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Effect of ultrasonic and microwave disintegration on physico-chemical and biodegradation characteristics of waste-activated sludge

机译:超声波和微波分解对废渣污泥理化特性的影响

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The purpose of this study was to investigate the effect of ultrasonic and microwave disintegration on physico-chemical and biodegradability properties of waste-activated sludge (WAS) from a municipal wastewater treatment plant. Another aim was to carry out particle size distribution (PSD) analysis as an integral component of sludge characterization to highlight the transformation mechanisms involved in pretreatment processes and better understand the biodegradation patterns of sonicated and irradiated WAS liquids examined by means of respirometric measurements. Various combinations of sonication and microwave irradiation parameters were applied to optimize operating conditions. The optimum ultrasonic density was determined as 1.5 W/mL, and energy dosages lower than 30,000 kJ/kg TS resulted in a fairly linear increase in the soluble chemical oxygen demand (SCOD) release. An irradiation time of 10 min and a temperature of 175C were selected as the optimum microwave pretreatment conditions for sludge liquefaction. The most apparent impact of ultrasonication on the PSD of COD was the shifting of the peak at the particulate fraction (> 1600 nm) toward the lowest size range (< 2 nm). Microwave heating at the selected experimental conditions and ultrasonic pretreatment at 30,000 kJ/kg TS exhibited comparable size distribution and biodegradation characteristics to those of domestic sewage.
机译:这项研究的目的是调查超声波和微波分解对市政污水处理厂废物活化污泥(WAS)的物理化学和生物降解特性的影响。另一个目标是进行粒度分布(PSD)分析,作为污泥表征的组成部分,以突出显示预处理过程中涉及的转化机制,并通过呼吸测定法更好地了解超声和辐射WAS液体的生物降解模式。应用了超声和微波辐射参数的各种组合以优化操作条件。最佳超声密度确定为1.5 W / mL,低于30,000 kJ / kg TS的能量剂量导致可溶性化学需氧量(SCOD)释放的线性增加。选择10分钟的照射时间和175°C的温度作为污泥液化的最佳微波预处理条件。超声波对COD PSD的最明显影响是颗粒部分(> 1600 nm)处的峰向最小尺寸范围(<2 nm)移动。在选定的实验条件下进行的微波加热和在30,000 kJ / kg TS的超声预处理显示出与生活污水相当的尺寸分布和生物降解特性。

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