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Comparative biosorption study of Hg (II) using raw and chemically activated almond shell

机译:使用原料和化学活化杏仁壳的HG(II)的比较生物吸附研究

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This work presents a comparison between the biosorption of Hg (II) by raw almond shell and activated almond shell. Almond shell based activated carbon has been obtained by physicochemical activation. Batch biosorption results confirmed that, activating condition has a strong influence on the final biosorption process. The biosorbent was characterized using scanning electron microscopy and Fourier transform infrared spectroscopy. To optimize the biosorption conditions pH, adsorbent dose, initial concentration, contact time, stirring speed, and temperature on Hg (II) removal were studied. The optimum conditions for maximum Hg (II) was achieved at 20 and 10min for raw almond shell and activated almond shell, respectively. The equilibrium data were described well by Langmuir, Freundlich, Dubinin-Radushkevich isotherm models and appling a test of model fitness. Best fit of Langmuir and Freundlich models were found for experimental data, which reveal the homogenous surface of raw almond shell and the heterogeneity of activated almond shell surface. The kinetic data had been divided into either pseudo first order or second order on the basis of the best fit obtained from calculations, confirmed by a test of kinetic validity. An industrial application was examined to improve high biosorption capacity of raw and activated almond shells toward Hg (II).
机译:本作品呈现了原料杏仁壳和活化杏仁壳的HG(II)生物吸附之间的比较。基于杏仁壳的活性炭通过物理化学激活获得。批量生物吸附结果证实,激活条件对最终的生物吸附过程产生了强烈影响。使用扫描电子显微镜和傅里叶变换红外光谱表征生物吸附剂。为了优化生物吸附条件pH,研究了吸附剂剂量,初始浓度,接触时间,搅拌速度和HG(II)的去除。最大HG(II)的最佳条件分别用于20和10min,分别用于原料杏仁壳和活性杏仁壳。 Langmuir,Freundlich,Dubinin-Radushkevich等温线模型和模型健身的测试,描述了均衡数据。发现了Langmuir和Freundlich模型的最佳拟合实验数据,揭示了原料杏仁壳的均匀表面和活性杏仁壳表面的异质性。基于从计算中获得的最佳拟合,动力学数据被分为伪第一订单或二阶,通过动力学有效性证实。研究了产业申请,以提高原料和活化杏仁壳的高生物吸收能力朝向HG(II)。

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