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首页> 外文期刊>International journal of hydrogen energy >Biohydrogen and biogas production from mashed and powdered vegetable residues by an enriched microflora in dark fermentation
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Biohydrogen and biogas production from mashed and powdered vegetable residues by an enriched microflora in dark fermentation

机译:通过富含富含微生物的微生物的生物氢和沼气从黑暗发酵中的富集和粉末植物残留

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摘要

This study conducted the utilization of vegetable residues by an enriched microflora inoculum to produce biohydrogen via anaerobic batch reactor. Dark fermentation processes were carried out with 3 kinds of vegetable residue substrates including broccoli (Brassica oleracea var. italica.), onion (Alium cepa Linn.), and sweet potato (Ipomoea batatas (L.) Lam). Vegetable wastes were pretreated into 2 forms, i.e. mashed and powdered vegetable, prior to the fermentation. The substrate used for the biohydrogen production were vegetable residues and inoculumat the vegetable residues/inoculum ratio of 1:1 (based on TS). The digestion processes were performedunder 120 rpm speed of shaking bottle in the incubator with control temperature of 35 degrees C. In thiswork, the maximum hydrogen production was achieved by anaerobic digestion at mashed onion with bioreactor inoculum that produced total hydrogen of 424.1 mL H-2 with hydrogen yield and hydrogen concentration of 151.67 mL H-2/g VSa(dded) and 43.54%, respectively. In addition, the hydrogen production continues took only 7 days for the vegetables blended with the bioreactor inoculum. Finally, it was found that the high potential of degradation of vegetable wastes an enriched microflora in dark fermentation also showed alternative solution to eliminate agricultural wastes to produce green energy. (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:该研究通过富含富含微生物群Inoculum通过厌氧批量反应器产生生物氢的植物残留物的利用。用3种植物残留物衬底进行黑暗发酵过程,包括西兰花(Brassica Oleracea Var。Italica。),洋葱(亚麻CEPA Linn。)和甘薯(Ipomoea Batatas(L.)Lam)。在发酵之前,蔬菜废物预处理2种形式,即捣碎和粉状蔬菜。用于生物氢生产的基材是植物残留物,植物残留物/接种物质为1:1(基于TS)。在培养箱中,在培养箱中进行消化方法,在培养箱中,控制温度为35摄氏度,在该方案中,通过用生物反应器接种物在粉碎的洋葱中厌氧消化来实现最大氢气产生,其产生424.1ml H-2的总氢气。氢产率和氢浓度为151.67ml H-2 / g Vsa(dded)和43.54%。此外,氢气产量持续为蔬菜与生物反应器接种物混合的7天。最后,发现蔬菜降解的高潜力在黑暗发酵中富含富集的微生物群,还显示出消除农业废物以产生绿色能量的替代解决方案。 (c)2020氢能量出版物LLC。 elsevier有限公司出版。保留所有权利。

著录项

  • 来源
    《International journal of hydrogen energy》 |2021年第27期|14073-14082|共10页
  • 作者单位

    Chiang Mai Rajabhat Univ Asian Dev Coll Community Econ & Technol Chiang Mai 50180 Thailand;

    Chiang Mai Rajabhat Univ Asian Dev Coll Community Econ & Technol Chiang Mai 50180 Thailand;

    Feng Chia Univ PhD Program Mech & Aeronaut Engn Taichung 40724 Taiwan|Univ Sam Ratulangi Elect Engn Dept Fak Tekn Manado North Sulawesi Indonesia;

    Chiang Mai Rajabhat Univ Asian Dev Coll Community Econ & Technol Chiang Mai 50180 Thailand;

    Feng Chia Univ PhD Program Mech & Aeronaut Engn Taichung 40724 Taiwan|Feng Chia Univ Inst Green Prod Taichung Taiwan;

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

    Biohydrogen; Broccoli; Onion; Sweet potato; Enriched microflora; Anaerobic digestion;

    机译:生物氢;西兰花;洋葱;甘薯;富含微生物;厌氧消化;

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