首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Effects of changes in temperature on treatment performance and energy recovery at mainstream anaerobic ceramic membrane bioreactor for food waste recycling wastewater treatment
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Effects of changes in temperature on treatment performance and energy recovery at mainstream anaerobic ceramic membrane bioreactor for food waste recycling wastewater treatment

机译:温度变化对厌氧陶瓷膜生物反应器进行治疗性能和能量回收的影响,用于食物废弃物回收废水处理

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An anaerobic ceramic membrane bioreactor (AnCMBR) has been attracted as an alternative technology to co-manage various organic substrates. This AnCMBR study investigated process performance and microbial community structure at decreasing temperatures to evaluate the potential of AnCMBR treatment for co-managing domestic wastewater (DWW) and food waste-recycling wastewater (FRW). As a result, the water flux (= 6.9 LMH) and organic removal efficiency (= 98.0%) were maintained above 25 degrees C. The trend of methane production in the AnCMBR was similar except for at 15 degrees C. At 15 degrees C, the archaeal community structure did not shifted, whereas the bacterial community structure was changed. Various major archaeal species were identified as the mesophilic methanogens which unable to grow at 15 degrees C. Our results suggest that the AnCMBR can be applied to co-manage DWW and FRW above 20 degrees C. Future improvements including psychrophilic methanogen inoculation and process optimization would make co-manage DWW and FRW at lower temperature climates.
机译:一种厌氧陶瓷膜生物反应器(ANCMBR)被吸引为替代技术,以共同管理各种有机基材。该ANCMBR研究调查的过程性能和微生物群落结构在减少温度下,以评估ANCMBR治疗的潜力,用于共管理国内废水(DWW)和食品废物回收废水(FRW)。结果,水通量(& = 6.9 LMH)和有机去除效率(& = 98.0%)保持在25摄氏度以上。除了15摄氏度外,ANCMBR中的甲烷产生的趋势相似。 15摄氏度,古群落结构没有转移,而细菌群落结构发生了变化。鉴定各种主要的古代物种作为在15摄氏度的嗜合型甲烷中。我们的结果表明,ANCMBR可以应用于共同管理DWW和以上的FRW以上C.未来的改进,包括心理学性甲状腺炎接种和过程优化在较低的温度气候下进行共同管理DWW和FRW。

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