Laboratoire Génie de L'Environnement Industriel, Ecole des Mines d'Alès, Alès Cedex, France.
J Appl Microbiol. 2009 Jul;107(1):85-96. doi: 10.1111/j.1365-2672.2009.04190.x. Epub 2009 Mar 3.
The aim of this work was to assess the impact of the applied mass loading on the selection of an efficient microbial community able to degrade a complex mixture of volatile organic compounds (VOCs).
Two reactors were used and were supplied with a gaseous effluent containing 11 VOCs with different concentrations. The response of the microflora was monitored as a function of time: biodegradation activity, bacterial density and diversity. The results showed that the applied mass loading seems to have an impact on the functioning and the genetic structure of the bacterial community.
A high mass loading seems to induce a low efficient functioning in terms of elimination efficiency and a simplification of the genetic structure of the total bacterial community with the apparition of a dominant microflora. A low mass loading seems to favour a better functioning and allows to keep a healthier bacterial diversity.
In the treatment processes of gaseous effluents, it would be judicious to define the functioning parameters of the process to keep the diversity of important functional bacterial groups. These results provide also useful information about changes in microbial communities following natural or anthropogenic alterations in different ecosystems.
本研究旨在评估施加的质量负荷对选择能够有效降解复杂挥发性有机化合物(VOC)混合物的高效微生物群落的影响。
使用两个反应器,并用含有 11 种不同浓度 VOC 的气态流出物进行供应。随着时间的推移监测微生物群的反应:生物降解活性、细菌密度和多样性。结果表明,施加的质量负荷似乎对细菌群落的功能和遗传结构有影响。
高质量负荷似乎会导致在去除效率方面的低效功能,并简化总细菌群落的遗传结构,出现优势微生物群落。低质量负荷似乎有利于更好的功能,并可以保持更健康的细菌多样性。
在处理气态流出物的过程中,明智的做法是定义过程的功能参数,以保持重要功能细菌群体的多样性。这些结果还为不同生态系统中自然或人为改变后微生物群落的变化提供了有用的信息。