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海洋藻类生物质对镉的吸附作用。

Biosorption of cadmium by biomass of marine algae.

机构信息

Department of Chemical Engineering, McGill University, Montreal, Canada.

出版信息

Biotechnol Bioeng. 1993 Apr 5;41(8):819-25. doi: 10.1002/bit.260410808.

Abstract

Biomass of nonliving, dried brown marine algae Sargassum natans, Fucus vesiculosus, and Ascophyllum nodosum demonstrated high equilibrium uptake of cadmium from aqueous solutions. The metal uptake of cadmium from aqueous solutions. The metal uptake by these materials was quantitatively evaluated using sorption isotherms. Biomass of A. nodosum accumulated the highest amount of cadmium exceeding 100 mg Cd(2+)/g (at the residual concentration of 100 mg Cd/L and pH 3.5), outperforming a commercial ion exchange resin DUOLITE GT-73. A new biosorbent material based on A. nodosum biomass was obtained by reinforcing the algal biomass by formaldehyde cross-linking. The prepared sorbent possessed good mechanical properties, chemical stability of the cell wall polysaccharides and low swelling volume. Desorption of deposited cadmium with 0.1-0.5M HCI resulted in no changes of the biosorbent metal uptake capacity through five subsequent adsorption/desorption cycles. There was no damage to the biosorbent which retained its macroscopic appearance and performance in repeated metal uptake/elution cycles.

摘要

非生命的、干燥的棕色海洋藻类马尾藻、泡叶藻和马尾藻的生物质对镉从水溶液中的平衡吸收表现出很高的能力。使用吸附等温线对这些材料从水溶液中摄取金属的情况进行了定量评估。马尾藻生物量积累的镉最多,超过 100mg Cd(2+)/g(在残余浓度为 100mg Cd/L 和 pH3.5 的情况下),优于商业离子交换树脂 DUOLITE GT-73。通过甲醛交联增强藻类生物质,获得了一种基于马尾藻生物质的新型生物吸附材料。制备的吸附剂具有良好的机械性能、细胞壁多糖的化学稳定性和低溶胀体积。用 0.1-0.5M HCI 解吸沉积的镉,经过五个连续的吸附/解吸循环,生物吸附剂的金属吸附容量没有变化。生物吸附剂没有损坏,在重复的金属吸附/洗脱循环中保留了其宏观外观和性能。

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