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火焰原子吸收光谱法研究铅离子在巯基改性膨润土上的吸附与解吸行为

[Study of adsorption and desorption of behaviors of Pb2+ on thiol-modified bentonite by flame atomic absorption spectrometry].

作者信息

Chen Wen, Xiong Qiong-Xian, Pang Xiao-Feng, Zhu Xia-Ping, Han Mei, Zhao Qiu-Xiang, Liu Wen-Hua

机构信息

Chengdu University of Technology, Chengdu, China.

出版信息

Guang Pu Xue Yu Guang Pu Fen Xi. 2013 Mar;33(3):817-21.

Abstract

A comparative analysis of the functional groups and surface structure of the Ca-bentonite (RB) and thiol-modified bentonite (TMB) were characterized by means of FTIR and SEM. The absorptive property of Pb2+ on TMB and RB and its influential factors was studied and the conditions for the adsorption were optimized by using FAAS method. Then the conditions for desorption of Pb2+ from the TMB by using simulated acid rain were studied and the contrast analysis of absorptive stability of Pb2+ on TMB and RB was given. The results showed that the adsorption rate of Pb2+ by TMB could reach more than 98%, when the initial Pb2+ concentration was 100 mg.L-1, the liquid-solid ratio was 5 g.L-1, pH was 6. 0, KNO3 ionic strength was 0. 1 mol.L-1 and adsorption period was 60min at 25 C. The saturated adsorption capacity of TMB was 67.27 mg.g-1; it's much more than that of RB (9.667 mg.g-1). The adsorption of Pb2+ on TMB follows Langmuir and Freundlich isotherm models well. Desorption experiments of Pb2+ from TMB with simulated acid rain (pH 3. 50) were done, and the desorption rate was 0. The results showed that TMB has a strong adsorption and fixation capacity for PbZ+; it is adapted to lead contaminated soil for chemical remediation.

摘要

采用傅里叶变换红外光谱(FTIR)和扫描电子显微镜(SEM)对钙基膨润土(RB)和巯基改性膨润土(TMB)的官能团和表面结构进行了对比分析。研究了TMB和RB对Pb2+的吸附性能及其影响因素,并采用火焰原子吸收光谱法(FAAS)优化了吸附条件。然后研究了模拟酸雨对TMB上Pb2+的解吸条件,并对TMB和RB上Pb2+的吸附稳定性进行了对比分析。结果表明,当初始Pb2+浓度为100mg·L-1、液固比为5g·L-1、pH为6.0、KNO3离子强度为0.1mol·L-1、吸附时间为60min、温度为25℃时,TMB对Pb2+的吸附率可达98%以上。TMB的饱和吸附容量为67.27mg·g-1,远高于RB的9.667mg·g-1。Pb2+在TMB上的吸附很好地符合Langmuir和Freundlich等温模型。进行了模拟酸雨(pH 3.50)对TMB上Pb2+的解吸实验,解吸率为0。结果表明,TMB对Pb2+具有较强的吸附固定能力,适用于铅污染土壤的化学修复。

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