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Improvement of the Wastewater Biodegradability by Means of Photocatalytic and Wet Oxidation Processes in the Presence of Hydrogen Peroxide

机译:在过氧化氢存在下通过光催化和湿式氧化工艺改善废水的生物降解性

摘要

In this study, the effectiveness of photocatalytic oxidation (PO) and wet oxidation (WO) processes as a pre-treatment step on improvement of biodegradability and colour removal of mixture of raw domestic and pre-treated industrial wastewaters, have beenevaluated. More oxygen was obtained by H2O2 (as an oxidant in WO and PO processes) than stoichiometric demand. PO of the wastewater was carried out by illumination of the wastewater with UV lamp (at room temperature, atmospheric pressure, 16.5 h reaction time) and WO of the wastewater was carried out by means of thermal oxidation at autoclave conditions (at 118–120 oC, 1.9–2 bar, 3 h reaction time). 1 g L–1 TiO2 in PO process and 0.2 mg L–1 Cu++ in WO process were used as catalyst. The results obtained from experiments were not compared with each other due to the difference between thequality and quantity of the used catalyst and the consumed energy. Colour removal efficiency was 33 % for WO process and 77.6 % for PO process. By applying WO process, 72.7 % increase in the reaction rate coefficient describing the degradability of organic compounds in wastewater was obtained, but this value was 34.5 % in PO process.
机译:在这项研究中,已经评估了光催化氧化(PO)和湿式氧化(WO)工艺作为预处理步骤的效果,该步骤可提高生物降解性和去除生活污水和预处理工业废水的混合物的颜色。通过H2O2(在WO和PO工艺中作为氧化剂)获得的氧气超过了化学计量需求。废水的PO通过用紫外灯(在室温,大气压,16.5小时的反应时间)照射废水来进行,废水的WO通过在高压釜条件下(118–120 oC)进行热氧化来进行,1.9–2 bar,反应时间3小时)。 PO工艺使用1 g L–1 TiO2,WO工艺使用0.2 mg L–1 Cu ++作为催化剂。由于所用催化剂的质量和数量与所消耗的能量之间存在差异,因此无法将实验所得的结果相互比较。 WO工艺的脱色效率为33%,PO工艺的脱色效率为77.6%。通过采用WO法,反应速率系数增加了72.7%,说明废水中有机化合物的降解性,但在PO法中该值为34.5%。

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