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首页> 外文期刊>Waste Management >Organic loading on biochemical fractions degradation pattern during food waste bioevaporation
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Organic loading on biochemical fractions degradation pattern during food waste bioevaporation

机译:生物化学级分的有机装载在食物废弃物生物中的生物化学分数降解模式

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摘要

More food waste (FW) is desired to be treated in a certain processing period, while the degradation pattern of biochemical fractions during FW bioevaporation was significantly influenced by the organic loading (OL). Lower OL facilitated the lipids degradation, while higher OL favored the protein degradation. It was the more porous structure and abundant oxygen accelerated the lipids degradation, and the rapid proliferation of aerobic microorganisms compensated for the low protein degradation in lower OL. Detailly, 76.8% of the lipids was degraded in the trial with OL of 1.04 kg VS_(FW)/kg TS_(BS) (Trial A), but in the trial with OL of 3.16 kg VS_(FW)/kg TS_(BS) (Trial C) it was only 0.5%. For protein, the degradation was different that 17.5% of the protein was degraded in Trial A, whereas 69.1% was degraded in Trial C. Lipids degradation contributed 63.0% to the metabolic heat in Trial A, but its contribution in Trial C was only 0.5%. For protein, it contributed 4.1% to the metabolic heat in Trial A, but in Trial C it accounted for 53.6%. In addition, the degradation of carbohydrates (71.6-80.8%) and their contribution to metabolic heat (32.8-45.9%) were comparable in all trials, thus OL had little effect on carbohydrates degradation. Results from this study could provide important guideline for FW practical disposal during their biological treatment.
机译:需要在一定处理期间处理更多的食物废物(FW),而FW生物化散发期间生化级分的降解模式受到有机负载(OL)的显着影响。降低ol促进脂质降解,而更高的ol有利于蛋白质降解。它是更多孔的结构和丰富的氧气加速了脂质降解,并且有氧微生物的快速增殖补偿了下醇的低蛋白质劣化。详细地,76.8%的脂质在试验中含有1.04千克(FW)/ kg TS_(BS)(试验A)的试验中,但在与3.16千克VS_(FW)/ kg TS_(BS的试验中) )(试验C)只有0.5%。对于蛋白质,降解不同,在试验A中降解17.5%的蛋白质降解,而69.1%在试验中降解。脂质降解在试验A中的代谢热量导致了63.0%,但其在试验C中的贡献仅为0.5 %。对于蛋白质,它可以在试验A中贡献4.1%,但在试验C中,它占53.6%。此外,在所有试验中,碳水化合物的降解(71.6-80.8%)及其对代谢热量的贡献(32.8-45.9%),因此OL对碳水化合物降解几乎没有影响。本研究的结果可以在其生物待遇期间提供FW实际处理的重要指导。

著录项

  • 来源
    《Waste Management》 |2021年第8期|142-150|共9页
  • 作者单位

    Faculty of Environmental Science and Engineering Kunming University of Science and Technology Kunming 650500 China;

    Faculty of Environmental Science and Engineering Kunming University of Science and Technology Kunming 650500 China;

    Faculty of Environmental Science and Engineering Kunming University of Science and Technology Kunming 650500 China;

    Faculty of Environmental Science and Engineering Kunming University of Science and Technology Kunming 650500 China;

    Faculty of Environmental Science and Engineering Kunming University of Science and Technology Kunming 650500 China;

    Faculty of Environmental Science and Engineering Kunming University of Science and Technology Kunming 650500 China;

    Faculty of Environmental Science and Engineering Kunming University of Science and Technology Kunming 650500 China;

    Faculty of Environmental Science and Engineering Kunming University of Science and Technology Kunming 650500 China;

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

    Organic loading; Lipids; Protein; Carbohydrates; Bioevaporation;

    机译:有机装载;脂质;蛋白质;碳水化合物;生物刺激;

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