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Study of Pre-Treatment of Oil Refinery Wastewater by EEF-Enhanced Micro-Electrolysis

机译:EEF-增强微电解预处理炼油废水的研究

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Oil refinery wastewater is rich in organic pollutants and cannot be treated easily. This study involves the pre-treatment of oil refinery wastewater by external electric field (EEF)-enhanced micro-electrolysis technology. The anode was titanium net plated with ruthenium, the cathode was barbed wire, and the Fe/C/Al micro-electrolysis filler as particle electrode. The optimum conditions for EEF-enhanced micro-electrolysis were determined to be as initial pH of 3.0, 10V EEF voltage, and 0.06mol/L electrolyte concentrations by studying the influence of different experimental parameters. It was also found that EEF-enhanced micro-electrolysis had a higher efficiency than the traditional micro-electrolysis in the degradation of the organic pollutants present in the oil refinery wastewater. Continuous running results showed the removal rate of COD (chemical oxygen demand), ammonia nitrogen and oil of the effluent was stable, and the average value of the effluent B/C (biochemical oxygen demand/chemical oxygen demand) ratio was 0.454 +/- 0.013. The values of EC (energy consumption) and ICE (instantaneous current efficiency) were 9.8 kWh/Kg COD and 340.5%, respectively, when the reaction time was 60min in oil refinery wastewater pre-treatment by EEF-enhanced micro-electrolysis technology. GC/MS was used to analyze the organic compounds present in the wastewater before and after treatment. UV-visible absorption spectroscopy was used to analyze the degradation process of the organic compounds present in the oil refinery wastewater. The results of these analyses confirmed the technical feasibility of EEF-enhanced micro-electrolysis in the pre-treatment of the oil refining wastewater. Finally, the main mechanism involved in the treatment of refinery wastewater by EEF-enhanced micro-electrolysis technology has been discussed.
机译:炼油厂废水中富含有机污染物,不易处理。这项研究涉及通过外部电场(EEF)增强的微电解技术预处理炼油厂废水。阳极为镀有钌的钛网,阴极为带刺铁丝网,Fe / C / Al微电解填料为颗粒电极。通过研究不同实验参数的影响,确定增强EEF的微电解的最佳条件为初始pH为3.0、10V EEF电压和0.06mol / L电解质浓度。还发现,EEF增强的微电解在降解炼油厂废水中存在的有机污染物方面具有比传统的微电解更高的效率。连续运行结果表明,废水的COD(化学需氧量),氨氮和油的去除率稳定,废水B / C(生化需氧量/化学需氧量)之比的平均值为0.454 +/- 0.013。当通过EEF增强的微电解技术预处理炼油厂废水中的反应时间为60分钟时,EC(能耗)和ICE(瞬时电流效率)的值分别为9.8 kWh / Kg COD和340.5%。 GC / MS用于分析处理前后废水中存在的有机化合物。紫外可见吸收光谱法用于分析炼油厂废水中存在的有机化合物的降解过程。这些分析的结果证实了EEF增强的微电解技术在炼油废水预处理中的技术可行性。最后,讨论了采用EEF增强型微电解技术处理炼油废水的主要机理。

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