Suppr超能文献

气态基质中的微生物生长。

Microbial growth with vapor-phase substrate.

机构信息

UFZ - Helmholtz Centre for Environmental Research, Department of Environmental Microbiology, Leipzig, Germany.

出版信息

Environ Pollut. 2011 Apr;159(4):858-64. doi: 10.1016/j.envpol.2010.12.032. Epub 2011 Feb 1.

Abstract

Limited information exists on influences of the diffusive transport of volatile organic contaminants (VOC) on bacterial activity in the unsaturated zone of the terrestrial subsurface. Diffusion of VOC in the vapor-phase is much more efficient than in water and results in effective VOC transport and high bioavailability despite restricted mobility of bacteria in the vadose zone. Since many bacteria tend to accumulate at solid-water, solid-air and air-water interfaces, such phase boundaries are of a special interest for VOC-biodegradation. In an attempt to evaluate microbial activity toward air-borne substrates, this study investigated the spatio-temporal interplay between growth of Pseudomonas putida (NAH7) on vapor-phase naphthalene (NAPH) and its repercussion on vapor-phase NAPH concentrations. Our data demonstrate that growth rates of strain PpG7 were inversely correlated to the distance from the source of vapor-phase NAPH. Despite the high gas phase diffusivity of NAPH, microbial growth was absent at distances above 5 cm from the source when sufficient biomass was located in between. This indicates a high efficiency of suspended bacteria to acquire vapor-phase compounds and influence headspace concentration gradients at the centimeter-scale. It further suggests a crucial role of microorganisms as biofilters for gas-phase VOC emanating from contaminated groundwater or soil.

摘要

关于挥发性有机污染物(VOC)的扩散传输对陆地地下水包气带中细菌活性的影响,目前相关信息有限。VOC 在气相中的扩散效率远远高于在水中,这导致尽管细菌在包气带中的迁移性受到限制,但仍能有效地进行 VOC 传输和高生物利用度。由于许多细菌往往会在固-水、固-气和气-水界面处积累,因此这些相间边界对于 VOC 生物降解具有特殊的意义。为了评估空气中底物对微生物的活性,本研究调查了恶臭假单胞菌(NAH7)在萘蒸气(NAPH)上生长的时空相互作用及其对蒸气 NAPH 浓度的影响。我们的数据表明,菌株 PpG7 的生长速率与萘蒸气源的距离呈反比关系。尽管萘的气相扩散率很高,但当足够的生物量位于两者之间时,距离源 5 厘米以上的地方就没有微生物生长,这表明悬浮细菌获取气相化合物并影响厘米级尺度上空腔浓度梯度的效率很高。这进一步表明微生物作为从受污染地下水或土壤中散发的气相 VOC 的生物过滤器的关键作用。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验