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Ultrasonic application to boost hydroxyl radical formation during Fenton oxidation and release organic matter from sludge

机译:超声波应用可促进Fenton氧化过程中羟基自由基的形成并从污泥中释放有机物

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We examined the effects of ultrasound and Fenton reagent on ultrasonic coupling Fenton oxidation (U+F) pre-treatment processes for the disintegration of wastewater treatment plant sludge. The results demonstrated that U+F treatment could significantly increase soluble chemical oxygen demand (SCOD), total organic carbon (TOC), and extracellular polymeric substances (EPS) concentrations in sludge supernatant. This method was more effective than ultrasonic (U) or Fenton oxidation (F) treatment alone. U+F treatment increased the release of SCOD by 2.1- and 1.4-fold compared with U and F alone, respectively. U+F treatment increased the release of EPS by 1.2-fold compared with U alone. After U+F treatment, sludge showed a considerably finer particle size and looser microstructure based on fluorescence microscopy, and the concentration of hydroxyl radicals (OH?) increased from 0.26?mM by F treatment to 0.43?mM by U+F treatment based on fluorescence spectrophotometer. This demonstrated that U+F treatment improves the release of organic matter from sludge.
机译:我们检查了超声波和Fenton试剂对超声波耦合Fenton氧化(U + F)预处理过程中废水处理厂污泥分解的影响。结果表明,U + F处理可显着提高污泥上清液中的可溶性化学需氧量(SCOD),总有机碳(TOC)和细胞外聚合物质(EPS)浓度。此方法比单独的超声(U)或Fenton氧化(F)处理更有效。与单独使用U和F相比,U + F处理分别将SCOD的释放提高了2.1倍和1.4倍。与单独使用U相比,U + F处理使EPS的释放增加了1.2倍。经过U + F处理后,基于荧光显微镜,污泥显示出相当细的颗粒尺寸和较松散的微观结构,羟自由基(OH)的浓度从经F处理的0.26?mM增加到经基于U + F处理的0.43?mM。荧光分光光度计。这表明U + F处理可改善污泥中有机物的释放。

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