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首页> 外文期刊>Water Science and Technology >The performance and microbial diversity of temperature-phased hyperthermophilic and thermophilic anaerobic digestion system fed with organic waste
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The performance and microbial diversity of temperature-phased hyperthermophilic and thermophilic anaerobic digestion system fed with organic waste

机译:含有机废物的温度分阶段超高温和厌氧厌氧消化系统的性能和微生物多样性

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The objective of this study was to evaluate the performances and microbial diversities for development of the effective hyperthermophilic digester system that consists of a hyperthermophilic reactor and hyperthermophilic or thermophilic reactor in series. Lab-scale reactors were operated continuously fed with artificial kitchen garbage. The effect of temperature on the acidification step was firstly investigated. Results indicated that 20.8% of COD solubilization was achieved at 70 degrees C, with 12.6% at 80 degrees C. The average protein solubilization reached 31% at 80 degrees C. Methane conversion efficiency following the acidification was around 85% on average at 55 degrees C, but decreased with increasing temperature and methane gas was not produced over 73 degrees C. As well, bacteria affiliated with the methanogens dominated the population below 65 degrees C, while those affiliated with acidogens were predominant over 73 degrees C. These results indicated that the hyperthermophilic process has considerable benefits to treat wastewater or waste containing high concentration of protein.
机译:这项研究的目的是评估开发由串联的高温反应器和高温反应器组成的有效高温消化系统的性能和微生物多样性。实验室规模的反应堆连续运行以人造厨房垃圾为原料。首先研究了温度对酸化步骤的影响。结果表明,在70摄氏度下可实现20.8%的COD增溶,在80摄氏度下可实现12.6%的增溶。在80摄氏度下,平均蛋白质增溶率达到31%。酸化后的甲烷转化率在55摄氏度下平均约为85% C,但随温度升高而降低,并且在73摄氏度以上未产生甲烷气体。同样,与甲烷菌相关的细菌在65摄氏度以下的人群中占主导,而与酸原相关的细菌在73摄氏度以上占主导。这些结果表明,高温处理对于处理含高浓度蛋白质的废水或废物具有相当大的好处。

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