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Anaerobic fermentation of hydrothermal liquefaction wastewater of dewatered sewage sludge for volatile fatty acids production with focuses on the degradation of organic components and microbial community compositions

机译:脱水污泥水热液化废水的厌氧发酵,挥发性脂肪酸产生,重点对有机成分和微生物群落组合物的降解

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摘要

Hydrothermal conversion (HTC) is a promising technology for the treatment of dewatered sewage sludge to produce bio-fuels including bio-oil and hydrochar. At the same time, a huge amount of wastewater (HTCWW) was produced. The present study investigated the organic compositions of HTCWW obtained at different HTC temperatures (170-320 °C) and volatile fatty acids (VFAs) yields through anaerobic fermentation. Results showed that the highest VFAs yield of 0.59 gCOD_(VFA)/gCOD was obtained from HTCWW obtained at 170 °C (HTCWW 170). Higher amount of easily biodegradable organics including proteins and carbohydrates were present in HTCWW 170 °C which resulted in the highest VFAs yields. With the increase of HTC temperature, recalcitrant organic compounds were produced as revealed by 3D-EEM and GC-MS analysis, which resulted in lower VFAs yields. Furthermore, microbial analysis showed that different compositions in the HTCWW led to the enrichment of different microbial communities, which affected the VFAs yields.
机译:水热转换(HTC)是一种有助于治疗脱水污水污泥的技术,以生产生物燃料,包括生物油和氢乙酸。同时,生产了大量的废水(HTCWW)。本研究研究了通过厌氧发酵在不同HTC温度(170-320℃)(170-320℃)和挥发性脂肪酸(VFA)产生的HTCWW的有机组合物。结果表明,从170℃(HTCWW170)获得的HTCWW获得0.59GCOD_(VFA)/ GCOD的最高VFAS产率。在HTCWW170℃下存在较高量的易生物降解的有机物,包括蛋白质和碳水化合物,其导致最高的VFAs产率。与HTC温度的升高,产生了顽固有机化合物通过3D-EEM和GC-MS分析,这导致较低的产率的VFA所揭示。此外,微生物分析表明,HTCWW中的不同组合物导致不同微生物群落的富集,影响VFA产量。

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  • 来源
    《Science of the total environment》 |2021年第10期|146077.1-146077.9|共9页
  • 作者单位

    Shanghai Key Laboratory of Atmospheric Particle Pollution and Prevention (LAP3) Department of Environmental Science and Engineering Fudan University Shanghai 200433 China;

    Shanghai Key Laboratory of Atmospheric Particle Pollution and Prevention (LAP3) Department of Environmental Science and Engineering Fudan University Shanghai 200433 China Department of Energy Environmental and Chemical Engineering Washington University in St. Louis St. Louis MO 63130 United States;

    Shanghai Key Laboratory of Atmospheric Particle Pollution and Prevention (LAP3) Department of Environmental Science and Engineering Fudan University Shanghai 200433 China;

    Shanghai Key Laboratory of Atmospheric Particle Pollution and Prevention (LAP3) Department of Environmental Science and Engineering Fudan University Shanghai 200433 China;

    Department of Applied Bioeconomy Wroclaw University of Environmental and Life Sciences Wroclaw 51-630 Poland;

    Shanghai Key Laboratory of Atmospheric Particle Pollution and Prevention (LAP3) Department of Environmental Science and Engineering Fudan University Shanghai 200433 China Shanghai Technical Service Platform for Pollution Control and Resource Utilization of Organic Wastes Shanghai 200438 China Shanghai Institute of Pollution Control and Ecological Security Shanghai 200092 China;

    Shanghai Key Laboratory of Atmospheric Particle Pollution and Prevention (LAP3) Department of Environmental Science and Engineering Fudan University Shanghai 200433 China Shanghai Technical Service Platform for Pollution Control and Resource Utilization of Organic Wastes Shanghai 200438 China Shanghai Institute of Pollution Control and Ecological Security Shanghai 200092 China;

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

    Dewatered sewage sludge; Hydrothermal conversion wastewater; Volatile fatty acids; Anaerobic fermentation;

    机译:脱水污水污泥;水热转换废水;挥发性脂肪酸;厌氧发酵;

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