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首页> 外文期刊>Zeitschrift fur Physikalische Chemie: International Journal of Research in Physical Chemistry and Chemical Physics >Removal of Cadmium (II) from Aqueous Medium Using Vigna radiata Leave Biomass: Equilibrium Isotherms, Kinetics and Thermodynamics
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Removal of Cadmium (II) from Aqueous Medium Using Vigna radiata Leave Biomass: Equilibrium Isotherms, Kinetics and Thermodynamics

机译:使用Vigna Radiata离开生物量的水性培养基中除去镉(II):平衡等温,动力学和热力学

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摘要

In the present study, a novel biosorbent Vigna radiata leaves biomass (L. biomass) was utilized for cadmium (II) extraction from aqueous medium. Cadmium (II) free and cadmium (II) loaded L. biomass was analyzed by Fourier transform infrared (FTIR) spectroscopy. Adsorption of cadmium (II) from aqueous medium was studied under various conditions such as adsorbent dose, agitation time, pH and temperature of the medium to optimize the process variables. Different models including Langmuir, Freundlich, Temkin and Dubinin–Radushkevich (DR) were used to elaborate the insight of adsorption process. Best interpretation of biosorption process was given by Langmuir model. Value of maximum adsorption capacity (qm) calculated from Langmuir isotherm model was found to be 13.44 mg/g. Results indicated the establishment of physical interaction between cadmium (II) ions and functional groups of L. biomass. Kinetic study for adsorption of cadmium (II) ions on L. biomass was done by applying pseudo first order, pseudo second order, elovich and intra-particles diffusion models. Biosorption process best followed the pseudo second order kinetics. Value of standard Gibbs energy (ΔG°) and standard enthalpy change (ΔH°) showed the feasibility, spontaneity and endothermic nature of adsorption process. Percentage removal efficiency of L. biomass for cadmium (II) was successfully maintained for four cycles. Biomass has a potential to be used as an efficient adsorbent for the removal of cadmium (II) from different polluted water samples.
机译:在本研究中,一种新的生物吸附豇豆辐射成因生物量(L.生物量)用于从水性介质中萃取镉(II)。通过傅里叶变换红外(FTIR)光谱分析镉(II)镉(II)加载的L.生物质。在各种条件下研究来自水性介质的镉(II)的吸附,例如吸附剂剂量,搅拌时间,pH和培养基的温度,以优化工艺变量。包括Langmuir,Freundlich,Temkin和Dubinin-Radushkevich(DR)在内的不同模型用于详细说明吸附过程的见解。 Langmuir模型给出了生物吸附过程的最佳解释。从Langmuir等温模型计算的最大吸附容量(QM)的值被发现为13.44mg / g。结果表明,镉(II)离子与L.生物质的官能团之间的物理相互作用的建立。通过施加伪第一阶,伪二阶,ELOVICH和颗粒内扩散模型来完成对L.生物质的镉(II)离子的吸附的动力学研究。生物吸附过程最能遵循伪二阶动力学。标准GIBBS能量(ΔG°)和标准焓变(ΔH°)的价值显示了吸附过程的可行性,自发性和吸热性质。 L.生物量的百分比去除效率成功地保持了四个循环。生物质具有用作从不同污染水样中除去镉(II)的有效吸附剂的潜力。

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