Chen Hui, Zhou Wenjun, Zhu Kun, Zhan Huiying, Jiang Mei
Department of Chemistry, Northwest Normal University, Lanzhou 730070, PR China.
Sci Total Environ. 2004 Jun 29;326(1-3):217-23. doi: 10.1016/j.scitotenv.2003.12.011.
A natural loess soil was modified using a cationic surfactant, hexadecyltrimethylammonium (HDTMA) bromide. Sorption of ionizable organic compounds (IOCs), 2,4-dichlorophenol (DCP), p-nitroaniline (NA) and benzoic acid (BA), on the modified soil was determined under different pH conditions. The objective of this study was to examine the sorptive characteristics of IOCs on HDTMA-modified loess soil as a function of pH in an attempt to establish the sorptive models and mechanisms for predicting the sorptive behaviors of IOCs on the HDTMA-modified loess soil. The sorption isotherms of DCP, NA and BA with the soil were obtained using the batch equilibration method. Results indicated that the sorption isotherms of IOCs, regardless of ionic or neutral forms, were non-linear and obeyed to the Freundlich equation. A model describing the sorption of IOCs on the HDTMA-modified loess soil was derived from the experimental data. The model well predicted the sorption of DCP from individual sorption of both ionic and neutral species of the IOC. In binary solute systems, sorption of NA was reduced in the presence of DCP or BA, which indicated that DCP and BA had a competitive effect on the sorption of NA on the HDTMA-modified loess soil. The effect of DCP on the sorption of NA gradually increased with decreasing pH from 10.8 to 6.7, suggesting a stronger effect of neutral DCP than that of the ionic species on the sorption of NA. Modification of loess soil may effectively immobilize ionizable organic contaminants in soil environment.
使用阳离子表面活性剂十六烷基三甲基溴化铵(HDTMA)对天然黄土进行改性。在不同pH条件下,测定了可电离有机化合物(IOCs)2,4 - 二氯苯酚(DCP)、对硝基苯胺(NA)和苯甲酸(BA)在改性土壤上的吸附情况。本研究的目的是研究IOCs在HDTMA改性黄土上的吸附特性与pH的关系,试图建立吸附模型和机制,以预测IOCs在HDTMA改性黄土上的吸附行为。采用批量平衡法获得了DCP、NA和BA与土壤的吸附等温线。结果表明,IOCs的吸附等温线,无论离子形式还是中性形式,均为非线性,且符合Freundlich方程。根据实验数据推导了描述IOCs在HDTMA改性黄土上吸附的模型。该模型很好地预测了IOCs离子和中性物种单独吸附时DCP的吸附情况。在二元溶质体系中,NA在DCP或BA存在下的吸附减少,这表明DCP和BA对NA在HDTMA改性黄土上的吸附具有竞争作用。随着pH从10.8降至6.7,DCP对NA吸附的影响逐渐增加,表明中性DCP对NA吸附的影响比离子形式更强。黄土改性可有效固定土壤环境中的可电离有机污染物。