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Biosorption of Cr(VI) and Zn(II) ions from aqueous solution onto the solid biodiesel waste residue: mechanistic, kinetic and thermodynamic studies

机译:水溶液中Cr(VI)和Zn(II)离子到固体生物柴油废渣上的生物吸附:机理,动力学和热力学研究

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摘要

In this present study, the biosorption of Cr(VI) and Zn(II) ions from synthetic aqueous solution on defatted Jatropha oil cake (DJOC) was investigated. The effect of various process parameters such as the initial pH, adsorbent dosage, initial metal ion concentration and contact time has been studied in batch-stirred experiments. Maximum removal of Cr(VI) and Zn(II) ions in aqueous solution was observed at pH 2.0 and pH. 5.0, respectively. The removal efficiency of Cr(VI) and Zn(II) ions from the aqueous solution was found to be 72.56 and 79.81 %, respectively, for initial metal ion con centration of 500 mg/L at 6 g/L dosage concentration. The biosorbent was characterized by Fourier transform infrared, scanning electron microscopy and zero point charge. Equilibrium data were fitted to the Langmuir, Freundlich, Temkin and Dubinin-Radushkevich isotherm models and the best fit is found to be with the Freundlich isotherm for both Cr(VI) and Zn(II) metal ions. The kinetic data obtained at different metal ion concentration have been analysed using the pseudo-first-order, pseudo-second-order and intraparticle diffusion models and were found to follow the pseudo-second-order kinetic model. The values of mass transfer diffusion coefficients (D_e) were determined by Boyd model and com pared with literature values. Various thermodynamicparameters, such as ΔG°, ΔH° and ΔS°, were analysed using the equilibrium constant values (K_e) obtained from experimen tal data at different temperatures. The results showed that biosorption of Cr(VI) and Zn(II) ions onto the DJOC system is more spontaneous and exothermic in nature. The results indicate that DJOC was shown to be a promising adsorbent for the removal of Cr(VI) and Zn(II) ions from aqueous solution.
机译:在本研究中,研究了脱脂麻风树油饼(DJOC)对合成水溶液中Cr(VI)和Zn(II)离子的生物吸附。在分批搅拌实验中研究了各种工艺参数(例如初始pH,吸附剂剂量,初始金属离子浓度和接触时间)的影响。在pH 2.0和pH下观察到水溶液中Cr(VI)和Zn(II)离子的最大去除。 5.0。发现在6 g / L剂量浓度下初始金属离子浓度为500 mg / L时,从水溶液中去除Cr(VI)和Zn(II)离子的效率分别为72.56和79.81%。通过傅里叶变换红外,扫描电子显微镜和零点电荷对生物吸附剂进行表征。将平衡数据拟合到Langmuir,Freundlich,Temkin和Dubinin-Radushkevich等温线模型,发现最佳拟合是对于Cr(VI)和Zn(II)金属离子的Freundlich等温线。使用伪一级,伪二级和粒子内扩散模型分析了在不同金属离子浓度下获得的动力学数据,发现它们遵循伪二级动力学模型。传质扩散系数(D_e)的值由Boyd模型确定,并与文献值进行比较。使用从不同温度下的实验数据获得的平衡常数值(K_e)分析了各种热力学参数,例如ΔG°,ΔH°和ΔS°。结果表明,Cr(VI)和Zn(II)离子在DJOC系统上的生物吸附更加自然,并且放热。结果表明,DJOC被证明是一种从水溶液中去除Cr(VI)和Zn(II)离子的有前途的吸附剂。

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