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首页> 外文期刊>Chemical engineering journal >Enhanced persulfate oxidation of organic pollutants and removal of total organic carbons using natural magnetite and microwave irradiation
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Enhanced persulfate oxidation of organic pollutants and removal of total organic carbons using natural magnetite and microwave irradiation

机译:使用天然磁铁矿和微波辐射增强过硫酸盐氧化和除去总有机碳

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摘要

Natural magnetite (Fe3O4) and microwave (MW) irradiation were applied to activate persulfate (PS) for the degradation of p-nitrophenol (PNP) with superior activity. The characteristics of natural magnetite were systematically inspected and analyzed. The MW+ PS + Fe3O4 system showed a high degradation efficiency for PNP (94.2% within 28 min under the conditions of [PNP] = 20 mg.L-1, [Fe3O4]= 2.5 g.L-1, [PS]/[PNP]molar = 15/1, T = 80 degrees C), which was better than MW+ PS system at the same reaction temperature. With the help of quenching experiment and electron paramagnetic resonance (EPR), we found that of the generated radicals, SO4 center dot- was responsible for most the oxidation and center dot OH played a minor role. Regarding the effects of coexisting ions, the different ions exhibited different influence on degradation performance. Specifically, chloride ion showed an accelerating effect, whereas sulfate, phosphate and carbonate showed an inhibitory effect, and nitrate showed negligible effect for PNP decomposition performance. This unique ion effect was ascribed to the generation of ferrous-ligand complexes and the secondary radical reaction between the sulfate radicals and coexisting ions. Both metronidazole and sulfadiazine were also treated well in the present system. The practical and economic applicability of MW + PS + Fe3O4 system were discussed. All in all, our unique MW + PS + Fe3O4 system opens a new path for advanced oxidation.
机译:施用天然磁铁矿(Fe3O4)和微波(MW)辐射以激活过硫酸盐(PS),以具有优异活性的p-硝基苯酚(PNP)的降解。系统地检查和分析天然磁铁矿的特点。 MW + PS + Fe3O4系统对PNP的高降解效率(在28分钟内为94.2%,在[PNP] = 20mg.L-1的条件下,[Fe 3 O 4] = 2.5G11,[PS] / [PNP]摩尔= 15/1,T = 80℃),在相同的反应温度下优于MW + PS系统。借助淬火实验和电子顺磁共振(EPR),我们发现产生的自由基,SO4中心点 - 负责大多数氧化和中心点哦起到了轻微的作用。关于共存离子的影响,不同的离子对降解性能不同。具体地,氯离子显示出加速效果,而硫酸盐,磷酸盐和碳酸盐显示出抑制作用,硝酸盐显示出可忽略的PNP分解性能效果。这种独特的离子效应归因于铁 - 配体复合物的产生和硫酸盐基团和共存离子之间的二次自由基反应。在本系统中还良好地治疗了甲硝唑和磺胺嗪。讨论了MW + PS + Fe3O4系统的实用和经济适用性。总而言之,我们独特的MW + PS + FE3O4系统为先进的氧化开辟了新的路径。

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