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Transesterification of Waste Activated Sludge for Biosolids Reduction and Biodiesel Production

机译:废活性污泥的酯交换反应用于减少生物固体和生产生物柴油

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Transesterification of waste activated sludge (WAS) was evaluated as a cost-effective technique to reduce excess biosolids and recover biodiesel feedstock from activated sludge treatment processes. A laboratory-scale sequencing batch reactor (SBR) was operated with recycling transesterification-treated WAS back to the aeration basin. Seventy percent recycling of WAS resulted in a 48% reduction of excess biosolids in comparison with a conventional SBR, which was operated in parallel as the control SBR. Biodiesel recovery of 8.0% (dried weight basis) was achieved at an optimum transesterification condition using acidic methanol and xylene as cosolvent. Average effluent soluble chemical oxygen demand (COD) and total suspended solids (TSS) concentrations from the test SBR and control SBR were comparable, indicating that the recycling of transesterification-treated WAS did not have detrimental effect on the effluent quality. This study demonstrated that transesterification and recycling of WAS may be a feasible technique for reducing excess biosolids, while producing valuable biodiesel feedstock from the activated sludge process.
机译:废物活性污泥(WAS)的酯交换反应被评估为一种经济有效的技术,可减少过量的生物固体并从活性污泥处理过程中回收生物柴油原料。使用实验室规模的测序间歇反应器(SBR),将经过酯交换处理的WAS循环回曝气池。与常规SBR(作为对照SBR并行运行)相比,WAS的百分之七十的再循环可减少48%的过量生物固体。使用酸性甲醇和二甲苯作为助溶剂,在最佳酯交换条件下,生物柴油的回收率为8.0%(以干重计)。测试SBR和对照SBR的平均废水可溶性化学需氧量(COD)和总悬浮固体(TSS)浓度是可比的,这表明酯交换处理的WAS的回收对废水质量没有不利影响。这项研究表明,WAS的酯交换和再循环可能是减少过量生物固体的可行技术,同时可以通过活性污泥工艺生产有价值的生物柴油原料。

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