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首页> 外文期刊>Indian Journal of Science and Technology >Investigation of the Biosorption Mechanisms of Methylene Blue onto Press Mud through Kinetic Modeling Analysis
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Investigation of the Biosorption Mechanisms of Methylene Blue onto Press Mud through Kinetic Modeling Analysis

机译:动力学模型分析研究亚甲基蓝在压榨泥浆上的生物吸附机理

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This research deals with the highly available sugar industry waste material, press mud as low cost biosorbent for the removal of textile dyestuff from aqueous medium, and the investigation of the probably involved physiochemical mechanisms. Experiments were carried out in batch reactor. The results of equilibrium studies showed that equilibrium state was reached within 48 h of exposure time and maximum biosorption taken place at the biosorbent dosage of 30 mg/ml of solution. Secondly, several biosorption kinetic models were applied to fit the experimental data, namely Lagergren irreversible first-order, Reversible first-order, Pseudo-second-order, Elovich and intraparticle diffusion models. The proposed explanations were deduced from the theoretical assumptions behind the most appropriate model(s), which could satisfactorily describe the present biosorption phenomenon. The interpretation of the related results have shown that, with R 2 of about 99%, the pseudo-second order model is the most suitable dynamic theory describing the biosorption of dye onto press mud predicting therefore a chemisorption process.
机译:这项研究涉及糖业中高度可用的废料,压泥作为低成本生物吸附剂以从水性介质中去除纺织品染料,并研究可能涉及的理化机理。实验在间歇反应器中进行。平衡研究的结果表明,在暴露时间的48小时内达到平衡状态,并且在30 mg / ml溶液的生物吸附剂量下发生了最大的生物吸附。其次,应用了几种生物吸附动力学模型来拟合实验数据,即Lagergren不可逆一阶,可逆一阶,伪二阶,Elovich和粒子内扩散模型。拟议的解释是从最合适的模型后面的理论假设推导出来的,该模型可以令人满意地描述当前的生物吸附现象。对相关结果的解释表明,在R 2约为99%的情况下,伪二级模型是最合适的动力学理论,它描述了染料在压泥上的生物吸附,从而预测了化学吸附过程。

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