油烃在陶瓷表面吸附的热力学研究

Ahmed Y. Hammood, Abdalhussein A. Khwedem, Ahmed M. Zaidan, A. Hantoush
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摘要

本文研究了以瓷为吸附剂表面对水溶液中碳氢化合物的去除,并研究了影响吸附过程的因素,如接触时间、溶液中初级碳氢化合物浓度、吸附剂粒径和溶液温度。采用间歇法对烃类进行脱除。结果表明,随着吸附温度的升高,吸附烃的数量增加,吸附时间为30min,达到有效脱烃的平衡时间。结果表明,瓷粉对烃类的去除率为41.61%,吸附量为83.22(mg/g)。吸附过程的结果更符合Friendlich模型,而不是Langmuir吸附模型。热力学研究表明,ΔH为吸热,ΔG在浓度较低时为负,浓度增加时变为正,ΔS为正。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Thermodynamics Study of Adsorption of Oil Hydrocarbons from aqueous solutions onto the Porcelanite Surface
    This work describes removal of hydrocarbons from aqueous solution using porcelanite as an adsorbent surface with investigation of  some factors that affect on adsorption process of the hydrocarbons such as  contact time, primary hydrocarbons concentration in the solution, adsorbent particle size and temperature of the solution. Removal of hydrocarbons was conducted using  the batch method. From the obtained results, it was found that, the quantity of adsorbed  hydrocarbons was  increased with   increase in adsorption temperature .Equilibrium time was attained at 30min for efficient removal of hydrocarbons. Removal percentage of  hydrocarbons over  porcelanite powder was found to be 41.61% and the amount of adsorbed hydrocarbons over porcelanite was  83.22(mg/g). The results of    adsorption processes were more fitted   with   Friendlich model rather  than   Langmuir adsorption model. Thermodynamic study showed that,  ΔH was endothermic, ΔG at the values were negative at lower concentrations and then turned positive when concentrations increased and  ΔS was found to be positive.  
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