Zhou Shilin, Liu Fang, Zhang Qian, Chen Bor-Yann, Lin Chin-Jung, Chang Chang-Tang
J Nanosci Nanotechnol. 2015 Aug;15(8):5823-32. doi: 10.1166/jnn.2015.10271.
In this study, A novel adsorbent material of polyacrylonitrile (PAN)/ferrous chloride (FeCl2) composite nanofibers is prepared by electrospinning, a simple and effective method. The obtained composite nanofibers have a non-uniform morphology and structure and a large specific surface area of 13.8 m2 g-1. Fourier transform infrared spectroscopy (FTIR) revealed that Fe2+ was successful introduced into the composite nanofibers. Furthermore, the PAN/FeC12 composite nanofibers exhibited excellent performance in Cr removal, especially when reacted with reduction from a Cr(VI) standard containing solution, which has much faster removal efficiency than the previous report of Lin et al. (2011). The results of the adsorption isotherm show that the data fitted well to the Langmuir isotherm model. The maximum adsorption of chromium ions composite nanofibers is 108 mgCr/gFeCl2. An attempted model prediction of the transient dynamics of adsorption-desorption elucidated the feasible kinetic analysis of Cr6+ from the PAN/FeCl2 composite nanofibers. This kinetic modeling can be used both for adsorption of heavy metals wastewater and for organic-adsorption and biosorption of diverse wastewaters. The PAN/FeCl2 composite nanofibers producted in this study exhibit high efficiency in Cr(VI) removal from wastewater, and may be used as a reference for future investigation.
在本研究中,通过静电纺丝这种简单有效的方法制备了一种新型的聚丙烯腈(PAN)/氯化亚铁(FeCl₂)复合纳米纤维吸附材料。所获得的复合纳米纤维具有不均匀的形态和结构,比表面积大,为13.8 m² g⁻¹。傅里叶变换红外光谱(FTIR)表明Fe²⁺成功引入到复合纳米纤维中。此外,PAN/FeCl₂复合纳米纤维在去除铬方面表现出优异的性能,特别是在与含Cr(VI)标准溶液反应进行还原时,其去除效率比Lin等人(2011年)之前的报道快得多。吸附等温线结果表明,数据与朗缪尔等温线模型拟合良好。复合纳米纤维对铬离子的最大吸附量为108 mgCr/gFeCl₂。对吸附 - 解吸瞬态动力学的尝试性模型预测阐明了从PAN/FeCl₂复合纳米纤维中去除Cr⁶⁺的可行动力学分析。这种动力学建模可用于重金属废水的吸附以及各种废水的有机吸附和生物吸附。本研究制备的PAN/FeCl₂复合纳米纤维在去除废水中的Cr(VI)方面表现出高效率,可为未来的研究提供参考。