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纤维素胺交联共聚物的特性及其对水溶液中六价铬的吸附性能。

Characteristics of cellulosic amine-crosslinked copolymer and its sorption properties for Cr(VI) from aqueous solutions.

机构信息

Key Laboratory of Water Pollution Control and Recycling Shandong, School of Environmental Science and Engineering, Shandong University, Jinan 250100, PR China.

出版信息

J Hazard Mater. 2011 May 15;189(1-2):420-6. doi: 10.1016/j.jhazmat.2011.02.056. Epub 2011 Feb 23.

Abstract

A new cellulosic amine-crosslinked copolymer was prepared after the amination reaction with cotton stalk peel (CSP). The physicochemical characteristics of amine-crosslinked cotton stalk peel (AC-CSP) and raw CSP were determined after the surface analysis (including specific surface area, micropore volume and SEM), zeta potential analysis and spectrum analysis (FTIR and Raman spectrum). The sorption properties of AC-CSP for Cr(VI) were evaluated in the static, column sorption and desorption tests. The surface characteristics indicated the absence of porous adsorption in the potential Cr(VI) sorption mechanism. Zeta potential and spectrum analysis of AC-CSP illustrated the involvement of amine groups in the Cr(VI) sorption process. The sorption capacity of AC-CSP for Cr(VI) was 129.0mg/g as comparison with 14.8 mg/g of raw CSP. Flow rate and influent Cr(VI) concentration were demonstrated as two influencial factors in the column sorption tests. NaCl was used as the eluent, and the desorption efficiencies during three successive cycles were 75.9%, 69.8% and 64.3%, respectively. In addition, the results of the static, column sorption and desorption tests illustrated the complicated interactions between Cr(VI) and AC-CSP including complexation and ion exchange mechanisms.

摘要

用棉秆皮(CSP)进行胺化反应后,制备了一种新的纤维素胺交联共聚物。通过表面分析(包括比表面积、微孔体积和 SEM)、动电电位分析和光谱分析(FTIR 和 Raman 光谱)对胺交联棉秆皮(AC-CSP)和原棉秆皮的理化特性进行了测定。在静态、柱吸附和解吸试验中评价了 AC-CSP 对 Cr(VI)的吸附性能。表面特性表明,在潜在的 Cr(VI)吸附机制中不存在多孔吸附。AC-CSP 的动电电位和光谱分析表明,胺基参与了 Cr(VI)的吸附过程。AC-CSP 对 Cr(VI)的吸附容量为 129.0mg/g,而原棉秆皮的吸附容量为 14.8mg/g。流速和进水 Cr(VI)浓度被证明是柱吸附试验中的两个影响因素。NaCl 被用作洗脱剂,在三个连续循环中的解吸效率分别为 75.9%、69.8%和 64.3%。此外,静态、柱吸附和解吸试验的结果表明,Cr(VI)和 AC-CSP 之间存在复杂的相互作用,包括络合和离子交换机制。

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