Chen Wen, Xiong Qiong-Xian, Pang Xiao-Feng, Zhu Xia-Ping, Han Mei, Zhao Qiu-Xiang, Liu Wen-Hua
Chengdu University of Technology, Chengdu, China.
Guang Pu Xue Yu Guang Pu Fen Xi. 2013 Mar;33(3):817-21.
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.
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。