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Role of the dominant phototropic bacterium in anaerobic swine waste lagoons, Rhodobacter sp. PS9, in odor remediation.

机译:主要的光致细菌在厌氧猪粪池,红杆菌中的作用。 PS9,用于除臭。

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摘要

Temporal pigmentation changes in anaerobic swine waste lagoons were investigated during 4 year period. One commonly observed event in anaerobic swine waste lagoons is the development of purple color associated with the apparent reduction of odor intensity in late summer. The major purple phototrophic bacteria responsible for this color change and corresponding reduction in odor were isolated. Morphological, physiological, and phylogenetic characterization identified a predominant phototrophic bacterium as a new strain of Rhodobacter, designated Rhodobacter sp. PS9. Rhodobacter sp. PS9 is capable of photoheterotrophic growth on various organic compounds including all of the characteristic volatile organic compounds (VOC) responsible for the odor associated with swine production facilities. Seasonal variations of airborne VOCs emitted from waste lagoons also showed a 80--93% decrease in the concentration of VOC during the photosynthetic bloom. During the height of the bloom the Rhodobacter sp. PS9 population accounted for 9.6% of the total community and up to 27.0% of the eubacterial community structure. Additional observations based on seasonal variations of meteorological, biological and chemical parameters suggested the photosynthetic bloom of Rhodobacter sp. PS9 correlated with the water temperature and the organic loading rate of waste lagoon.
机译:在4年的时间里研究了厌氧猪粪池中色素的时间变化。厌氧猪粪池中普遍观察到的事件之一是紫色的发展,伴随着夏末气味强度的明显降低。分离出负责这种颜色变化和气味相应减少的主要紫色光养细菌。形态学,生理学和系统发育特征鉴定了一种主要的光养细菌,它是红细菌的一种新菌株,称为红细菌sp。 PS9。红细菌PS9能够在各种有机化合物上进行光异养生长,包括与猪生产设施相关的气味的所有特征性挥发性有机化合物(VOC)。废物泻湖排放的机载VOC的季节变化还表明,在光合开花期间,VOC的浓度降低了80--93%。在开花高峰期,红细菌属sp。 PS9种群占总群落的9.6%,占真细菌群落结构的27.0%。根据气象,生物学和化学参数的季节性变化进行的其他观察表明,红杆菌属的光合开花。 PS9与水温和废泻湖的有机负荷率相关。

著录项

  • 作者

    Do, Young Sub.;

  • 作者单位

    Iowa State University.;

  • 授予单位 Iowa State University.;
  • 学科 Microbiology.;Agricultural engineering.;Environmental engineering.;Environmental science.;Ecology.
  • 学位 Ph.D.
  • 年度 2001
  • 页码 180 p.
  • 总页数 180
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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