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Improved removal performance and mechanism investigation of papermaking wastewater treatment using manganese enhanced Fenton reaction

机译:利用锰增强的芬顿反应改善了造纸废水处理的清除性能和机制研究

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The effects of Mn(II) on Fenton system to treat papermaking wastewater and the mechanism of Mn(II) enhanced Fenton reaction were investigated in this study. The chemical oxygen demand (COD) removal efficiency was enhanced in the presence of Mn(II), which increased by 19% compared with that of the Fenton system alone. The pseudo-first order reaction kinetic rate constant of Mn(II)/Fenton system was 2.11 times higher than that of Fenton system. 67%-81% COD were removed with the increasing Mn(II) concentration from 0 to 0.8 g/L. COD removal efficiency was also enhanced in a wider pH range (3-7), which indicated the operation parameters of Fenton technology could be broadened to a milder condition. The study of the mechanism showed that Mn(II) participated in the oxidation and coagulation stages in Fenton system. In the oxidation stage, Mn(II) promotes the production of HO2 center dot/O-2(center dot-), then HO2 center dot/O-2(center dot-) reacts with Fe(III) to accelerate the formation of Fe(II), and finally accelerates the production of HO center dot. Meantime MnMnO3 and Fe(OH)(3) forms in the coagulation stage, facilitating the removal of suspended substances and a large amount of COD, which enhances the overall COD removal of papermaking wastewater. This study provided a detailed mechanism to improve practical applications of Fenton technology.
机译:本研究研究了Mn(ii)对芬顿系统对造纸废水处理造纸废水的影响及MN(II)增强的芬顿反应。在Mn(II)的存在下,增强了化学需氧量(COD)去除效率,而单独的FENTON系统相比增加了19%。 Mn(II)/ FENTON系统的伪第一阶反应动力率常数比FENTON系统高2.11倍。除去67%-81%的鳕鱼,随着0至0.8g / L的增加,增加Mn(II)浓度。在更宽的pH范围(3-7)中也增强了COD去除效率,这表明Fenton技术的操作参数可以扩大到较温和的条件。该机制的研究表明,MN(II)参与了FENTON系统的氧化和凝血阶段。在氧化阶段,Mn(II)促进HO2中心点/ O-2(中心点)的产生,然后HO2中心点/ O-2(中心点)与Fe(III)反应以加速形成Fe(ii),最后加速了Ho中心点的生产。同时MnmNO3和Fe(OH)(3)在凝血阶段中的形式,促进悬浮物质和大量的鳕鱼,这提高了造纸废水的总鳕鱼去除。本研究提供了一种改进Fenton技术实际应用的详细机制。

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