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Treatment of wastewater containing o-phenylenediamine by ozone in a rotor-stator reactor

机译:转子-定子反应器中臭氧处理含邻苯二胺的废水

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This work employed a novel rotor-stator reactor (RSR) to intensify the degradation process of o-phenylenediamine (o-PDA) by ozone. The effects of different operating parameters including initial pH, temperature, rotation speed, liquid volumetric flow rate and inlet ozone concentration on the removal efficiency of o-PDA were investigated in an attempt to establish the optimum conditions. The removal efficiency was evaluated in terms of degradation ratio and chemical oxygen demand (COD) reduction ratio of the o-PDA wastewater. Results indicate that the removal efficiency decreased with increasing liquid volumetric flow rate but increased with an increase in pH and inlet ozone concentration. Also, the removal efficiency increased up to a certain level with an increase in rotation speed and temperature. Additionally, a comparison experiment was carried out in a stirred tank reactor (STR), and the results show that the degradation and COD reduction ratios reached a maximum of 94.6% and 61.2% in the RSR as compared to 45.3% and 28.6% in the STR, respectively. This work demonstrates that ozone oxidation carried out in RSR may be a promising alternative for pre-treatment of o-PDA wastewater.
机译:这项工作采用了新颖的转子-定子反应器(RSR)来增强臭氧对邻苯二胺(o-PDA)的降解过程。为了建立最佳条件,研究了初始pH,温度,转速,液体体积流量和入口臭氧浓度等不同操作参数对o-PDA去除效率的影响。根据o-PDA废水的降解率和化学需氧量(COD)减少率评估了去除效率。结果表明,去除效率随液体体积流量的增加而降低,但随pH和入口臭氧浓度的增加而提高。而且,随着旋转速度和温度的增加,去除效率增加到一定水平。此外,在搅拌釜反应器(STR)中进行了对比实验,结果表明,RSR的降解率和COD还原率最高,分别达到94.6%和61.2%,而RSR的降解率和COD降低率分别为45.3%和28.6%。 STR,分别。这项工作表明,在RSR中进行的臭氧氧化可能是o-PDA废水预处理的有前途的替代方法。

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