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地木耳的自由生活态、固定化态和无活性生物质在重金属去除中的作用:生物吸附剂生理状态的影响

Role of free living, immobilized and non-viable biomass of Nostoc muscorum in removal of heavy metals: an impact of physiological state of biosorbent.

作者信息

Dixit S, Singh D P

机构信息

Babasaheb Bhimrao Ambedkar University Department of Environmental Science Lucknow India.

Babasaheb Bhimrao Ambedkar University Department of Environmental Science Lucknow India dpsingh_lko@yahoo.com.

出版信息

Cell Mol Biol (Noisy-le-grand). 2014 Dec 24;60(5):110-8.

Abstract

Biosorption of Pb and Cd by using free living, immobilized living and non-viable forms of Nostocmuscorum was studied as a function of pH (3-8), contact time (5-240 min) and metal concentration (10-100 μg ml-1), to find out the most efficient physiological formfor metal removal. Results revealed that optimum conditions for biosorption of both the metals by different states of biosorbentwere almost same (contact time- 30 min, metal concentration- 100 μg ml-1 and pH- 5.1 and 6, for Pb and Cd, respectively) however, the immobilized biomass of N. muscorum was found to be more suitable for the development of an efficient biosorbent as evident from theqmax(1000 mg g-1protein) and Kf (0.08 mg g-1protein) values obtained from the Langmuir and Freundlich isotherms. A pseudo second order kinetics was found more suitable for describing the nature of biosorption of both the metals by all the three forms of N. muscorum. An analysis of correlation revealed that as the metal concentration increases, the removal of Pb and Cd by N. muscorum also increases significantly. The regression analysis showed that the rate of removal of Pb by free living and dead biomass was 1.89 and 1.58 times higher than the rate of removal of Cd by respective biomass. In contrast, the rate of removal of Cd by immobilized biomass was 1.46 times higher than that of Pb.

摘要

研究了游离态、固定化态和非活性态的念珠藻对铅和镉的生物吸附作用,考察了pH值(3 - 8)、接触时间(5 - 240分钟)和金属浓度(10 - 100μg/ml)对生物吸附的影响,以找出最有效的去除金属的生理形态。结果表明,不同状态的生物吸附剂对两种金属的生物吸附最佳条件几乎相同(铅和镉的接触时间均为30分钟,金属浓度均为100μg/ml,铅的pH值为5.1,镉的pH值为6)。然而,从朗缪尔等温线和弗伦德利希等温线得到的qmax(1000mg/g蛋白质)和Kf(0.08mg/g蛋白质)值可以明显看出,念珠藻的固定化生物质更适合开发高效生物吸附剂。发现伪二级动力学更适合描述念珠藻三种形态对两种金属的生物吸附性质。相关性分析表明,随着金属浓度的增加,念珠藻对铅和镉的去除率也显著增加。回归分析表明,游离态和死亡生物质对铅的去除率分别比相应生物质对镉的去除率高1.89倍和1.58倍。相比之下,固定化生物质对镉的去除率比铅高1.46倍。

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