Adsorptive Removal of Heavy Metals by Microalgae

M. Ameri, N. Soltani, L. baftehchi, M. Bolfion, S. Javadi, Ghassam Jalali, M. Dezfulian, B. Bagheri
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引用次数: 2

Abstract

In the present study, the optimization of immobilization structures along with Calothrix sp. and the determination of heavy metals absorption rate have been investigated. Polymers in combination with salts were performed in alginate in order to study the stability of formed structures in cross linking agents. Beads with stable structure in synthesized heavy metal solution inoculated and the adsorption percentage has been recorded. Results showed that the most stable beads were formed in 2 and 3% alginate along with CaCO3 application beside BaCl2 as solidified solution. Reduction of heavy metal in these structures had the most percentage and it was observed that if the incubation time of beads in solidified solution decreased, the percentage of heavy metal reduction would increase to 86%. Although alginate beads showed the highest absorption rate of heavy metal, the presence of Calothrix sp. in all treatments occasionally increased heavy metal absorption up to 15%.
微藻吸附去除重金属的研究
本研究主要研究了金针菇固定结构的优化及重金属吸收率的测定。为了研究交联剂形成的结构的稳定性,在海藻酸盐中进行了聚合物与盐的结合。结构稳定的微珠在合成的重金属溶液中接种,并记录了吸附率。结果表明,在2%和3%海藻酸盐溶液中,CaCO3和BaCl2作为固化溶液,形成最稳定的微球。这些结构中重金属的还原率最高,观察到如果珠粒在固化溶液中的孵育时间缩短,重金属的还原率将提高到86%。虽然藻酸盐珠对重金属的吸收率最高,但在所有处理中,钙思虫的存在偶尔会使重金属吸收率提高15%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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