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质子化的马尾藻生物质在连续填充床柱中对铅(II)和镉(II)的生物吸附

Biosorption of lead(II) and cadmium(II) by protonated Sargassum glaucescens biomass in a continuous packed bed column.

作者信息

Naddafi Kazem, Nabizadeh Ramin, Saeedi Reza, Mahvi Amir Hossein, Vaezi Forough, Yaghmaeian Kamyar, Ghasri Azar, Nazmara Shahrokh

机构信息

Department of Environmental Health Engineering, School of Public Health, Tehran University of Medical Sciences, P.O. Box 14155-6446, Tehran, Iran.

出版信息

J Hazard Mater. 2007 Aug 25;147(3):785-91. doi: 10.1016/j.jhazmat.2007.01.122.

Abstract

Biosorption of lead(II) and cadmium(II) from aqueous solutions by protonated Sargassum glaucescens biomass was studied in a continuous packed bed column. The selective uptake of Pb2+ and Cd2+ was investigated in a binary system with initial concentration of 1 mM for each metal ion. The selective uptake capacities of Pb2+ and Cd2+ at complete exhaustion point were obtained 1.18 and 0.22 mmol/g, respectively; therefore, the biosorbent showed much higher relative affinity for Pb2+ than for Cd2+. The optimum range of empty bed contact time (EBCT) was identified as 5-10 min in the packed bed column. The efficiency of biosorbent regeneration by 0.1 M HCl was achieved about 60%, so that the maximum uptake capacity of Pb2+ by the regenerated biomass was determined to be 0.75 mmol/g while the same value for the original biomass was 1.24 mmol/g. The Thomas model was found in a suitable fitness with the experimental data (R2 > 0.90 and % < 50%) at all different operation stages. Monitoring of pH in the effluent of the column presented the simultaneous release of H+ with the uptake of heavy metals; hence, ion exchange was confirmed to be one of the main biosorption mechanisms.

摘要

在连续填充床柱中研究了质子化的海葡萄生物质对水溶液中铅(II)和镉(II)的生物吸附。在二元体系中研究了Pb2+和Cd2+的选择性吸收,每种金属离子的初始浓度为1 mM。在完全耗尽点时,Pb2+和Cd2+的选择性吸收容量分别为1.18和0.22 mmol/g;因此,该生物吸附剂对Pb2+的相对亲和力远高于Cd2+。在填充床柱中,空床接触时间(EBCT)的最佳范围确定为5-10分钟。用0.1 M HCl再生生物吸附剂的效率约为60%,因此再生生物质对Pb2+的最大吸收容量确定为0.75 mmol/g,而原始生物质的该值为1.24 mmol/g。在所有不同操作阶段,发现托马斯模型与实验数据拟合良好(R2 > 0.90且% < 50%)。监测柱流出物中的pH值表明,随着重金属的吸收同时释放H+;因此,离子交换被确认为主要的生物吸附机制之一。

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