首页> 外文期刊>Journal of Bioscience and Bioengineering >Effect of enhancing nutrient balance in anaerobic digester feedstock by co-substrate addition on the microbial diversity and energy production from municipal sewage sludge
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Effect of enhancing nutrient balance in anaerobic digester feedstock by co-substrate addition on the microbial diversity and energy production from municipal sewage sludge

机译:从城市污水污泥的微生物多样性和能源生产中加入厌氧消化酯原料中养猪蒸煮器原料中养分平衡的影响

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Enhancement of methane production during anaerobic digestion of waste activated sludge (WAS) could improve the energy self sufficiency of the municipal wastewater treatment plants (WWTPs). Therefore, mixing WAS with organic wastes improved process performance and stability. In this work, the anaerobic co-digestion of WAS combined with the olive processing wastewater (OPW) was investigated and associated with the energetic benefits and microbial populations shifts. The bio-methane potential (BMP) of various WAS and OPW mixtures corresponding to increased phenols concentrations were tested. The anaerobic digestion of better proportions (90%/10% and 80%/20%) was performed in anaerobic sequencing batch reactors (ASBRs). The biodegradation of phenols at concentrations up to 0.76 g/L was confirmed by Sephadex gel filtration showing that ASBR, which is suspended growth reactor, can handle much higher concentration of toxic compounds. Microbial analysis showed that phenols induced significantly the archaea community dynamic, which showed highly richness and diversity in the well performed reactor. The dominant bacteria and archaea phylotypes were affiliated to Proteobacteria and Methanosarcinales, respectively. Therefore, OPW addition increased total energy production from 24.6 kWh/ton to 64.7 kWh/ton, which would provide 0.43 M(sic)/year net benefits only from the electric power. In addition it brings a payback time on investment of 2 years for WWTPs modification, which was considered interesting. (C) 2018, The Society for Biotechnology, Japan. All rights reserved.
机译:在废物活性污泥(AS)的厌氧消化过程中甲烷产生的增强可以提高市政废水处理厂(WWTPS)的能量自给自足。因此,混合用有机浪费改善了工艺性能和稳定性。在这项工作中,研究了与橄榄加工废水(OPW)组合的厌氧共消化,并与能量益处和微生物群体变化相关。测试各种的生物甲烷电位(BMP)和对应于增加酚浓度的OPW混合物。在厌氧测序批量反应器(ASBR)中进行更好的比例的厌氧消化(90%/ 10%和80%/ 20%)。通过Sephadex凝胶过滤证实了浓度高达0.76g / L的酚类的生物降解,显示悬浮的生长反应器的ASBR,可以处理更高浓度的毒性化合物。微生物分析表明,酚类诱导的亚群群落动态显着诱导,这在良好的良好的反应器​​中表现出高度丰富性和多样性。显性细菌和古藻属植物分别隶属于促菌和甲蛋白酶。因此,OPW添加了从24.6千瓦时/吨的总能源产量增加到64.7千瓦时/吨,这将仅提供0.43米(SIC)/年净效益,仅来自电力。此外,它为WWTPS修改提供了2年投资的投资回收期,被认为是有趣的。 (c)2018年,日本生物技术协会。版权所有。

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