College of Chemical Engineering, Huaqiao University, Xiamen, 361021, China.
Chemosphere. 2019 Mar;218:458-467. doi: 10.1016/j.chemosphere.2018.11.118. Epub 2018 Nov 20.
A novel amino-functionalized vermiculite (AVT)-supported nanoscale zero-valent iron (AVT-nZVI) was successfully synthesized for Cr(VI) removal from simulated electroplating rinse wastewater. Since the agglomeration and oxidation of nZVI could be weakened and the reaction rate between Cr(VI) and nZVI could be enhanced for the novel AVT-nZVI, an efficient Cr(VI) removal could be achieved. The experimental results showed that 100% of Cr(VI) removal was obtained with AVT-nZVI, whereas only 87.5% was achieved by nZVI after reacting for 60 min with 20.0 mg L Cr(VI) (pH = 5.0). After four cycles, the removal efficiency of Cr(VI) by AVT-nZVI still maintained at above 70%, suggesting that AVT-nZVI exhibited a good performance of reusability. The stability of AVT-nZVI particles was better than nZVI, which was confirmed by the steady-state polarization measurements. Furthermore, the removal of Cr(VI) by AVT-nZVI was proved to be in accordance with the pseudo-second-order adsorption kinetics and Langmuir model. Based on the experiments and characterization, the reaction mechanism of Cr(VI) removal by AVT-nZVI was clarified. The protonated amino groups (-NH) on the AVT promoted negative Cr(VI) species to be adsorbed on AVT-nZVI surface. Besides, Cr(VI) was reduced by Fe (0) to Cr(III), which was eventually adsorbed on the surface of AVT-nZVI particles as the Cr(III)-Fe(III) co-precipitates.
一种新型氨基功能化蛭石(AVT)负载纳米零价铁(AVT-nZVI)被成功合成,用于从模拟电镀漂洗废水中去除 Cr(VI)。由于新型 AVT-nZVI 可以减弱 nZVI 的团聚和氧化,并且可以增强 Cr(VI)与 nZVI 之间的反应速率,因此可以实现高效的 Cr(VI)去除。实验结果表明,用 AVT-nZVI 反应 60min 后,在 pH=5.0 时,20.0mg/L 的 Cr(VI)可以实现 100%的 Cr(VI)去除,而用 nZVI 只能实现 87.5%的去除。经过四个循环,AVT-nZVI 对 Cr(VI)的去除效率仍保持在 70%以上,表明 AVT-nZVI 具有良好的可重复使用性能。AVT-nZVI 颗粒的稳定性优于 nZVI,这一点通过稳态极化测量得到了证实。此外,AVT-nZVI 去除 Cr(VI)的过程被证明符合准二级吸附动力学和 Langmuir 模型。基于实验和表征,阐明了 AVT-nZVI 去除 Cr(VI)的反应机制。AVT 上的质子化氨基(-NH)促进带负电荷的 Cr(VI)物种被吸附在 AVT-nZVI 表面。此外,Cr(VI)被 Fe(0)还原为 Cr(III),最终作为 Cr(III)-Fe(III)共沉淀物被吸附在 AVT-nZVI 颗粒表面。