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用于纳米颗粒合成和二氯联苯降解的聚偏氟乙烯膜孔内聚丙烯酸的水相合成

Aqueous - Phase Synthesis of PAA in PVDF Membrane Pores for Nanoparticle Synthesis and Dichlorobiphenyl Degradation.

作者信息

Smuleac V, Bachas L, Bhattacharyya D

机构信息

Department of Chemical and Materials Engineering University of Kentucky, Lexington, KY 40506.

出版信息

J Memb Sci. 2010 Jan 15;346(2):310-317. doi: 10.1016/j.memsci.2009.09.052.

DOI:10.1016/j.memsci.2009.09.052
PMID:20161475
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2794051/
Abstract

This paper deals with bimetallic (Fe/Pd) nanoparticle synthesis inside the membrane pores and application for catalytic dechlorination of toxic organic compounds form aqueous streams. Membranes have been used as platforms for nanoparticle synthesis in order to reduce the agglomeration, encountered in solution phase synthesis which leads to a dramatic loss of reactivity. The membrane support, polyvinylidene fluoride (PVDF) was modified by in situ polymerization of acrylic acid in aqueous phase. Subsequent steps included ion exchange with Fe(2+), reduction to Fe(0) with sodium borohydride and Pd deposition. Various techniques, such as STEM, EDX, FTIR and permeability measurements, were used for membrane characterization and showed that bimetallic (Fe/Pd) nanoparticles with an average size of 20-30 nm have been incorporated inside of the PAA-coated membrane pores. The Fe/Pd-modified membranes showed a high reactivity toward a model compound, 2, 2'-dichlorobyphenyl and a strong dependence of degradation on Pd (hydrogenation catalyst) content. The use of convective flow substantially reduces the degradation time: 43% conversion of dichlorobiphenyl to biphenyl can be achieved in less than 40 s residence time. Another important aspect is the ability to regenerate and reuse the Fe/Pd bimetallic systems by washing with a solution of sodium borohydride, because the iron becomes inactivated (corroded) as the dechlorination reaction proceeds.

摘要

本文探讨了在膜孔内合成双金属(铁/钯)纳米颗粒及其在催化脱除水流中有毒有机化合物氯方面的应用。膜被用作纳米颗粒合成的平台,以减少在溶液相合成中遇到的团聚现象,这种团聚现象会导致反应活性急剧丧失。通过在水相中对丙烯酸进行原位聚合对膜载体聚偏二氟乙烯(PVDF)进行改性。后续步骤包括与Fe(2+)进行离子交换、用硼氢化钠将其还原为Fe(0)以及钯的沉积。使用了各种技术,如扫描透射电子显微镜(STEM)、能量散射X射线谱(EDX)、傅里叶变换红外光谱(FTIR)和渗透率测量等对膜进行表征,结果表明平均尺寸为20 - 30 nm的双金属(铁/钯)纳米颗粒已被纳入涂有聚丙烯酸(PAA)的膜孔内。铁/钯改性膜对模型化合物2,2'-二氯联苯表现出高反应活性,并且降解强烈依赖于钯(氢化催化剂)含量。使用对流流动大大缩短了降解时间:在停留时间小于40 s的情况下,可实现二氯联苯向联苯43%的转化率。另一个重要方面是能够通过用硼氢化钠溶液洗涤来再生和重复使用铁/钯双金属体系,因为随着脱氯反应的进行,铁会失活(被腐蚀)。

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