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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Synergetic promotion of direct interspecies electron transfer for syntrophic metabolism of propionate and butyrate with graphite felt in anaerobic digestion
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Synergetic promotion of direct interspecies electron transfer for syntrophic metabolism of propionate and butyrate with graphite felt in anaerobic digestion

机译:协同促进直接interspecies电子转移用于丙酸丁酯和丁酸丁酸盐的丙酸丁酸盐含量含有厌氧消化

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摘要

Direct interspecies electron transfer (DIET) was considered to replace interspecies H-2 transfer to enhance syntrophic metabolism during the anaerobic digestion. The graphite felt with excellent electrical conductivity was added into a semi-continuous reactor as a conducive material, strengthening DIET in enhancing the degradation of propionate and butyrate. The final average CH4 production rate increased by 19.1% and 16.7%, respectively, during the propionate and butyrate degradation. Microbial community analysis revealed that the relative abundance of the microflora that could participate in DIET, like Geobacter, Methanosaeta and Methanosarcina species, was greatly improved in the presence of graphite felt. Further experiments showed that the high H-2 partial pressure had no obvious effect on the degradation of propionate and butyrate in the graphite felt-supplement reactors.
机译:直接间隙电子转移(饮食)被认为是在厌氧消化期间替代Interpecies H-2转移以增强语言代谢。 将具有优异的导电性的石墨含有优异的电导率作为有用材料,加强饮食,提高丙酸丁酸丁酸的降解。 在丙酸盐和丁酸酯降解期间,最终平均CH4的生产率分别增加了19.1%和16.7%。 微生物群落分析显示,在石墨毡存在下,可以参与饮食的微细胞的相对丰度在Gabite毡的存在下大大提高。 进一步的实验表明,高H-2分压对石墨毡补充反应器中丙酸盐和丁酸盐的降解没有明显影响。

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