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Integration of US/Fe2+ and photo-Fenton in sequencing for degradation of landfill leachate

机译:将US / Fe2 +和光芬顿集成在测序中以降解垃圾渗滤液

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The landfill leachate treated by sonication in presence of Fe2+ (US/Fe2+) and then by photo-Fenton achieved the highest total organic carbon (TOC) removal efficiency among the screened processes. The lower initial pH, dosage of Fe2+ and initial concentration of leachate were helpful in raising TOC removal efficiency of leachate by US/Fe2+. The optimal conditions for the US-photo-Fenton process were as follows: initial pH at 3.0, [H2O2]/[TOC0] at 2, [H2O2]/[Fe2+] at 5 and initial concentration of landfill leachate at 600 mg/L. The removal efficiency of TOC, chemical oxygen demand (COD) and 5-day biochemical oxygen demand (BOD5) were 68.3, 79.6 and 58.2%, while the BOD5/COD rose from 0.20 to 0.43 at optimum condition. Based on gas chromatography-mass spectrometry (GC-MS) results, 36 of a total of 56 pollutants were completely degraded by US-photo-Fenton treatment.
机译:在筛选过程中,在Fe2 +(US / Fe2 +)存在下进行超声处理,然后再通过光芬顿处理的垃圾渗滤液达到了最高的总有机碳(TOC)去除效率。较低的初始pH,Fe2 +的用量和渗滤液的初始浓度有助于提高US / Fe2 +去除渗滤液的TOC效率。 US-Photo-Fenton工艺的最佳条件如下:初始pH为3.0,[H2O2] / [TOC0]为2,[H2O2] / [Fe2 +]为5,垃圾渗滤液的初始浓度为600 mg / L 。在最佳条件下,TOC,化学需氧量(COD)和5天生化需氧量(BOD5)的去除效率分别为68.3%,79.6和58.2%,而BOD5 / COD从0.20上升至0.43。根据气相色谱-质谱法(GC-MS)的结果,在US-photo-Fenton处理下,总共56种污染物中的36种被完全降解。

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