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AFT对蒙脱石黏土悬浮液中4,6-邻二硝基甲酚和对硝基苯酚降解的吸附作用。

Adsorption effect on the degradation of 4,6-o-dinitrocresol and p-nitrophenol in a montmorillonite clay slurry by AFT.

作者信息

Ye Peng, Lemley Ann T

机构信息

Graduate Field of Environmental Toxicology, Cornell University, 209 MVR Hall, Ithaca, NY 14853, USA.

出版信息

Water Res. 2009 Mar;43(5):1303-12. doi: 10.1016/j.watres.2008.12.046. Epub 2009 Jan 8.

Abstract

The adsorption and degradation of 4,6-o-dinitrocresol (DNOC) and p-nitrophenol (PNP) in SWy-2 montmorillonite clay slurry were investigated. The pH and type of cation of the slurry were varied. Results showed that adsorption of DNOC and PNP increased at lower pH values, and when pH < pKa(4.4) of DNOC, DNOC was almost completely adsorbed on the clay under given experimental conditions. The specific cation also had a significant effect on adsorption, which was dramatically enhanced in the presence of K+ and NH4+, compared with the presence of Na+ or Ca2+. Anodic Fenton treatment (AFT) degradation of DNOC and PNP in the clay slurry was studied, and it was found that DNOC degradation rates were greatly affected by the initial pH and the types of electrolytes. Due to the higher adsorption, the degradation rate substantially decreased in the clay slurry system in the presence of K+ and low pH, with a large amount of DNOC residue remaining after 60 min treatment. AFT degradation of PNP was completed within 30 min treatment. Based on LC-MS data, a DNOC degradation pathway was proposed. Overall, the results showed the inhibition effect of adsorption on the degradation of nitroaromatic compounds in montmorillonite clay slurry by AFT, providing important implications for water and soil remediation.

摘要

研究了4,6-邻二硝基甲酚(DNOC)和对硝基苯酚(PNP)在SWy-2蒙脱石黏土悬浮液中的吸附和降解情况。改变了悬浮液的pH值和阳离子类型。结果表明,在较低pH值下,DNOC和PNP的吸附量增加,当pH < DNOC的pKa(4.4)时,在给定实验条件下,DNOC几乎完全吸附在黏土上。特定阳离子对吸附也有显著影响,与存在Na+或Ca2+相比,在存在K+和NH4+时吸附显著增强。研究了黏土悬浮液中DNOC和PNP的阳极芬顿处理(AFT)降解情况,发现DNOC的降解速率受初始pH值和电解质类型的极大影响。由于较高的吸附作用,在存在K+和低pH值的黏土悬浮液体系中,降解速率大幅下降,处理60分钟后仍有大量DNOC残留。PNP的AFT降解在30分钟内完成。基于液相色谱-质谱数据,提出了DNOC的降解途径。总体而言,结果表明吸附对AFT处理蒙脱石黏土悬浮液中硝基芳香族化合物降解的抑制作用,为水和土壤修复提供了重要启示。

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