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Assessment of high-solid mesophilic and thermophilic anaerobic digestion of mechanically-separated municipal solid waste

机译:对机械分离的市政固体废物的高固体嗜苯胺和嗜热厌氧消化评估

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摘要

Mechanically-sorted organic fraction of municipal solid waste (OFMSW) was tested to determine its biogas and biomethane generation efficiency. Methane production capability of OFMSW was examined in biochemical methane potential (BMP) tests. The factors affecting the high-solid anaerobic digestion (AD) of feedstock were investigated in a series of long-term semi-continuous digestion tests performed at dry mesophilic and thermophilic conditions in a continuously rotating drum reactor with working volume of 0.013 m~3. OFMSW presented low biogas and methane generation capacity due to its contained non-biodegradable components and the low proteins and starch proportions. Dry mesophilic AD allowed only a relatively limited fraction of OFMSW volatile solids to be consumed for biogas and methane production. Reducing particle size favoured utilization of higher proportions of the available digestible organic substances, and concurrently promoted biogas and biomethane generation rate. Stability of methane generation was also significantly improved by particle downsizing. Small particles compensated the limited mass transfer and restricted distribution of methane production intermediate metabolites caused by water absence in the dry AD system. Dry thermophilic AD converted sufficient quantity of OFMSWs biodegradable content. The average methane released from dry thermophilic AD (0.176 m~3kg_(VS)~(-1)) was higher than that of dry mesophilic AD of fine particles (0.148 m~3kg_(VS)~(-1)) and much higher than that of dry mesophilic AD of same grain size (0.114 m~3kg_(VS)~(-1)). High temperature proved more suitable for anaerobically digesting mechanically-sorted OFMSW.
机译:测试机械分选的有机级数的城市固体废物(OFMSW)以确定其沼气和生物甲烷的发电效率。在生化甲烷电位(BMP)测试中检查了MSW的甲烷生产能力。研究了影响原料的高固体厌氧消化(Ad)的因素在一系列的长期半连续消化试验中,在连续旋转的鼓式反应器中,工作体积为0.013μm〜3。 OFMSW由于其包含的非生物降解组分和低蛋白质和淀粉比例而呈现低沼气和甲烷的发电能力。干燥的嗜合型广告仅允许对沼气和甲烷生产消耗的MMSW挥发性固体相对有限的部分。降低粒径赞成利用高比例的可用可消化有机物质,并同时促进的沼气和生物甲烷产生速率。粒子缩小性也显着改善了甲烷生成的稳定性。小颗粒补偿了在干燥AD系统中不含水不存在的甲烷产量中间代谢物的有限传质和甲烷产量分布。干热嗜热广告转化了足量的可生物降解含量。从干热嗜热释放(0.176μm〜3kg_(vs)〜(-1)释放的普通甲烷高于细颗粒的干燥嗜苯胺ad(0.148m〜3kg_(vs)〜(-1)),更高比相同晶粒尺寸的干燥融合AD(0.114m〜3kg_(vs)〜(-1))。高温证明更适合于机械地排序的厌氧 - 分选的墨西姆。

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  • 来源
    《Environmental research》 |2021年第1期|110202.1-110202.14|共14页
  • 作者单位

    Institute of Environmental Technology VSB - Technical University of Ostrava 17. Listopadu 2172/15 Ostrava Poruba 708 00 Czech Republic;

    Institute of Environmental Technology VSB - Technical University of Ostrava 17. Listopadu 2172/15 Ostrava Poruba 708 00 Czech Republic;

    Institute of Environmental Technology VSB - Technical University of Ostrava 17. Listopadu 2172/15 Ostrava Poruba 708 00 Czech Republic;

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

    OFMSW; High-solid AD; Particle size; Thermophilic; Mesophilic;

    机译:ofmsw;高坚固广告;粒径;嗜热;嗜苯胺;

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