Lin S H, Wang C H
Department of Chemical Engineering, Yuan Ze University, Chungli 320, Taiwan, ROC.
Environ Technol. 2003 Aug;24(8):1031-9. doi: 10.1080/09593330309385642.
Phenolic wastewater treatment in a new ozone reactor was investigated. The reactor was designed in such a fashion that gas induction was created in the reactor headspace by the high-speed action of an impeller turbine inside a draft tube to maximize the ozone utilization. Another important feature of the present reactor design was incorporation of granular activated carbon bed in a circular compartment between the reactor wall and the shaft tube. The fixed granular activated carbon bed was observed to significantly enhance the phenol decomposition and the chemical oxygen demand removal when compared to gas-induced ozonation alone, providing evidence of the synergistic effects of adsorption, catalytic reaction and ozonation. In addition to the enhanced phenol decomposition and chemical oxygen demand, ozonation was found to provide in-situ regeneration of granular activated carbon which was considered crucial in the present reaction system. Kinetic investigations were also made using a proposed complex kinetic model in an attempt to elucidate the possible decomposition reaction mechanisms of the present gas-induced ozonation system.
对新型臭氧反应器中酚类废水处理进行了研究。该反应器的设计方式是,通过导流管内叶轮涡轮的高速作用在反应器顶部空间产生气体诱导,以最大限度地提高臭氧利用率。本反应器设计的另一个重要特点是在反应器壁和轴管之间的圆形隔室中加入了颗粒活性炭床。与单独的气体诱导臭氧化相比,观察到固定的颗粒活性炭床显著提高了苯酚分解率和化学需氧量去除率,这证明了吸附、催化反应和臭氧化的协同效应。除了提高苯酚分解率和化学需氧量外,还发现臭氧化可实现颗粒活性炭的原位再生,这在本反应体系中被认为至关重要。还使用提出的复杂动力学模型进行了动力学研究,试图阐明本气体诱导臭氧化系统可能的分解反应机理。