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Application of electrochemical technology for removing petroleum hydrocarbons from produced water using a DSA-type anode at different flow rates

机译:应用DSA型阳极以不同流速从采出水中去除石油烃的电化学技术的应用

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The anodic oxidation of organic pollutants from produced water generated by petroleum exploration of the Petrobras plant-Brazil was studied using a RuO_2-TiO_2-SnO_2 electrode. Under galvanostatic conditions (j = 89 mA cm~(-2)), it was observed that the performance of the electrode material is influenced by flow rate as it was shown by GC analysis. It was found that the organic pollutants degradation, using different flow rates (0.25, 0.5, 0.8 and 1.3 dm~(-3) h), achieved distinct removal efficiencies (98%, 97%, 95% and 84% were achieved, respectively). Importantly, under the same conditions, RuO_2-TiO_2-SnO_2 showed poor degradation of phenol and ethyl benzene: 20-47% (at 0.25, 0.8 and 1.3 dm~(-3) h) and 17-47% (at 0.25, 0.5, 0.8 dm~(-3) h), respectively. Complete elimination of pollutants was obtained after 0.5-2.5 h of electrolysis. These data were discussed based on the energy and cost requirements for removing organic pollutants from produced water.
机译:使用RuO_2-TiO_2-SnO_2电极研究了巴西国家石油公司巴西石油勘探产生的采出水中有机污染物的阳极氧化。在恒电流条件下(j = 89 mA cm〜(-2)),可以观察到电极材料的性能受流速的影响,如GC分析所示。结果表明,使用不同的流速(0.25、0.5、0.8和1.3 dm〜(-3)h)降解有机污染物,去除效果显着(分别达到98%,97%,95%和84%)。 )。重要的是,在相同条件下,RuO_2-TiO_2-SnO_2的苯酚和乙苯降解性能较差:分别为20-47%(在0.25、0.8和1.3 dm〜(-3)h时)和17-47%(在0.25、0.5 dh)。 ,分别为0.8 dm〜(-3)h)。电解0.5-2.5小时后,可以完全消除污染物。这些数据是根据从采出水中去除有机污染物的能源和成本要求进行讨论的。

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