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Oil refinery wastewater treatment using physicochemical, Fenton and Photo-Fenton oxidation processes

机译:使用物理化学,Fenton和Photo-Fenton氧化工艺处理炼油厂废水

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摘要

The objective of this study was to investigate the application of advanced oxidation processes (AOPs) to the treatment of wastewaters contaminated with hydrocarbon oil. Three different oil-contaminated wastewaters were examined and compared: (i) a ‘real’ hydrocarbon wastewater collected from an oil refinery (Conoco-Phillips Whitegate refinery, County Cork, Ireland); (ii) a ‘real’ hydrocarbon wastewater collected from a car-wash facility located at a petroleum filling station; and (iii) a ‘synthetic’ hydrocarbon wastewater generated by emulsifying diesel oil and water. The AOPs investigated were Fe2+/H2O2 (Fenton's reagent), Fe2+/H2O2/UV (Photo-Fenton's reagent) which may be used as an alternative to, or in conjunction with, conventional treatment techniques. Laboratory-scale batch and continuous-flow experiments were undertaken. The photo-Fenton parametric concentrations to maximize COD removal were optimized: pH = 3, H2O2 = 400 mg/L, and Fe2+ = 40 mg/L. In the case of the oil-refinery wastewater, photo-Fenton treatment achieved approximately 50% COD removal and, when preceded by physicochemical treatment, the percentage removal increased to approximately 75%.
机译:这项研究的目的是研究高级氧化工艺(AOP)在处理被烃油污染的废水中的应用。检查并比较了三种不同的被石油污染的废水:(i)从炼油厂(爱尔兰科克郡的Conoco-Phillips Whitegate炼油厂)收集的“实际”烃废水; (ii)从位于加油站的洗车设施收集的“实际”碳氢化合物废水; (iii)乳化柴油和水产生的“合成”碳氢化合物废水。所研究的AOP是Fe2 + / H2O2(芬顿试剂),Fe2 + / H2O2 / UV(光芬顿试剂),可以用作传统处理技术的替代方法或与之结合使用。进行了实验室规模的批量和连续流实验。优化了用于最大程度去除COD的光芬顿参量浓度:pH = 3,H2O2 = 400 mg / L,Fe2 + = 40 mg / L。对于炼油厂废水,光芬顿处理可实现约50%的COD去除率,而在进行物理化学处理之前,去除率可提高至约75%。

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