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Biosorption characteristics of Bacillus cereus B-11 biomass for removal of Ni(II) ions from aqueous solution

机译:蜡状芽孢杆菌B-11生物质对水溶液中Ni(II)离子的吸附特性

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The Ni(II) biosorption characteristics of Bacillus cereus B-11 biomass was examined as a function of initial pH, contact time and initial metal ion concentration. The pseudo-second-order kinetic model was found to be well suited for the entire adsorption process of Ni(II) on B-11. Langmuir and Freundlich models were applied to describe the biosorption isotherm of the nickel ions by B-11 biomass. Langmuir model fitted the equilibrium data better than the Freundlich isotherm, the maximum binding capacity of Ni(II) according to Langmuir isotherm were 88.14 mg/g at pH 6.5, shaker speed 150 rpm, at 27 °C and for 60 min. FTIR spectra showed that the principal functional sites taking part in the sorption process included carboxyl and hydroxyl groups, the mechanism analysis showed that the chemical chelating was the main adsorption form, electrostatic attraction hydrogen bonding and van der Waals forced all function in the process of adsorption. The present study indicated that B-11 biomass may be used as an inexpensive, effective and easily cultivable biosorbent for the removal of Ni(II) ions from environmental and industrial wastewater.
机译:蜡样芽孢杆菌B-11生物量的Ni(II)生物吸附特性作为初始pH,接触时间和初始金属离子浓度的函数进行了检查。发现伪二级动力学模型非常适合Ni(II)在B-11上的整个吸附过程。用Langmuir和Freundlich模型描述了B-11生物量对镍离子的生物吸附等温线。 Langmuir模型比Freundlich等温线拟合的平衡数据更好,根据Langmuir等温线,Ni(II)的最大结合容量在pH 6.5,振动器速度150 rpm,27°C和60分钟的条件下为88.14 mg / g。 FTIR光谱表明,参与吸附过程的主要官能团包括羧基和羟基,机理分析表明,化学螯合是主要的吸附形式,静电吸引氢键和范德华力在吸附过程中全部起作用。 。本研究表明,B-11生物质可作为一种廉价,有效且易于培养的生物吸附剂,用于从环境和工业废水中去除Ni(II)离子。

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