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负载于可重复使用的PAA/PVDF膜上的纳米级Fe0颗粒对六价铬的还原与固定

Reduction and immobilization of chromium(VI) by nano-scale Fe0 particles supported on reproducible PAA/PVDF membrane.

作者信息

Li Shujing, Li Tielong, Xiu Zongming, Jin Zhaohui

机构信息

College of Environmental Science and Engineering, Nankai University, Tianjin, PR China.

出版信息

J Environ Monit. 2010 May;12(5):1153-8. doi: 10.1039/b919909h.

Abstract

A new class of nano-scale Fe0 particles (NZVI) supported on a PAA/PVDF membrane (NZVI-PAA/PVDF) were synthesized and the feasibility of using NZVI-PAA/PVDF for reductive immobilization of Cr(VI) in water was investigated through laboratory batch tests. The results showed that the Cr(VI) removal capacity of NZVI-PAA/PVDF was 181 mg Cr/g Fe at an initial Cr(VI) concentration of 20 mg L(-1) under pH 6.5 +/- 0.1. XPS results showed that Cr(VI) was converted to nontoxic Cr(III). Interfering ions exerted various degrees of impact on NZVI-PAA/PVDF's Cr(VI) removal capacity. Specifically, Ca2+ alone showed the mildest impact while the presence of ions (Mg2+ and HCO3-) exerted the greatest impact. An advantage of NZVI-PAA/PVDF is that the nano-scale Fe0 and resultant particles were combined within a PAA/PVDF membrane, which prevents secondary pollution. Moreover, a piece of PAA/PVDF membrane (4.7 cm diameter) can still support 6.51 mg of nano-scale Fe0 particles after being renewed.

摘要

合成了一类负载在PAA/PVDF膜上的新型纳米级Fe0颗粒(NZVI),即NZVI-PAA/PVDF,并通过实验室批量试验研究了使用NZVI-PAA/PVDF对水中Cr(VI)进行还原固定的可行性。结果表明,在初始Cr(VI)浓度为20 mg L(-1)、pH值为6.5±0.1的条件下,NZVI-PAA/PVDF对Cr(VI)的去除能力为181 mg Cr/g Fe。XPS结果表明,Cr(VI)转化为无毒的Cr(III)。干扰离子对NZVI-PAA/PVDF的Cr(VI)去除能力有不同程度的影响。具体而言,单独的Ca2+影响最小,而离子(Mg2+和HCO3-)的存在影响最大。NZVI-PAA/PVDF的一个优点是,纳米级Fe0和生成的颗粒结合在PAA/PVDF膜内,可防止二次污染。此外,一片PAA/PVDF膜(直径4.7 cm)在更新后仍可负载6.51 mg的纳米级Fe0颗粒。

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