,并为 ZVI 和 HM 离子之间的电置换反应提供通道。电化学特性表明,由于易于传质和电荷转移,改性 ZVI 材料的 Fe 核可以很容易地被氧化并将电子转移到 HM 离子上。在 40 分钟内,nZVI@Fe-TA 对 Cd(II)、Ni(II)、Pb(II)、Hg(II)、Cu(II)和 Cr(VI)的去除表现出优异的性能,表观去除速率常数分别为 0.083、0.085、0.083、0.073、0.092 和 0.078 min。发现 nZVI@Fe-TA 的比表面积归一化速率常数比 nZVI@FeO 对应物高 4-7 倍,表明 nZVI@Fe-TA 对 HM 去除反应性的提高源于表面改性。此外,nZVI@Fe-TA 在抵抗干扰和同时去除不同 HM 离子方面具有优势。在 30 分钟水力停留时间下,Fe@Fe-TA 可以在连续过程中去除 98%的 HMs。对于实际电镀废水,Fe@Fe-TA 对 Cr(VI)和 Ni(II)的去除表现出优异的性能,产生符合当地排放标准的稳定质量的出水。本研究为去除 ZVI 材料的固有被动氧化铁壳并提高其去除 HM 的反应性提供了一种简便的策略。