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Thermodynamics and kinetics of cadmium adsorption onto oxidized granular activated carbon

机译:镉吸附在氧化颗粒活性炭上的热力学和动力学

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Cadmium sorption behavior of granular activated carbon oxidized with nitric acid was systematically studied by sets of the equilibrium and time-based experiments under various conditions. The cadmium adsorption capacity of oxidized granular activated carbon enlarged with an increase in pH, and reduced with an increase in ionic strength. Experimental data were evaluated to find out kinetic characteristics. Adsorption processes were found to follow pseudo-second order rate equation. Adsorption isotherms correlate well with the Langmuir isotherm model and the maximum sorption capacity of cadmium evaluated is 51.02 μmol/g. Thermodynamic parameters were calculated based on Van't Hoff equation. Equilibrium constant K_d was evaluated from Freundlich isotherm model constants, Langmuir isotherm model constants, and isotherms, respectively. The average change of standard adsorption heat △H~0 was -25.29 kJ/mol. Negative △H~0 and △G~0 values indicate the adsorption process for cadmium onto the studied activated carbon is exothermic and spontaneous. The standard entropy △S~0 was also negative, which suggests a decrease in the freedom of the system.
机译:通过各种条件下的平衡和基于时间的实验,系统地研究了硝酸氧化的颗粒状活性炭对镉的吸附行为。氧化颗粒活性炭对镉的吸附能力随pH值的增加而增大,而随离子强度的增加而减小。对实验数据进行评估以找出动力学特征。发现吸附过程遵循伪二级速率方程。吸附等温线与Langmuir等温线模型具有很好的相关性,所评估的镉的最大吸附容量为51.02μmol/ g。根据Van't Hoff方程计算热力学参数。平衡常数K_d分别从Freundlich等温线模型常数,Langmuir等温线模型常数和等温线评估。标准吸附热△H〜0的平均变化为-25.29kJ / mol。 △H〜0和△G〜0均为负值,表明镉在被研究的活性炭上的吸附过程是放热的和自发的。标准熵△S〜0也为负,表明系统自由度降低。

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