Maugans Clayton B, Akgerman Aydin
Chemical Engineering Department, Texas A&M University, College Station, TX 77843-3122, USA.
Water Res. 2003 Jan;37(2):319-28. doi: 10.1016/s0043-1354(02)00289-0.
Catalytic wet oxidation of phenol was studied in a batch and a trickle bed reactor using 4.45% Pt/TiO2 catalyst in the temperature range 150-205 degrees C. Kinetic data were obtained from batch reactor studies and used to model the reaction kinetics for phenol disappearance and for total organic carbon disappearance. Trickle bed experiments were then performed to generate data from a heterogeneous flow reactor. Catalyst deactivation was observed in the trickle bed reactor, although the exact cause was not determined. Deactivation was observed to linearly increase with the cumulative amount of phenol that had passed over the catalyst bed. Trickle bed reactor modeling was performed using a three-phase heterogeneous model. Model parameters were determined from literature correlations, batch derived kinetic data, and trickle bed derived catalyst deactivation data. The model equations were solved using orthogonal collocations on finite elements. Trickle bed performance was successfully predicted using the batch derived kinetic model and the three-phase reactor model. Thus, using the kinetics determined from limited data in the batch mode, it is possible to predict continuous flow multiphase reactor performance.
在间歇式反应器和滴流床反应器中,使用4.45%的Pt/TiO₂催化剂,在150 - 205℃的温度范围内研究了苯酚的催化湿式氧化。从间歇式反应器研究中获得动力学数据,并用于模拟苯酚消失和总有机碳消失的反应动力学。然后进行滴流床实验,以从非均相流动反应器中生成数据。在滴流床反应器中观察到催化剂失活,尽管确切原因尚未确定。观察到失活随通过催化剂床的苯酚累积量呈线性增加。使用三相非均相模型对滴流床反应器进行建模。模型参数由文献关联、间歇式实验得出的动力学数据以及滴流床实验得出的催化剂失活数据确定。使用有限元上的正交配置法求解模型方程。使用间歇式实验得出的动力学模型和三相反应器模型成功预测了滴流床的性能。因此,利用在间歇模式下从有限数据确定的动力学,有可能预测连续流多相反应器的性能。