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Energy recovery from municipal wastewater: impacts of temperature and collection systems

机译:从城市废水中回收能量:温度和收集系统的影响

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Municipal wastewater contains valuable organic contents that can be recovered as energy through anaerobic digestion. The operating temperature impacts the design and performance of anaerobic digestion systems and can be selected to accommodate different geographical zones, from tropical to frigid. Here the biological methane potential (BMP) and the effect of temperature on methane production are compared for municipal wastewater collected from different collection systems, including source-diverted toilet wastewater (i.e. blackwater) and conventionally collected sewage. The sewage and blackwater collections were performed in Canada. BMP tests were conducted at 20 and 35°C. The BMPs of municipal sewage and water-wasting toilet (6–9 l per toilet flush) blackwater were comparable at 20 and 35°C. Water-conserving toilet (1 l per toilet flush) blackwater had lower BMP than municipal sewage and water-wasting toilet blackwater at 35°C, due to FA inhibition. Under the lower-temperature condition (20°C), although no apparent inhibition in the methanogenic process was observed for water-conserving toilet blackwater, a much lower hydrolysis rate was observed.
机译:市政废水中含有有价值的有机物,可通过厌氧消化将其作为能量回收。操作温度影响厌氧消化系统的设计和性能,可以选择以适应从热带到寒冷的不同地理区域。这里比较了从不同收集系统收集的市政废水的生物甲烷潜力(BMP)和温度对甲烷生产的影响,这些废水包括源头分流的厕所废水(即黑水)和常规收集的废水。污水和黑水的收集在加拿大进行。 BMP测试在20和35°C下进行。在20°C和35°C的温度下,城市污水和浪费水的厕所(每个厕所冲水为6–9微升)的BMP相当。节水马桶(每次马桶冲洗1升)黑水的BMP低于市政污水和35°C下浪费水的马桶黑水,这是由于FA的抑制作用。在较低温度条件下(20℃),虽然节水的厕所黑水在产甲烷过程中没有观察到明显的抑制作用,但观察到的水解速率要低得多。

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