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Biosorption of cadmium metal ions on raw and chemically modified walnut shells

机译:生物吸附的镉金属离子在原材料上化学改性胡桃壳

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摘要

The abundantly available agricultural waste product walnut shells were treated with alkali for enhancement in adsorptive capacity for Cd(II) ions. The raw walnut shells (RWS) and alkali treated walnut shells (AWS) were characterized for functional groups and morphological changes using FTIR and SEM analysis. The adsorption increased drastically between pH 2 and 6. The Langmuir isotherm model provided a better fit with the experimental data than Freundlich by giving high correlation coefficients. The biosorption capacity of RWS and AWS for Cd(II) ions was found to be 4.20 and 14.29 mgg(-1), respectively. Dubinin-Radushkevich (D-R) isotherm model was used to find out the mean adsorption energy. The adsorption followed pseudo-second order kinetics, suggesting monolayer coverage and a chemisorption process. The thermodynamic parameters including change in free energy (G), enthalpy (H), and entropy (S) were derived. Negative value of G confirmed spontaneity of biosorption. Desorption efficiency showed no significant decrease till third cycle. (c) 2015 American Institute of Chemical Engineers Environ Prog, 34: 1613-1619, 2015
机译:可用的大量农业废弃物产品胡桃壳与碱治疗吸附能力增强的Cd (2)离子。胡桃壳特征(AWS)治疗官能团和形态学变化利用红外光谱和扫描电镜分析。pH值2和6之间的大幅增加。朗缪尔等温线模型提供了一个更好的选择与实验数据比弗伦德里希给予较高的相关系数。生物吸附能力的遥控武器站和AWS Cd (2)离子被发现4.20和14.29“万人迷”女友(1),分别。模型被用来找出平均吸附能量。订单动力学,表明单层覆盖和一个化学吸收作用的过程。参数包括自由能的变化(G),焓(H),并获得了熵(S)。G确认自发性的负面价值生物吸附。显著下降,直到第三周期。美国化学工程师学会环境34岁的食物:1613 - 1619,2015

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