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用于从制浆造纸工业侧流中生产乳酸和琥珀酸的生物过程优化。

Bioprocess optimization for lactic and succinic acid production from a pulp and paper industry side stream.

作者信息

Olszewska-Widdrat Agata, Xiros Charilaos, Wallenius Anders, Schneider Roland, Rios da Costa Pereira Laís Portugal, Venus Joachim

机构信息

Microbiome Biotechnology Department, Leibniz Institute for Agricultural Engineering and Bioeconomy (ATB), Potsdam, Germany.

RISE Processum AB, Örnsköldsvik, Sweden.

出版信息

Front Bioeng Biotechnol. 2023 May 18;11:1176043. doi: 10.3389/fbioe.2023.1176043. eCollection 2023.

Abstract

The effective and cheap production of platform chemicals is a crucial step towards the transition to a bio-based economy. In this work, biotechnological methods using sustainable, cheap, and readily available raw materials bring bio-economy and industrial microbiology together: Microbial production of two platform chemicals is demonstrated [lactic (LA) and succinic acid (SA)] from a non-expensive side stream of pulp and paper industry (fibre sludge) proposing a sustainable way to valorize it towards economically important monomers for bioplastics formation. This work showed a promising new route for their microbial production which can pave the way for new market expectations within the circular economy principles. Fibre sludge was enzymatically hydrolysed for 72 h to generate a glucose rich hydrolysate (100 g·L glucose content) to serve as fermentation medium for A 541, A162 strains and B1, as well as B2. All microorganisms were investigated in batch fermentations, showing the ability to produce either lactic or succinic acid, respectively. The highest yield and productivities for lactic production were 0.99 g·g and 3.75 g·L·h whereas the succinic acid production stabilized at 0.77 g·g and 1.16 g·L·h.

摘要

平台化学品的高效廉价生产是向生物基经济转型的关键一步。在这项工作中,利用可持续、廉价且易于获取的原材料的生物技术方法将生物经济与工业微生物学结合在一起:展示了从制浆造纸工业的一种非昂贵副产物(纤维污泥)中微生物生产两种平台化学品[乳酸(LA)和琥珀酸(SA)],提出了一种将其增值为用于生物塑料形成的具有经济重要性的单体的可持续方法。这项工作展示了它们微生物生产的一条有前景的新途径,这可以为循环经济原则下的新市场预期铺平道路。纤维污泥经酶解72小时以产生富含葡萄糖的水解产物(葡萄糖含量为100 g·L),用作A 541、A162菌株以及B1和B2的发酵培养基。所有微生物均在分批发酵中进行了研究,分别显示出产生乳酸或琥珀酸的能力。乳酸生产的最高产率和生产率分别为0.99 g·g和3.75 g·L·h,而琥珀酸生产稳定在0.77 g·g和1.16 g·L·h。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/676e/10232882/a74f0f2d68b0/fbioe-11-1176043-g001.jpg

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