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首页> 外文期刊>Waste Management >Relieving ammonia inhibition by zero-valent iron (ZVI) dosing to enhance methanogenesis in the high solid anaerobic digestion of swine manure
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Relieving ammonia inhibition by zero-valent iron (ZVI) dosing to enhance methanogenesis in the high solid anaerobic digestion of swine manure

机译:减轻零价铁(ZVI)给药以增强猪粪高固厌氧消化中的甲烷发生的氨抑制作用

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摘要

Relieving from ammonia inhibition and enhancing the utilization of thermodynamically unfavorable pro-pionate are crucial for methane harvest in the high solid anaerobic digestion (HSAD) of ammonia-rich swine manure. In this study, the potential of dosing zero-valent iron (ZVI, 150 um) for enhancing the methanogenesis to resist total ammonia (TAN) over 5.0 g-N·L~(-1) was investigated via batch experiments under mesophilic condition. The cumulative methane production was enhanced by 22.2% at ≥160 mM ZVI dosage and the HSAD duration was further shortened by 50.6% at ≥320 mM ZVI dosage. The enhanced methanogenesis was mainly resulted from the full utilization of propionate and the accelerated collapse of posterior-biodegradable organics which might be driven by ZVI. Results of microbial community and qPCR (mcrA) showed that ZVI might trigger the blooming of Methanosarcina (from 27.9% to 78.3%) and Syntrophomonas (0.5% to 3.7%) and attribute to their possible direct interspecies electron transfer (DIET) to enhance propionate utilization. Besides, the main methanogenesis might remain in the effective aceticlastic pathway even under free ammonia (FAN) almost 1.0 g-N·L~(-1) because syntrophic acetate oxidizing bacteria (SAOB) decreased to almost none at 320 mM ZVI dosage. Dosing ZVI could relieve HSAD from TAN inhibition and more dosage was required to resist FAN inhibition.
机译:从氨抑制中加强和增强热力学不利的促偏见的利用对于氨型猪粪的高固体厌氧消化(HSAD)中的甲烷收获至关重要。在本研究中,通过在碘入嗜苯间病症下进行分批实验,研究了用于增强甲状腺发生以抵抗5.0g-N·L〜(-1)的甲烷的零价铁(ZVI,150μm)的电位。累积甲烷产量增强了22.2%,ZVI剂量≥160mm≥160mm,进一步缩短了50.6%≥320mmZVI剂量。增强的甲烷发生主要是由于丙酸盐的充分利用率和可由ZVI驱动的后生物降解有机物的加速塌陷。微生物群落和QPCR(MCRA)的结果表明,ZVI可能会引发甲蛋白酶的盛开(从27.9%到78.3%)和Syntrophomonas(0.5%至3.7%),并归因于他们可能的直接间隔电子转移(饮食)以增强丙种利用率。此外,即使在游离氨(风扇)下,主要甲状腺发生可能仍然存在于有效的醋精中途径,近1.0g-n·l〜(-1),因为醋酸锡酸盐氧化细菌(SAOB)在320mm ZVI剂量下降至几乎没有。给药ZVI可以缓解TAN抑制的HSAD,需要更多的剂量来抵抗风扇抑制。

著录项

  • 来源
    《Waste Management》 |2020年第12期|452-462|共11页
  • 作者单位

    Stale Key Joint Laboratory of Environment Simulation and Pollution Control Research Center for Eco-Environmental Sciences Chinese Academy of Sciences Beijing 100085 China Department of Water Pollution Control Technology Research Center for Eco-Environmental Sciences Chinese Academy of Sciences Beijing 100085 China School of Chemical & Environmental Engineering China University of Mining & Technology (Beijing) Beijing 100083 China;

    Stale Key Joint Laboratory of Environment Simulation and Pollution Control Research Center for Eco-Environmental Sciences Chinese Academy of Sciences Beijing 100085 China Department of Water Pollution Control Technology Research Center for Eco-Environmental Sciences Chinese Academy of Sciences Beijing 100085 China;

    Stale Key Joint Laboratory of Environment Simulation and Pollution Control Research Center for Eco-Environmental Sciences Chinese Academy of Sciences Beijing 100085 China Department of Water Pollution Control Technology Research Center for Eco-Environmental Sciences Chinese Academy of Sciences Beijing 100085 China;

    Stale Key Joint Laboratory of Environment Simulation and Pollution Control Research Center for Eco-Environmental Sciences Chinese Academy of Sciences Beijing 100085 China Department of Water Pollution Control Technology Research Center for Eco-Environmental Sciences Chinese Academy of Sciences Beijing 100085 China;

    Stale Key Joint Laboratory of Environment Simulation and Pollution Control Research Center for Eco-Environmental Sciences Chinese Academy of Sciences Beijing 100085 China Department of Water Pollution Control Technology Research Center for Eco-Environmental Sciences Chinese Academy of Sciences Beijing 100085 China;

    Stale Key Joint Laboratory of Environment Simulation and Pollution Control Research Center for Eco-Environmental Sciences Chinese Academy of Sciences Beijing 100085 China Department of Water Pollution Control Technology Research Center for Eco-Environmental Sciences Chinese Academy of Sciences Beijing 100085 China College of Resources and Environment University of Chinese Academy of Sciences Beijing 100049 China Institute of Energy Jiangxi Academy of Sciences Nanchang 330029 China;

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

    High solid anaerobic digestion; Ammonia inhibition; Propionate; Zero-valent iron; Microbial community; Methanosarcina;

    机译:高固体厌氧消化;氨抑制;慈善;零价熨斗;微生物群落;MethanoSarcina;

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