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改性PAN非织造布铁配合物可见光降解甲醛气体
引用本文:韩旭,韩振邦,赵晓明.改性PAN非织造布铁配合物可见光降解甲醛气体[J].中国环境科学,2016,36(5):1353-1359.
作者姓名:韩旭  韩振邦  赵晓明
作者单位:天津工业大学纺织学院, 天津 300387
基金项目:国家自然科学基金(51206122);天津市自然科学基金重点项目(12JCZDJC28400);天津市应用基础与前沿技术研究计划青年项目(15JCQNJC06300);天津市高等学校科技发展基金计划项目(20140313)
摘    要:使用盐酸羟胺对聚丙烯腈非织造布(nPAN)进行了化学改性,并将所得改性聚丙烯腈非织造布(AO-nPAN)与Fe(III)配位制得改性聚丙烯腈非织造布铁配合物(Fe-nPAN),分别使用扫描电镜(SEM)、傅立叶红外光谱(FTIR)、X射线衍射(XRD)和UV-Vis吸收光谱对Fe-nPAN进行了表征,然后将其作为光催化剂应用于甲醛气体的氧化降解反应中.结果表明:提高Fe(III)初始浓度、反应温度和AO-nPAN的增重率都能够增加Fe-nPAN的Fe(III)配合量.Fe-nPAN中偕胺肟基团与Fe(III)发生了配位反应,使其在可见光区有明显的吸收带.增加Fe(III)配合量和可见光强度都能够促进甲醛的降解反应,而且与PAN纱线制备的铁配合物催化剂相比,Fe-nPAN明显具有更高的催化活性.

关 键 词:PAN非织造布  铁离子  配合物  光催化  甲醛  
收稿时间:2015-09-30

Preparation of modified PAN nonwoven Fe complex and its photocatalytic performance on formaldehyde degradation
HAN Xu,HAN Zhen-bang,ZHAO Xiao-ming.Preparation of modified PAN nonwoven Fe complex and its photocatalytic performance on formaldehyde degradation[J].China Environmental Science,2016,36(5):1353-1359.
Authors:HAN Xu  HAN Zhen-bang  ZHAO Xiao-ming
Institution:Division of Textiles, Tianjin Polytechnic University, Tianjin 300387, China
Abstract:Polyacrylonitrile nonwoven (nPAN) were chemically modified with hydroxylamine, and the obtained amidoximated polyacrylonitrile nonwoven (AO-nPAN) were coordinated with Fe (III) to prepare modified nPAN supported Fe complexes (Fe-nPAN). The complexes were characterized using Scanning electron microscope (SEM), Fourier Transform infrared spectroscopy (FT-IR), X-ray diffraction (XRD) and UV-vis absorption spectra, and then employed as photocatalysts in the oxidative degradation of formaldehyde. The results indicated that increasing Fe (III) concentration, reaction temperature and weight gain rate of AO-nPAN led to higher Fe (III) content of Fe-nPAN. The amidoxime groups were coordinated with Fe (III) in Fe-nPAN, which gave the catalyst a remarkable absorption in the visible region. Increasing both Fe (III) content of Fe-nPAN and visible irradiation could significantly accelerate the formaldehyde degradation, and the catalyst exhibited much higher photocatalytic activity than the PAN yarn Fe complex under similar conditions.
Keywords:PAN nonwoven  Fe ion  complex  photocatalysis  formaldehyde  
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