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Mitigation of Ammonia and Hydrogen Sulfide Emissions by Stable Aqueous Foam-Microbial Media

机译:稳定的泡沫水-微生物介质减轻氨和硫化氢的排放

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摘要

Stable aqueous foam-microbial media consisting of protein-based foams and odor-degrading bacteria were developed to control the emissions of odorous compounds.The optimum foam formulation was determined based on foam characteristics including 50% drainage time,foam lifetime,and foam expansion ratio.When only the aqueous foam was applied onto the surface of a test odor source (i.e.,swine manure),ammonia emission was completely suppressed for about 177,225,265,297,and 471 min when the height of foam barrier was 2.5,5,10,15,and 30 cm,respectively.According to the increasing foam height,ammonia emission rates after breakthrough points decreased to 0.16,0.13,0.09,0.07,and 0.02 mg/m~3/min,and thus volatilized ammonia concentrations decreased significantly after 600 min.Hydrogen sulfide was similarly suppressed.Ammonia emission was better controlled by incorporating odor-degrading bacteria into the aqueous foam.The odor suppression capacity of the 5-cm foam barrier with microbes was more than eight times greater than that of the barrier only and was similar to that of 30-cm foam barrier without microbes after 1440 min.A significant amount of dinitrogen gas was evolved by the foam-microbial media,indicating a successful biological transformation of ammonia.
机译:开发了由蛋白质基泡沫和可降解气味的细菌组成的稳定的水性泡沫微生物介质,以控制有味化合物的排放。根据50%的排水时间,泡沫寿命和泡沫膨胀率等泡沫特性确定了最佳的泡沫配方当仅将水性泡沫施加到测试气味源(即猪粪)的表面上时,当泡沫阻隔层的高度为2.5、5、10、15时,氨的排放被完全抑制了约177,225,265,297和471分钟,随着泡沫高度的增加,突破点后的氨释放速率分别降低到0.16、0.13、0.09、0.07和0.02 mg / m〜3 / min,因此600分钟后挥发的氨浓度显着降低。同样抑制了硫化氢的产生,通过将降解气味的细菌掺入水性泡沫中,可以更好地控制氨的排放.5厘米泡沫屏障对微生物的抑制能力大于在1440分钟后,它的阻隔性仅是屏障的八倍,与30厘米的无微生物泡沫阻隔性相似。泡沫-微生物介质释放出大量的氮气,表明氨已经成功地进行了生物转化。

著录项

  • 来源
    《Environmental Science & Technology》 |2006年第9期|p.3030-3035|共6页
  • 作者单位

    School of Civil,Urban & Geosystem Engineering,Seoul National University,Seoul,151-742,The Republic of Korea;

    School of Civil,Urban & Geosystem Engineering,Seoul National University,Seoul,151-742,The Republic of Korea;

    School of Civil,Urban & Geosystem Engineering,Seoul National University,Seoul,151-742,The Republic of Korea;

    School of Civil,Urban & Geosystem Engineering,Seoul National University,Seoul,151-742,The Republic of Korea;

  • 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
  • 中图分类 环境化学;
  • 关键词

  • 入库时间 2022-08-17 14:06:59

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