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一种在需氧生物反应器培养过程中平衡乙酸乙酯和其他挥发性代谢产物微生物合成的新方法。

A new approach for balancing the microbial synthesis of ethyl acetate and other volatile metabolites during aerobic bioreactor cultivations.

作者信息

Löser Christian, Kupsch Christian, Walther Thomas, Hoffmann Andreas

机构信息

Chair of Bioprocess Engineering, Institute of Natural Materials Technology Technische Universität Dresden Dresden Germany.

出版信息

Eng Life Sci. 2020 Dec 21;21(3-4):137-153. doi: 10.1002/elsc.202000047. eCollection 2021 Mar.

Abstract

Ethyl acetate is an organic solvent with many industrial applications, currently produced by energy-intensive chemical processes based on fossil carbon resources. Ethyl acetate can be synthesized from renewable sugars by yeasts like in aerobic processes. However, ethyl acetate is highly volatile and thus stripped from aerated cultivation systems which complicate the quantification of the produced ester. Synthesis of volatile metabolites is commonly monitored by repeated analysis of metabolite concentrations in both the gas and liquid phase. In this study, a model-based method for quantifying the synthesis and degradation of volatile metabolites was developed. This quantification of volatiles is solely based on repeatedly measured gas-phase concentrations and allows calculation of reaction rates and yields in high temporal resolution. Parameters required for these calculations were determined in abiotic stripping tests. The developed method was validated for ethyl acetate, ethanol and acetaldehyde which were synthesized by DSM 5422 during an iron-limited batch cultivation; it was shown that the presented method is more precise and less time-consuming than the conventional method. The biomass-specific synthesis rate and the yield of ethyl acetate varied over time and exhibited distinct momentary maxima of 0.50 g gh and 0.38 g g at moderate iron limitation.

摘要

乙酸乙酯是一种具有多种工业用途的有机溶剂,目前通过基于化石碳资源的能源密集型化学工艺生产。乙酸乙酯可由酵母在需氧过程中从可再生糖合成。然而,乙酸乙酯挥发性很强,因此会从曝气培养系统中逸出,这使得所产生酯的定量变得复杂。挥发性代谢物的合成通常通过对气相和液相中代谢物浓度的重复分析来监测。在本研究中,开发了一种基于模型的方法来定量挥发性代谢物的合成和降解。这种挥发性物质的定量仅基于重复测量的气相浓度,并允许以高时间分辨率计算反应速率和产率。这些计算所需的参数在非生物汽提试验中确定。所开发的方法针对DSM 5422在铁限制分批培养过程中合成的乙酸乙酯、乙醇和乙醛进行了验证;结果表明,所提出的方法比传统方法更精确且耗时更少。在适度铁限制下,乙酸乙酯的生物量特异性合成速率和产率随时间变化,并呈现出明显的瞬时最大值,分别为0.50 g/g h和0.38 g/g。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a396/7923609/b2cc458e7380/ELSC-21-137-g003.jpg

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