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铜和镉在硫酸盐木质素和有机溶剂木质素上的吸附

Copper and cadmium sorption onto kraft and organosolv lignins.

作者信息

Harmita Hengky, Karthikeyan K G, Pan Xuejun

机构信息

Department of Biological Systems Engineering, University of Wisconsin-Madison, 460 Henry Mall, Madison, WI 53706, USA.

出版信息

Bioresour Technol. 2009 Dec;100(24):6183-91. doi: 10.1016/j.biortech.2009.06.093. Epub 2009 Jul 29.

DOI:10.1016/j.biortech.2009.06.093
PMID:19643604
Abstract

The relative metal sorption ability of kraft and organosolv lignins was examined as a function of solution chemistry (pH, ionic strength (I), sorbate-to-sorbent ratio) and reaction time. The surface charge characteristics and functional group composition of these lignins, especially kraft lignin, are favorable for metal sorption. Sorption of Cu and Cd increased with increasing pH and decreasing I. Description of sorption isotherms required the more complex Sips equation, as compared to the simpler Langmuir and Freundlich formulations, indicative of the presence of binding sites with varying affinities on these lignin biosorbents. Sorption capacity varied in the following order: softwood organosolv lignin<hardwood organosolv lignin<hardwood kraft lignin<softwood kraft lignin with sorption maximum of 21.5, 40, 66.7, and 80.6 micromol/g, respectively, for Cu, and 8.2, 18.3, 25.2, and 28.7 micromol/g for Cd. Both Cu and Cd sorption kinetics were rapid with equilibrium levels attained within 80 min and faster uptake was noticed for Cu. Strong competitive effects exhibited by H(+) and Na(+) in limiting Cu and Cd sorption are suggestive of the occurrence of weak ion-exchange type interactions involving the carboxylic and phenolic functional groups. Additional pretreatment and surface modifications of these biosorbents might be required to increase metal sorption capacity and enhance their use in waster/wastewater treatment.

摘要

研究了硫酸盐木质素和有机溶剂木质素的相对金属吸附能力与溶液化学性质(pH值、离子强度(I)、吸附质与吸附剂的比例)及反应时间之间的关系。这些木质素,尤其是硫酸盐木质素的表面电荷特性和官能团组成有利于金属吸附。铜和镉的吸附量随pH值的升高和离子强度的降低而增加。与更简单的朗缪尔和弗伦德利希公式相比,吸附等温线的描述需要更复杂的西普斯方程,这表明这些木质素生物吸附剂上存在具有不同亲和力的结合位点。吸附容量按以下顺序变化:软木有机溶剂木质素<硬木有机溶剂木质素<硬木硫酸盐木质素<软木硫酸盐木质素,铜的吸附最大值分别为21.5、40、66.7和80.6 μmol/g,镉的吸附最大值分别为8.2、18.3、25.2和28.7 μmol/g。铜和镉的吸附动力学都很快,80分钟内达到平衡水平,且铜的吸附更快。H(+)和Na(+)在限制铜和镉吸附方面表现出强烈的竞争效应,这表明存在涉及羧基和酚基官能团的弱离子交换型相互作用。可能需要对这些生物吸附剂进行额外的预处理和表面改性,以提高金属吸附容量并增强其在废物/废水处理中的应用。

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