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利用藻类去除废水中重金属离子的研究进展与展望

Use of algae for removing heavy metal ions from wastewater: progress and prospects.

作者信息

Mehta S K, Gaur J P

机构信息

Laboratory of Algal Biology, Department of Botany, Banaras Hindu University, Varanasi, India.

出版信息

Crit Rev Biotechnol. 2005 Jul-Sep;25(3):113-52. doi: 10.1080/07388550500248571.

Abstract

Many algae have immense capability to sorb metals, and there is considerable potential for using them to treat wastewaters. Metal sorption involves binding on the cell surface and to intracellular ligands. The adsorbed metal is several times greater than intracellular metal. Carboxyl group is most important for metal binding. Concentration of metal and biomass in solution, pH, temperature, cations, anions and metabolic stage of the organism affect metal sorption. Algae can effectively remove metals from multi-metal solutions. Dead cells sorb more metal than live cells. Various pretreatments enhance metal sorption capacity of algae. CaCl2 pretreatment is the most suitable and economic method for activation of algal biomass. Algal periphyton has great potential for removing metals from wastewaters. An immobilized or granulated biomass-filled column can be used for several sorption/desorption cycles with unaltered or slightly decreased metal removal. Langmuir and Freundlich models, commonly used for fitting sorption data, cannot precisely describe metal sorption since they ignore the effect of pH, biomass concentration, etc. For commercial application of algal technology for metal removal from wastewaters, emphasis should be given to: (i) selection of strains with high metal sorption capacity, (ii) adequate understanding of sorption mechanisms, (iii) development of low-cost methods for cell immobilization, (iv) development of better models for predicting metal sorption, (v) genetic manipulation of algae for increased number of surface groups or over expression of metal binding proteins, and (vi) economic feasibility.

摘要

许多藻类具有巨大的金属吸附能力,利用它们处理废水具有相当大的潜力。金属吸附涉及在细胞表面和细胞内配体上的结合。吸附的金属比细胞内金属大几倍。羧基对金属结合最为重要。溶液中金属和生物量的浓度、pH值、温度、阳离子、阴离子以及生物体的代谢阶段都会影响金属吸附。藻类能够有效地从多金属溶液中去除金属。死细胞比活细胞吸附更多的金属。各种预处理可提高藻类的金属吸附能力。氯化钙预处理是激活藻类生物量最合适且经济的方法。藻类周丛生物具有从废水中去除金属的巨大潜力。固定化或颗粒状生物量填充柱可用于多个吸附/解吸循环,金属去除率不变或略有下降。常用于拟合吸附数据的朗缪尔模型和弗伦德利希模型无法精确描述金属吸附,因为它们忽略了pH值、生物量浓度等的影响。对于藻类技术从废水中去除金属的商业应用,应着重于:(i)选择具有高金属吸附能力的菌株;(ii)充分了解吸附机制;(iii)开发低成本的细胞固定化方法;(iv)开发更好的预测金属吸附的模型;(v)对藻类进行基因操作以增加表面基团数量或金属结合蛋白的过表达;(vi)经济可行性。

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