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使用具有可调选择性的介孔吸附剂去除和回收Cd2+和Ni2+的高效方法。

Efficient approach for Cd2+ and Ni2+ removal and recovery using mesoporous adsorbent with tunable selectivity.

作者信息

Lam Koon Fung, Yeung King Lun, McKay Gordon

机构信息

Department of Chemical Engineering and Environmental Engineering Program, Hong Kong University of Science and Technology, Clear Water Bay, Kowloon, Hong Kong, P.R. China.

出版信息

Environ Sci Technol. 2007 May 1;41(9):3329-34. doi: 10.1021/es062370e.

Abstract

Cadmium pollution from the manufacture and disposal of NiCd batteries remains an important problem in developing countries. Among the available remedial technologies, adsorption is popular because of its low cost and simplicity. The mesoporous NH2-MCM-41 displays good adsorption capacities for cadmium and nickel ions. This work demonstrated for the first time the use of the competition between complexant and sorbentto create high adsorption selectivity. The selectivity was manipulated by the judicious use of a chelating agent, thus achieving on-demand 100% selectivity for either Cd2+ or Ni2+ adsorption. Single and binary components adsorption studies, carried out with different metals and EDTA concentrations, solution compositions and pH, showed that NH2-MCM-41 adsorbs only cadmium with a capacity of 0.56 mmol g(-1) from binary mixtures at [EDTA]/[M2+] = 0.5 and pH 5. The NH2-MCM-41 displays 100% selectivityfor nickel adsorption at [EDTA]/[M2+] = 0.5 and pH 2 with a measured adsorption capacity of 0.50 mmol g(-1). Pure Cd2+ and Ni2+ solutions were recovered by a simple acid wash, and the regenerated adsorbent could be reused without lost of performance (i.e., adsorption capacity and selectivity).

摘要

镍镉电池制造和处置过程中的镉污染在发展中国家仍然是一个重要问题。在现有的修复技术中,吸附因其低成本和简单性而广受欢迎。介孔NH2-MCM-41对镉和镍离子具有良好的吸附能力。这项工作首次证明了利用络合剂和吸附剂之间的竞争来产生高吸附选择性。通过明智地使用螯合剂来控制选择性,从而实现对Cd2+或Ni2+吸附的按需100%选择性。在不同的金属和EDTA浓度、溶液组成和pH条件下进行的单组分和双组分吸附研究表明,在[EDTA]/[M2+]=0.5和pH为5的二元混合物中,NH2-MCM-41仅吸附镉,吸附容量为0.56 mmol g(-1)。在[EDTA]/[M2+]=0.5和pH为2时,NH2-MCM-41对镍吸附的选择性为100%,测得的吸附容量为0.50 mmol g(-1)。通过简单的酸洗可回收纯Cd2+和Ni2+溶液,再生后的吸附剂可重复使用而不会损失性能(即吸附容量和选择性)。

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