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Effect of wastewater particles on catalytic ozonation in the advanced treatment of petrochemical secondary effluent

机译:废水颗粒对石油化学二次出水预处理催化臭氧化的影响

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The effect of wastewater particles on catalytic ozonation during the treatment of petrochemical secondary effluent (PSE) was investigated. The dissolved organic carbon (DOC) removal results indicated that wastewater particles could significantly affect the catalytic oxidation reaction and increase ozone (O-3) consumption. When the suspended solids (SS) was filtered by the 0.45 mu m membrane, the O-3 dosage to DOC removal ratio was 1.99 mg(O3) mg(DOC)(-1), while it increased to 2.99 mg(O3) mg(DOC)-1 when the SS concentration was 50 +/- 1.57 mg L-1. Wastewater particles can react with O-3, thus reducing the O-3 and hydroxyl radicals (% OH) available for DOC removal. When the SS concentration was 30 +/- 0.96 mg L-1, O-3 dosages lower than 10 mg L-1 did not induce a change in the size and surface characteristics of the particles. Following the increase in the O-3 dosage to 36 mg L-1, extracellular polymeric substances (EPS) reacted with O-3/(center dot) OH with different characteristics. Dissolved organic matter (DOM) had the highest depletion reaction rate, followed by the loosely bound EPS (LB-EPS) and tightly bound EPS (TB-EPS). The average reaction rates of the three constituents were 1.44, 0.212, and 0.079 mg L-1 min(-1), respectively. In addition, the results showed that eliminating wastewater particles would be beneficial for the removal of organic micro-pollutants (OMPs) by catalytic ozonation.
机译:研究了废水颗粒对催化臭氧化在化工中的二级流出物(PSE)期间的影响。溶解的有机碳(DOC)去除结果表明废水颗粒可以显着影响催化氧化反应并增加臭氧(O-3)消耗。当悬浮固体(SS)通过0.45μm膜过滤时,O-3剂量与DOC去除率为1.99mg(O 3)Mg(DOC)( - 1),同时它增加到2.99mg(O 3)Mg (DOC)-1当SS浓度为50 +/- 1.57mg L-1时。废水颗粒可以与O-3反应,从而减少可用于DOC去除的O-3和羟基自由基(%OH)。当SS浓度为30 +/- 0.96mg L-1时,低于10mg L-1的O-3剂量没有诱导颗粒的尺寸和表面特征的变化。在o-3剂量增加至36 mg L-1后,细胞外聚合物物质(EPS)与O-3 /(中心点)哦与不同的特征反应。溶解的有机物(DOM)具有最高的耗尽反应速率,其次是松散结合的EPS(LB-EPS)和紧密结合的EPS(TB-EPS)。三种成分的平均反应速率分别为1.44,0.212和0.079mg L-1 min(-1)。此外,结果表明,消除废水颗粒将通过催化臭氧化除去有机微污染物(OMP)。

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