首页> 外文期刊>Colloids and Surfaces, B. Biointerfaces >Biosorption of lead(II) from aqueous solutions by non-living algal biomass Oedogonium sp and Nostoc sp - A comparative study
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Biosorption of lead(II) from aqueous solutions by non-living algal biomass Oedogonium sp and Nostoc sp - A comparative study

机译:非生物藻类生物Oedogonium sp和Nostoc sp对水溶液中铅(II)的生物吸附-对比研究

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Industrial wastewaters containing heavy metals pose a major environmental problem that needs to be remedied. The present study reports the ability of two non-living (dried) fresh water algae, Oedogonium sp. and Nostoc sp. to remove lead(II) from aqueous solutions in batch system under varying range of pH (2.99-7.04), contact time (5-300 min), biosorbent dose (0.1-0.8 g/L), and initial metal ion concentrations (100 and 200 mg/L). The optimum conditions for lead biosorption are almost same for the two algal biomass Oedogonium sp. and Nostoc sp. (pH 5.0, contact time 90 and 70 min, biosorbent dose 0.5 g/L and initial Pb(II) concentration 200 mg/L) however, the biomass of Oedogonium sp. was found to be more suitable than Nostoc sp. for the development of an efficient biosorbent for the removal of lead(II) from aqueous solutions, as it showed higher values of q(e) adsorption capacity (145.0 mg/g for Oedogonium sp. and 93.5 mg/g for Nostoc sp.). The equilibrium data fitted well in the Langmuir isotherms than the Freundlich isotherm, thus proving monolayer adsorption of lead on both the algal biomass. Analysis of data shows that the process involves second-order kinetics and thermodynamic treatment of equilibrium data shows endothermic nature of the adsorption process. The spectrum of FTIR confirms that the amino and carboxyl groups on the surface of algal biomass were the main adsorption sites for lead removal. Both the biosorbents could be regenerated using 0.1 mol/L HCl solution, with upto 90% recovery. The biosorbents were reused in five biosorption-desorption cycles without a significant loss in biosorption capacity. Thus, this study demonstrated that both the algal biomass could be used as an efficient biosorbents for the treatment of lead(II) bearing wastewater streams. (c) 2008 Elsevier B.V. All rights reserved.
机译:包含重金属的工业废水带来了主要的环境问题,需要解决。本研究报告了两种无生命(干燥)的淡水藻Oedogonium sp。的能力。和Nostoc sp。在不同pH值(2.99-7.04),接触时间(5-300分钟),生物吸附剂量(0.1-0.8 g / L)和初始金属离子浓度(100)范围内从批次系统的水溶液中去除铅(II)和200 mg / L)。对于两种藻类生物量Oedogonium sp,铅生物吸附的最佳条件几乎相同。和Nostoc sp。 (pH 5.0,接触时间90和70分钟,生物吸附剂剂量为0.5 g / L,初始Pb(II)浓度为200 mg / L)。被发现比Nostoc sp。更合适。用于开发一种有效的生物吸附剂以从水溶液中去除铅(II),因为它显示出更高的q(e)吸附容量值(Oedogonium sp。的吸附量为145.0 mg / g,Nostoc sp。的吸附量为93.5 mg / g) 。平衡数据比弗氏等温线更适合Langmuir等温线,因此证明了藻类生物量中铅的单层吸附。数据分析表明,该过程涉及二级动力学,而热力学处理的平衡数据表明吸附过程具有吸热性。 FTIR光谱证实藻类生物质表面的氨基和羧基是去除铅的主要吸附位点。两种生物吸附剂均可使用0.1 mol / L HCl溶液进行再生,回收率高达90%。该生物吸附剂可在五个生物吸附-解吸循环中重复使用,而不会显着降低生物吸附能力。因此,该研究表明,两种藻类生物质均可用作处理含铅(II)废水流的有效生物吸附剂。 (c)2008 Elsevier B.V.保留所有权利。

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