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Establishment and differential performance of hyperthermophilic microbial community during anaerobic self-degradation of waste activated sludge

机译:废物激活污泥厌氧自降解过程中高热微生物群落的建立与差异性能

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摘要

Hyperthermophilic anaerobic digestion, especially at 70 °C, has drawn wide attention. In order to acquire the inoculum and digestion characteristics, batch acclimation and continuous operation experiments were conducted under hyperthermophilic (70 °C, thermophilic (55 °C) and mesophilic (35 °C) conditions, respectively. Archaea at each temperature was successfully enriched from the sole-source waste activated sludge (WAS). Hyperthermophilic digestion achieved higher archaea diversity, close to the Shannon index 2.23 for the thermophilic digestion, but the population were not improved, at a 16S rRNA genes 5.99 × 10~5 copies mL~(-1). Hydro-genotrophic methanogens, Methanospirillum and Methanothermobacter, dominated in the hyperthermophilic digester, accounting for 27.15%, while the primary phylum Firmicutes was promoted to 36.31%, with the pro-teolytic genus Coprothermobacter in Firmicutes at 19.50%. Refractory organic fractions were converted more with a higher digestion temperature, which was demonstrated by the fact that the COD/VS increased to 5.8, 5.2 and 4.2 at 70 °C, 55 °C and 35 °C, respectively, at the end of batch acclimation. In addition, the most solubilization for the dominant fraction protein in the WAS occurred at 70 °C as well. Similar hydrolysis ratio, over 10%, and specific hydrolysis rate, around 0.025 g COD (g VSS·d)~(-1) were achieved at 70 °C and 55 "C. The higher hydrolysis for hyperthermophilic digestion even resulted in a higher methane yield than that for the mesophilic digestion. Nevertheless, contrary to higher hydrolysis, methanogenesis limited hyperthermophilic digestion in WAS degradation, with an ultimate methane yield 71.2 mL g~(-1) VS_(added), despite an almost complete VFA conversion through the continuous operation.
机译:超嗜热厌氧消化,特别是在70°C时,引起了广泛的关注。为了获得接种物和消化特征,分批适应和连续操作实验分别在高热(嗜热(嗜热(55℃)和嗜苯胺(35℃)条件下进行。每次温度的古核成功富集鞋底源废物活性污泥(是)。高疗症消化达到了较高的古代分集,接近香农指数2.23用于热嗜热消化,但群体未得到改善,在16S rRNA基因5.99×10〜5拷贝ml〜( -1)。水 - 旋流型甲烷酮,甲烷台值和甲烷热杆菌,在高热蒸煮器中占据,占27.15%,而主要字段均等促进至36.31%,具有12.50%的前泛冰属豆科术。难治性有机物用更高的消化温度将级分更换,这通过鳕鱼/ vs增加到5.8,5.2和4.2在70°下进行了证明C,55°C和35°C分别在批量适应结束时。另外,在70℃下,在70℃下发生最溶解的主要部分蛋白质。在70℃和55“C中实现了相似的水解比,超过10%和特定的水解速率,约0.025g COD(GVSS·d)〜(-1)。高热消化的较高水解甚至导致更高甲烷产量比嗜苯胺消化的产量。然而,与较高的水解相反,甲烷化有限有限的高热消化是降解,最终甲烷产率71.2ml g〜(-1)Vs_(加入),尽管几乎完全通过了VFA转换连续操作。

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  • 来源
    《Environmental research 》 |2020年第12期| 110035.1-110035.11| 共11页
  • 作者单位

    Key Laboratory of Coal Science and Technology Ministry of Education and Shanxi Province Taiyuan University of Technology Taiyuan 030024 China;

    College of Environmental Science and Engineering Taiyuan University of Technology Taiyuan 030024 China;

    Key Laboratory of Coal Science and Technology Ministry of Education and Shanxi Province Taiyuan University of Technology Taiyuan 030024 China;

    Key Laboratory of Coal Science and Technology Ministry of Education and Shanxi Province Taiyuan University of Technology Taiyuan 030024 China;

    Key Laboratory of Coal Science and Technology Ministry of Education and Shanxi Province Taiyuan University of Technology Taiyuan 030024 China;

    Key Laboratory of Coal Science and Technology Ministry of Education and Shanxi Province Taiyuan University of Technology Taiyuan 030024 China;

    Key Laboratory of Coal Science and Technology Ministry of Education and Shanxi Province Taiyuan University of Technology Taiyuan 030024 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Hyperthermophilic; Anaerobic digestion; Waste activated sludge (WAS); Acclimation; Microbial community;

    机译:过度嗜热;厌氧消化;废物活性污泥(是);适应;微生物群落;

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