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首页> 外文期刊>Biosciences Biotechnology Research Asia >Biosorptive Removal of Lead (II), Cadmium (II) and Arsenic (III) from Aqua Media on Vigna Unguiculata Leaf Powders
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Biosorptive Removal of Lead (II), Cadmium (II) and Arsenic (III) from Aqua Media on Vigna Unguiculata Leaf Powders

机译:来自Vigna Unguiculata叶粉的Aqua Media的铅(II),镉(II)和砷(III)的生物定位去除

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摘要

The biosorption of Cd (H), As (III) and Pb (II) ions from solution utilizing Vigna unguiculata leaf powders (VULP) as a low cost biosorbent was studied. The influence of temperature, metal ion concentration, biosorbent dose, contact time and pH on thesequestration process was examined by batch procedure. Increase in the biosorption of the three metal ions with increased pH and biosorbent dosage was obtained in this study.Equilibrium contact time of 20,40 and 50min was achieved for Cd(H), As (III) and Pb(H) ions and biosorption was in the order As(IH)> Cd(II) >Pb(II). Isotherm analysis was performed by the application of Langmuir, Freundlich, Flory-Huggins and Scatchard models. The Langmuir model gave the best fit with maximum monolayer biosorptioncapacity of 109.1,105 and 119.3 mg/g for Cd (H), Pb (H) and As (III) respectively. Scatchard model confirmed a homogenous surface of VULP and monolayer biosorption of metal ions. Pseudo second order model showed the best fit compared to pseudo first order, Elovich and Banghams kinetic models according to kinetic analysis. Thermodynamics study revealed a feasibly, spontaneous exothermic biosorption process. The result showed good potentials of VULP as suitable cheap biosorbent for attenuation of Cd fll),Pb(n) and As (in) ions from polluted wastewaters.
机译:研究了利用Vigna Unguiculata叶片粉末(ZHSP)作为低成本生物吸附剂的溶液中的CD(H),AS(III)和Pb(II)离子的生物吸附。通过批次方法检查温度,金属离子浓度,生物吸附剂剂量,接触时间和pH对这些测量过程的影响。在本研究中获得三种金属离子的生物吸收的生物吸收。在该研究中获得了增强的pH和生物吸附剂量。对于CD(H),AS(III)和PB(H)离子和生物吸附,实现了20,40和50min的高纤维接触时间按顺序(IH)> CD(II)> PB(II)。通过应用Langmuir,Freundlich,Flory-Huggins和Scatchard模型进行等温分析。 Langmuir模型分别给出了最大的单层生物吸收性,分别为CD(H),PB(H)和AS(III)的最大单层生物吸收处理。 Scatchard模型证实了金属离子的偏大和单层生物吸附的均匀表面。伪二阶模型与伪第一订单,ELOVICH和BANGHAMS动力学模型相比,伪二阶模型显示出最合适。热力学研究揭示了一种可行性,自发的放热生物吸附过程。结果表明,脓散潜力为适当的廉价生物吸附剂,用于衰减CD FLL),Pb(n)和来自污染废水的离子。

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