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Co-fermentation of municipal waste streams: Effects of pretreatment methods on volatile fatty acids production

机译:市政废物流的共同发酵:预处理方法对挥发性脂肪酸生产的影响

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摘要

The effects of direct enzyme cocktail addition and other pretreatment methods on VFA production through co-fermentation of primary sludge and external organic waste were studied under initial alkaline (pH 10) and acidic (pH 5) conditions. Besides the direct enzymes addition, 24-h enzymatic, ultrasonic, ultrasonic+24-h enzymatic and thermal were the other pretreatment methods employed. Under the alkaline condition, direct addition of enzymes enhanced VFA production by 29-39%, attaining VFA yields of 364-633 mg COD g~(-1) VS throughout the experimental period, whereas there was 37-43% increase in VFA production under the acidic condition only at retention days 1 and 2, achieving VFA yield of 207 and 215 mg COD g~(-1) VS, respectively. VFA composition was dominated by acetic acid (54-67%) and propionic acid (31-46%) under alkaline and acidic conditions, respectively. Direct enzyme addition increased the percentage of caproic acid from 8-9% to 16-17%, under the acidic condition. While 24-h enzymatic pretreatment didn't show any improvement on VFA production, thermal, ultrasonic+24-h enzymatic and ultrasonic pretreatment methods increased VFA production by only 18, 14 and 4%, reaching maximum VFA yields of 512, 486 and 445 mg COD g~(-1) VS, respectively. On the other hand, these pretreatment methods significantly increased biogas production. Experiment without pretreatment achieved maximum biogas production of 392 NmL CH_4 at day 9 while experiments with pretreatments achieved a maximum of 679-954 NmL CH_4 in the order of no pretreatment < ultrasonic < thermal < 24-h enzymatic < ultrasonic+24-h enzymatic. The study gives insight into how pretreatment strategy can influence VFA production and composition.
机译:在初始碱(pH10)和酸性(pH5)条件下,研究了通过初级污泥和外部有机废物共发酵的VFA生产对VFA产生的直接酶鸡尾酒加法和其他预处理方法的影响。除了直接酶另外,24-H酶,超声波,超声波+ 24-H酶和热是所用的其他预处理方法。在碱性条件下,直接加入酶增强的VFA产量为29-39%,在整个实验期间获得364-633mg COD G〜(-1)Vs的VFA产量,而VFA生产增加37-43%在酸性条件下仅在保留时的第1天和第2天,分别实现了207和215mg COD G〜(-1)Vs的VFA产率。 VFA组合物分别以碱性和酸性条件下的乙酸(54-67%)和丙酸(31-46%)支配。在酸性条件下,直接酶添加增加了8-9%至16-17%的冠状酸的百分比。虽然24-H酶预处理没有显示VFA生产,热,超声波+ 24-H酶和超声预处理方法的任何改善,但达到VFA产量的增加仅为18,14和4%,达到512,486和445的最大VFA产量Mg COD G〜(-1)vs分别。另一方面,这些预处理方法显着增加了沼气生产。在没有预处理的实验中实现了第9天的最高沼气产量392 NML CH_4,而预处理的实验达到了最多679-954 NML CH_4,无预处理<超声波<热<24-H酶<超声+ 24-H酶。该研究深入了解预处理策略如何影响VFA生产和组成。

著录项

  • 来源
    《Biomass & bioenergy》 |2021年第2期|105950.1-105950.10|共10页
  • 作者单位

    Department of Chemical Engineering KTH Royal Institute of Technology SE-100 44 Stockholm Sweden;

    Department of Chemical Engineering KTH Royal Institute of Technology SE-100 44 Stockholm Sweden;

    Department of Sustainable Development Environmental Science and Engineering KTH Royal Institute of Technology SE-100 44 Stockholm Sweden;

    Department of Chemical Engineering KTH Royal Institute of Technology SE-100 44 Stockholm Sweden;

  • 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

    Volatile fatty acid; Municipal waste streams; Enzyme; Pretreatment; Co-fermentation;

    机译:挥发性脂肪酸;市政废物流;酶;预处理;共同发酵;

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