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Energy self-sufficient sewage wastewater treatment plants: Is optimized anaerobic sludge digestion the key?

机译:能源自给自足的污水处理厂:优化厌氧污泥消化是关键吗?

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The anaerobic digestion of primary and waste activated sludge generates biogas that can be converted into energy to power the operation of a sewage wastewater treatment plant (WWTP). But can the biogas generated by anaerobic sludge digestion ever completely satisfy the electricity requirements of a WWTP with 'standard' energy consumption (i.e. industrial pollution not treated, no external organic substrate added)? With this question in mind, we optimized biogas production at Prague' s Central Wastewater Treatment Plant in the following ways: enhanced primary sludge separation; thickened waste activated sludge; implemented a lysate centrifuge; increased operational temperature; improved digester mixing. With these optimizations, biogas production increased significantly to 12.5 m3 per population equivalent per year. In turn, this led to an equally significant increase in specific energy production from approximately 15 to 23.5 kWh per population equivalent per year. We compared these full-scale results with those obtained from WWTPs that are already energy self-sufficient, but have exceptionally low energy consumption. Both our results and our analysis suggest that, with the correct optimization of anaerobic digestion technology, even WWTPs with 'standard' energy consumption can either attain or come close to attaining energy self-sufficiency.
机译:初级和废活性污泥的厌氧消化产生沼气,可将其转化为能量,为污水处理厂(WWTP)的运行提供动力。但是,厌氧污泥消化所产生的沼气能否完全满足“标准”能耗(即不处理工业污染,不添加外部有机底物)的污水处理厂的电力需求?考虑到这个问题,我们通过以下方式优化了布拉格中央废水处理厂的沼气生产:增强了一次污泥的分离;增稠废物活性污泥;实施了裂解液离心机;工作温度升高;改进的蒸煮器混合。通过这些优化,沼气产量显着提高到每人口当量每年12.5立方米。反过来,这也导致单位人口每年的单位比能源产量从大约15千瓦时增加到23.5千瓦时。我们将这些全面结果与从污水处理厂获得的结果进行了比较,这些结果已经实现了能源自给自足,但能耗极低。我们的结果和分析都表明,通过正确优化厌氧消化技术,即使是具有“标准”能耗的污水处理厂也可以达到或接近实现能量自给。

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