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Effect of Combined Microwave-Ultrasonic Pretreatment on Anaerobic Biodegradability of Primary, Excess Activated and Mixed Sludge

机译:微波-超声波联合预处理对原污泥,过量活化污泥和混合污泥厌氧生物降解能力的影响

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This work deals with the effect of combined microwave-ultrasonic pretreatment on the anaerobic biodegradability of primary, excess activated and mixed sludge. The characteristics, biodegradability and anaerobic digester performance for untreated primary, excess activated and mixed sludge were compared to combined microwave-ultrasonic pretreated primary, excess activated and mixed sludge. All sludge samples were subjected to Microwave treatment at 2450 MHz, 800 W and 3 min followed by ultrasonic treatment at a density of 0.4 W/mL, amplitude of 90%, Intensity of 150 W, pulse of 55/5 for 6min. Methane production in pretreated primary sludge was significantly greater (11.9 ml/g TCOD) than the methane yield of the untreated primary sludge (7.9 ml/g TCOD). Cumulative methane production of pretreated Excess Activated Sludge (EAS) was higher (66.5 ml/g TCOD) than the methane yield from pretreated mixed sludge (44.1 ml/g TCOD). Furthermore, digested EAS showed significantly higher dewaterability (201 s) than digested primary sludge (305 s) or mixed sludge (522 s). The average Methane: Carbondioxide ratio from EAS (1.85) was higher than that for mixed untreated sludge (1.24). VS reduction was also higher for EAS than the other two sludge types. However, pretreatment of EAS resulted in significant reduction in dewaterability due to higher percentage of fine floc particles in the pretreated EAS.
机译:这项工作涉及微波-超声波联合预处理对原始污泥,过量活化污泥和混合污泥厌氧生物降解性的影响。将未经处理的原污泥,过量活化污泥和混合污泥的特性,生物降解性和厌氧消化池的性能与微波-超声波预处理的原污泥,过量活化污泥和混合污泥进行了比较。所有污泥样品均在2450 MHz,800 W和3分钟下进行微波处理,然后以0.4 W / mL的密度,90%的振幅,150 W的强度,55/5的脉冲进行超声处理6分钟。预处理的初级污泥中的甲烷产量(11.9 ml / g TCOD)明显高于未处理的初级污泥的甲烷产量(7.9 ml / g TCOD)。预处理过剩活性污泥(EAS)的累积甲烷产量(66.5 ml / g TCOD)高于预处理混合污泥的甲烷产量(44.1 ml / g TCOD)。此外,消化后的EAS的脱水能力(201 s)比消化后的初级污泥(305 s)或混合污泥(522 s)高得多。 EAS的平均甲烷:二氧化碳比率(1.85)高于未经处理的混合污泥的平均比率(1.24)。与其他两种污泥相比,EAS的VS降低也更高。然而,由于在预处理的EAS中较高的细絮状颗粒的百分比,所以EAS的预处理导致脱水性的显着降低。

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