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Synergistic Tannic Acid-Fluoride Inhibition of Ammonia Emissions and Simultaneous Reduction of Methane and Odor Emissions from Livestock Waste

机译:协同鞣酸氟化宁氨排放抑制,同时减少畜牧业废弃物

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摘要

Gaseous emissions from livestock production are complex mixtures including ammonia, methane, volatile organic compounds (VOC), and H_2S. These contribute to eutrophication, reduced air quality, global warming, and odor nuisance. It is imperative that these gases are mitigated in an environmentally sustainable manner. We present the discovery of a microbial inhibitor combo consisting of tannic acid and sodium fluoride (TA-NaF), which exhibits clear synergistic inhibition of ammonia production in pure bacteria culture and in pig manure while simultaneously inhibiting methane and odorant (H_2S and VOC) emissions. In laboratory headspace experiments on pig manure, we used proton-transfer-reaction mass spectrometry and cavity ring-down spectroscopy to measure the effect of TA-NaF on gaseous emissions. Ammonia emission was reduced by more than 95%, methane by up to ~99%, and odor activity value by more than 50%. Microbial community analysis and gas emission data suggest that TA-NaF acts as an efficient generic microbial inhibitor, and we hypothesize that the synergistic inhibitory effect on ammonia production is related to tannic acid causing cell membrane leakage allowing fluoride ions easy access to urease.
机译:来自牲畜生产的气态排放是复杂的混合物,包括氨,甲烷,挥发性有机化合物(VOC)和H_2S。这些有助于富营养化,降低空气质量,全球变暖和气味滋扰。必须以环境可持续的方式减轻这些气体。我们介绍了由单宁酸和氟化钠(Ta-Naf)组成的微生物抑制剂组合,其在纯细菌培养和猪粪中表现出氨生产的明显协同抑制,同时抑制甲烷和气味(H_2S和VOC)排放。在猪粪实验室网球实验中,我们使用质子 - 转移反应质谱和腔斜谱法测量TA-NAF对气态排放的影响。氨排放减少了95%以上,甲烷高达约99%,气味活性值超过50%。微生物群落分析和气体排放数据表明,TA-NAF作为一种有效的通用微生物抑制剂,我们假设对氨生产的协同抑制作用与单宁酸导致细胞膜泄漏允许氟离子易于释放脲酶。

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  • 来源
    《Environmental Science & Technology》 |2020年第12期|7639-7650|共12页
  • 作者单位

    Department of Engineering Air Quality Engineering Aarhus University 8200 Aarhus Denmark;

    Department of Chemical Engineering Biotechnology and Environmental Technology University of Southern Denmark 5230 Odense Denmark;

    Department of Chemical Engineering Biotechnology and Environmental Technology University of Southern Denmark 5230 Odense Denmark;

    Department of Engineering Air Quality Engineering Aarhus University 8200 Aarhus Denmark;

    Department of Engineering Air Quality Engineering Aarhus University 8200 Aarhus Denmark;

    Department of Chemical Engineering Biotechnology and Environmental Technology University of Southern Denmark 5230 Odense Denmark;

    Department of Engineering Air Quality Engineering Aarhus University 8200 Aarhus Denmark;

  • 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);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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