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首页> 外文期刊>Journal of Molecular Liquids >Adsorption of methylene blue onto citric acid treated carbonized bamboo leaves powder: Equilibrium, kinetics, thermodynamics analyses
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Adsorption of methylene blue onto citric acid treated carbonized bamboo leaves powder: Equilibrium, kinetics, thermodynamics analyses

机译:将亚甲蓝的吸附在柠檬酸处理碳化竹叶粉末:平衡,动力学,热力学分析

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AbstractIn this article, the adsorption of methylene blue (MB) from its aqueous solution onto citric acid treated carbonized bamboo leaves powder as an adsorbent is reported. The adsorbent was characterized by determining the density, pHpzc(6.6), particle size (32.53μm), and was analyzed by SEM, BET (surface area 393.3m2/g) and FTIR. Batch experiments were performed as a function of various operating parameters - initial concentration (100 to 400mg/L), contact time (10 to 100min), adsorbent dose (0.2 to 1.4g/L), shaker speed (50 to 350rpm) and temperature (290 to 305K) at natural pH of 7.5. The batch data followed Temkin isotherm amongst seven isotherms and pseudo-second order kinetic model. Further, analysis of batch data upon various diffusion models indicated that film diffusion was controlling the rate though intra-particle diffusion was taking place. Thermodynamic parameters (ΔG0: ?33.70 to ?25.43kJ/mol; ΔH0: 134.97kJ/mol; ΔS0: 554.51J/mol·K) revealed spontaneity of adsorption and the nature was chemisorption which also followed the activation energy (84.07 to 98.90kJ/mol) estimated from pseudo-second order rate constant as a function of temperature. Novelties achieved were - higher removal of MB (99.97%), higher adsorption capacity (725mg/g), final solution pH well within the safe discharge limit. Besides, the seasonal variation was used to investigate the temperature effect in a novel manner.展开▼
机译:<![cdata [ 抽象 在本文中,将亚甲基蓝(MB)的吸附从其水溶液中的柠檬酸处理的碳化竹叶中的吸附报道了作为吸附剂的粉末。通过测定密度,pH PZC (6.6),粒径(32.53μm),并通过SEM,BET(表面积393.3M)分析 2 / g)和ftir。作为各种操作参数的函数进行批量实验 - 初始浓度(100至400mg / L),接触时间(10至100min),吸附剂量(0.2至1.4g / L),振动速度(50至350rpm)和温度(290至305K)在7.5的天然pH值。批处理数据是Temkin等温器之间的七个等温线和伪二阶动力学模型。此外,在各种扩散模型上分析批量数据表明,薄膜扩散是控制速率的速率,但是颗粒颗粒扩散。热力学参数(ΔG 0 :?33.70至25.43kj / mol;Δh 0 : 134.97kj / mol;Δs 0 :554.51j / mol·k)显示出的吸附性,并且性质也是化学吸收,其也遵循活化能量(84.07至98.90 KJ / Mol)根据温度函数估计伪二次阶率常数。达到的Noveltize培养 - 去除Mb(99.97%),吸附容量较高(725mg / g),最终溶液pH在安全放电极限内。此外,季节性变化用于以新颖的方式研究温度效应。

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