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Anaerobic co-digestion of a lignocellulosic residue with different organic wastes: Relationship between biomethane yield, soluble organic matter and process stability

机译:具有不同有机废物的木质纤维素残留物的厌氧共消化:生物甲烷产率,可溶性有机物质和工艺稳定性之间的关系

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摘要

The aim of this paper was to deepen the knowledge of anaerobic co-digestion of lignocellulosic residues and evaluate the role of soluble organic matter during co-digestion. Buckwheat milling residue (buckwheat hull) was co-digested with different organic wastes to evaluate the effect of co-digestion on biomethane yield, process stability, and their relationship with soluble organic matter. Results showed that co-digestion increased the biomethane yields of buckwheat hull and the best result was achieved from the co-digestion with slaughterhouse wastes (+254% of cumulative biomethane production). Kinetic analysis showed that fruit wastes and brewery trub affected positively anaerobic digestion of lignocellulosic residues, enhancing biomethane potential (+84% and +166%, respectively) and reducing lag phase duration. A positive correlation was found between the soluble organic matter and the biomethane yields during co-digestion experiments. Nevertheless, co-digestion with fruit wastes was affected by an excessive acidification in the early stage of AD (pH 5.7) caused by the rapid conversion of sugars into volatile fatty acids (7 g L~(-1) at day 15). Although all the digestates showed high concentrations of plant nutrients (the average content of total N was 7.8% dry weight), they were also characterized by residual phytotoxicity (germination index was always 0.0%). results. Increasing the amount of easy biodegradable organic matter during lignocellulosic residues treatment should be the main goal when selecting co-digestion substrates. Chemical composition of co-digestion substrates should be carefully considered, with particular regard to soluble organic matter, to ensure the optimal development of anaerobic digestion with lignocellulosic residues.
机译:本文的目的是深化木质纤维素残留物的厌氧共消化的知识,并评估共消化过程中可溶性有机物的作用。荞麦碾磨残留物(荞麦壳)用不同的有机废物共消化,以评估共消化对生物甲烷产率,工艺稳定性及其与可溶性有机物质的关系的影响。结果表明,共消化增加了荞麦壳的生物甲烷产率,并从屠宰场废弃物的共消化(+ 254%的累积生物甲烷生产)中获得了最佳结果。动力学分析表明,水果废物和酿酒厂受到木质纤维素残留物的正厌氧消化,增强生物甲烷电位(分别为+ 84%和+ 166%)并降低滞后阶段持续时间。在共消化实验期间,可溶性有机物质和生物甲烷产率之间发现了阳性相关性。尽管如此,通过果实早期的糖(pH5.7)早期酸化的共同消化受到糖的快速转化为挥发性脂肪酸(在第15天)的早期酸化的影响。尽管所有的消化表现出高浓度的植物营养素(总N的平均含量为7.8%干重),但它们的特征在于残留的植物毒性(萌发指数始终为0.0%)。结果。在木质纤维素残留物处理过程中增加易生物降解的有机物的量应该是选择共消化衬底时的主要目标。应仔细考虑共消化衬底的化学成分,特别考虑可溶性有机物质,以确保用木质纤维素残留物的厌氧消化的最佳发育。

著录项

  • 来源
    《Biomass & bioenergy》 |2021年第10期|106209.1-106209.11|共11页
  • 作者单位

    Department of Agricultural and Environmental Sciences - Production Landscape Agroenergy University of Milan Via Celoria 2 20133 Milano Italy;

    Department of Civil and Environmental Engineering University of Perugia Via G. Duranti 93 06125 Perugia Italy;

    Department of Civil and Environmental Engineering University of Perugia Via G. Duranti 93 06125 Perugia Italy;

    Department of Civil and Environmental Engineering University of Perugia Via G. Duranti 93 06125 Perugia Italy;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Anaerobic digestion; Bioenergy; Biogas; Lignocellulosic residue; Organic waste; Soluble organic matter;

    机译:厌氧消化;生物能源;沼气;木质纤维素残留物;有机废物;可溶性有机物;

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