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Adsorptive Desulfurization of Organic Sulfur from Model Fuels by Active Carbon Supported Mn (II): Equilibrium, Kinetics, and Thermodynamics

机译:用活性炭支持Mn(II)中的模型燃料的有机硫的吸附脱硫:平衡,动力学和热力学

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Mn (II)/AC adsorbents were prepared by ultrasonic impregnation. The 2?wt. % Mn/AC showed best adsorptive performance, and the optimal adsorption temperature was 313?K. Benzene, methylbenzene, and naphthalene were used to explore the adsorptive selectivity of Mn/AC, indicating that Mn could enhance the adsorptive capacity but could not improve the adsorptive selectivity. The adsorptive mechanism was mostly like to be π-complex. Adsorptive isotherms and kinetics were investigated, and the parameters were calculated. The R2, RMSE, and AICc were used to assess the optimal model. The results showed that Temkin adsorptive isotherm was more suitable to describe the isothermal data; the MPnO kinetics model was more superior to other kinetic models. The order of reaction was between 1 and 2. The outcome of adsorptive thermodynamics indicated that removal of DBT onto Mn/AC was a spontaneous and exothermic process.
机译:通过超声浸渍制备Mn(II)/ AC吸附剂。 2?wt。 %Mn / Ac显示出最佳的吸附性能,最佳吸附温度为313Ω·k。使用苯,甲苯和萘用于探讨Mn / Ac的吸附选择性,表明Mn可以增强吸附容量,但不能提高吸附性选择性。吸附机制主要是是π复合物。研究了吸附等温线和动力学,并计算参数。 R2,RMSE和AICC用于评估最佳模型。结果表明,Temkin吸附等温线更适合描述等温数据; MPNO动力学模型更优于其他动力学模型。反应顺序在1和2之间。吸附热力学的结果表明,将DBT移除到Mn / Ac上是一种自发性和放热过程。

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