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Treatment of petroleum refinery wastewater by microwave-assisted catalytic wet air oxidation under low temperature and low pressure

机译:低温低压微波辅助催化湿式氧化处理炼油废水

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A microwave (MW)-assisted catalytic wet air oxidation (CWAO) process under low temperature (150 °C) and low pressure (0.8 MPa) was investigated to treat heavily contaminated petroleum wastewater from oil refining industry. The MW-CWAO experiments were carried out in a reconstructive MW autoclave, using GAC (5 wt.%) as catalyst. The experimental temperature was kept at 150°C and oxygen was supplied into reactive system with 0.8 MPa pressure. The results demonstrated that more than 90% of chemical oxygen demand (COD) removal was obtained and the biodegradability of BOD5/COD ratio was increased from 0.04 to 0.47 within 30 min, indicating a significant improvement of biodegradability for the solution, which is beneficial for the further biotreatment of petroleum wastewater. The reaction kinetics show that reactive activation energy for COD conversion was calculated to be 25.11 kJ/mol. This MW-assisted CWAO approach may have significant potential in application for treatment of industrial wastewater.
机译:研究了微波(MW)辅助在低温(150°C)和低压(0.8 MPa)下的催化湿式氧化(CWAO)工艺处理炼油工业中重度污染的石油废水。 MW-CWAO实验是在重构的MW高压釜中进行的,使用GAC(5%重量)作为催化剂。将实验温度保持在150℃,并且以0.8MPa的压力将氧气供应到反应体系中。结果表明,在30分钟内获得了90%以上的化学需氧量(COD)去除,并且BOD5 / COD的生物降解率从0.04提高到0.47,表明该溶液的生物降解性显着提高,这对石油废水的进一步生物处理。反应动力学表明,用于COD转化的反应活化能经计算为25.11 kJ / mol。这种由MW辅助的CWAO方法在处理工业废水中可能具有巨大的潜力。

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