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原位吸附来自犬齿黑粉菌发酵液中的衣康酸可提高生物工艺效率。

In situ adsorption of itaconic acid from fermentations of Ustilago cynodontis improves bioprocess efficiency.

作者信息

Pastoors Johannes, Deitert Alexander, Michel Carina, Günster Karsten, Finger Maurice, Hofstede Jordy, Deischter Jeff, Biselli Andreas, Viell Jörn, Palkovits Regina, Jupke Andreas, Büchs Jochen

机构信息

AVT-Biochemical Engineering, RWTH Aachen University, Forckenbeckstraße 51, 52074, Aachen, Germany.

AVT-Process Systems Engineering, RWTH Aachen University, Forckenbeckstraße 51, 52074, Aachen, Germany.

出版信息

Biotechnol Biofuels Bioprod. 2023 Nov 26;16(1):181. doi: 10.1186/s13068-023-02433-w.

Abstract

BACKGROUND

Reducing the costs of biorefinery processes is a crucial step in replacing petrochemical products by sustainable, biotechnological alternatives. Substrate costs and downstream processing present large potential for improvement of cost efficiency. The implementation of in situ adsorption as an energy-efficient product recovery method can reduce costs in both areas. While selective product separation is possible at ambient conditions, yield-limiting effects, as for example product inhibition, can be reduced in an integrated process.

RESULTS

An in situ adsorption process was integrated into the production of itaconic acid with Ustilago cynodontis IA, as an example of a promising biorefinery process. A suitable feed strategy was developed to enable efficient production and selective recovery of itaconic acid by maintaining optimal glucose concentrations. Online monitoring via Raman spectroscopy was implemented to enable a first process control and understand the interactions of metabolites with the adsorbent. In the final, integrated bioprocess, yield, titre, and space-time yield of the fermentation process were increased to values of 0.41 g/g, 126.5 g/L and 0.52 g/L/h. This corresponds to an increase of up to 30% in comparison to the first extended batch experiment without in situ product removal. Itaconic acid was recovered with a purity of at least 95% and high concentrations above 300 g/L in the eluate.

CONCLUSION

Integration of product separation via adsorption into the bioprocess was successfully conducted and improved the efficiency of itaconic acid production. Raman spectroscopy was proven to be a reliable tool for online monitoring of various metabolites and facilitated design and validation of the complex separation and feed process. The general process concept can be transferred to the production of various similar bioproducts, expanding the tool kit for design of innovative biorefinery processes.

摘要

背景

降低生物炼制过程的成本是用可持续的生物技术替代品取代石化产品的关键一步。底物成本和下游加工在提高成本效率方面具有很大的改进潜力。采用原位吸附作为一种节能的产品回收方法可以在这两个方面降低成本。虽然在环境条件下可以进行选择性产品分离,但在综合过程中可以减少诸如产品抑制等产量限制效应。

结果

以坚齿黑粉菌IA生产衣康酸为例,将原位吸附过程整合到一个有前景的生物炼制过程中。开发了一种合适的进料策略,通过维持最佳葡萄糖浓度来实现衣康酸的高效生产和选择性回收。采用拉曼光谱进行在线监测,以实现初步的过程控制,并了解代谢物与吸附剂之间的相互作用。在最终的综合生物过程中,发酵过程的产量、滴度和时空产率分别提高到0.41 g/g、126.5 g/L和0.52 g/L/h。与没有原位产品去除的首次延长分批实验相比,这相当于提高了高达30%。衣康酸的回收率至少为95%,洗脱液中的浓度高于300 g/L。

结论

通过吸附进行产品分离成功地整合到生物过程中,提高了衣康酸的生产效率。事实证明,拉曼光谱是在线监测各种代谢物的可靠工具,有助于复杂分离和进料过程的设计和验证。一般的工艺概念可以转移到各种类似生物产品的生产中,扩展了创新生物炼制工艺设计的工具包。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f9de/10676596/8fef4558bfed/13068_2023_2433_Fig1_HTML.jpg

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