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Sono-Thermal Pretreatment of Waste Activated Sludge for Enhanced Anaerobic Digestion and Volatile Sulfur Compounds Control in Biogas

机译:废弃物活性污泥的超声热预处理,用于增强厌氧消化和挥发性硫磺化合物对照对沼气中的

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The impact of sono-thermal pretreatment combining ultrasound and conventional heating as a pretreatment process for municipal waste activated sludge prior to anaerobic digestion is evaluated in terms of sludge solubilization, solids reduction, biogas production, volatile sulfur compounds concentrations in biogas, dewaterability of digested sludge, and economic feasibility of the pretreatment process. A total of nine combined sono-thermal pretreatments were conducted using three different ultrasound specific energy inputs (1000, 5000, and 10,000 kJ kg~(- 1)TSS~(-1)) and thermal pretreatment temperatures (50, 70 and 90°C). Results of pretreatment have shown that the sono-thermal pretreatments have significantly reduced VSS after pretreatment ranging from 29%-38%. A maximum of 30% increase in methane production was observed for three pretreatment at 90°C followed by ultrasound pretreatment at 10,000 kJ kg~(-1)TSS~(-1) specific energy input. Economic assessment suggests that combination of low temperature thermal pretreatment at 50°C and low specific energy input at 1000 kJ kg~(-1) TSS~(-1) is economically more feasible compared to ultrasound pretreatment alone.
机译:是sono-热预处理组合超声和常规加热作为城市垃圾的预处理过程的影响活性污泥之前厌氧消化污泥中的增溶,固体还原,沼气生产,生物气中的挥发性含硫化合物的浓度,消化污泥脱水性方面被评估和预处理工艺的经济可行性。共有九组合是sono-热预处理,使用三种不同的超声特定能量输入进行(1000,5000,和10000千焦公斤〜( - 1)TSS〜(-1))和热预处理温度(50,70和90° C)。预处理的结果表明,是sono-热预处理已经显著VSS预处理范围从29%-38%后减少。观察到三个预处理在90最多甲烷产量增加30%℃,随后超声预处理以10,000千焦公斤〜(-1)TSS〜(-1)的比能量输入。经济评估表明,在1000千焦公斤〜50℃的低温热预处理和低的比能量输入的该组合(-1)TSS〜(-1)相比于单独的超声预处理在经济上是更为可行。

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