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三种筛选方法比较,以选择混合酸发酵的混合微生物接种物。

Comparison of three screening methods to select mixed-microbial inoculum for mixed-acid fermentations.

机构信息

Department of Chemical Engineering, Texas A&M University, College Station, TX 78453, USA.

出版信息

Bioresour Technol. 2013 Feb;130:739-49. doi: 10.1016/j.biortech.2012.10.010. Epub 2012 Oct 13.

Abstract

Using a mixed culture of microorganisms, the carboxylate platform converts biomass into hydrocarbons and chemicals. To develop a method that identifies the highest performing inoculum for carboxylate fermentations, five bacterial communities were screened and ranked by three fermentation performance tests: (1) 30-day batch screen, (2) 28-day continuum particle distribution model (CPDM), and (3) 5-month continuous countercurrent fermentation trains. To screen numerous inocula sources, these tests were used sequentially in an aseptic environment. For the batch-fermentation screen, Inoculum 1 achieved the highest conversion. For the CPDM evaluation, the operating map for Inoculum 1 had the highest performance. For the continuous countercurrent fermentation, the train resulting from Inoculum 1 was among the best performers. This study suggests that the three screens are a useful and predictive method for choosing optimal inocula sources. The bacterial community with optimal performance in these three screens could be considered for use in commercial-scale fermentations.

摘要

利用微生物混合培养物,羧酸盐平台将生物质转化为碳氢化合物和化学品。为了开发一种方法来确定羧酸盐发酵中表现最佳的接种物,我们筛选了五个细菌群落,并通过三种发酵性能测试进行了排名:(1)30 天批处理筛选,(2)28 天连续颗粒分布模型(CPDM),以及(3)5 个月连续逆流发酵列车。为了筛选众多的接种物来源,这些测试在无菌环境中依次使用。对于批处理发酵筛选,接种物 1 的转化率最高。对于 CPDM 评估,接种物 1 的操作图具有最高的性能。对于连续逆流发酵,来自接种物 1 的列车是表现最好的列车之一。本研究表明,这三个筛选是选择最佳接种物来源的有用且有预测性的方法。在这三个筛选中表现最佳的细菌群落可以考虑用于商业规模的发酵。

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