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强化、千克级规模且环境友好:生物基酰化羟基苯乙烯的化学酶法合成

Intensified, Kilogram-Scaled, and Environment-Friendly: Chemoenzymatic Synthesis of Bio-Based Acylated Hydroxystyrenes.

作者信息

Petermeier Philipp, Domínguez de María Pablo, Byström Emil, Kara Selin

机构信息

Department of Biological and Chemical Engineering, Aarhus University, 8000 Aarhus C, Denmark.

SpinChem AB, Tvistevägen 48C, 90736 Umeå, Sweden.

出版信息

ACS Sustain Chem Eng. 2024 Aug 15;12(34):12869-12878. doi: 10.1021/acssuschemeng.4c03648. eCollection 2024 Aug 26.

Abstract

Lignin-derived styrene derivatives are versatile building blocks for the manufacture of biobased polymers. As shown previously, phenol-protected hydroxystyrenes are accessible under industrially sound conditions (>100 g L, >95% yield) by subjecting biogenic phenolic acids to enzymatic decarboxylation and base-catalyzed acylation in nonaqueous media (wet cyclopentyl methyl ether, CPME). Herein, we demonstrate the production of 1 kg of 4-acetoxy-3-methoxy-styrene in a 10 L reactor and present practical adjustments to the up- and downstream processing that warrant a straightforward process and high isolated yields. Additionally, an environmental assessment is conducted, starting with a thorough factor analysis to identify the sources that contribute most to the environmental burden (solvent and downstream processing). Also, the total CO production of the process is studied, including contributions from energy use and the treatment of generated wastes. The energy impact is evaluated through thermodynamic analysis, and the environmental footprint contributions by wastes-organic and aqueous fractions-are assessed based on CO emissions from solvent incineration and wastewater treatment, respectively. Overall, the holistic assessment of the process, its optimization, scale-up, product isolation, and environmental analysis indicate the feasibility of multistep chemoenzymatic reactions to deliver high-volume, low-value chemicals from biorefineries.

摘要

木质素衍生的苯乙烯衍生物是制造生物基聚合物的通用构建单元。如前所示,在工业可行的条件下(>100 g/L,>95%产率),通过使生物源酚酸在非水介质(湿环戊基甲基醚,CPME)中进行酶促脱羧和碱催化酰化反应,可获得苯酚保护的羟基苯乙烯。在此,我们展示了在10 L反应器中生产1 kg 4-乙酰氧基-3-甲氧基苯乙烯的过程,并介绍了对上游和下游工艺的实际调整,这些调整确保了工艺的简便性和高分离产率。此外,我们还进行了环境评估,首先进行全面的因素分析,以确定对环境负担贡献最大的来源(溶剂和下游工艺)。同时,研究了该工艺的总CO排放量,包括能源使用和产生废物处理的贡献。通过热力学分析评估能源影响,并分别根据溶剂焚烧和废水处理产生的CO排放评估有机和水相废物对环境足迹的贡献。总体而言,对该工艺的全面评估、优化、放大、产物分离和环境分析表明,通过多步化学酶促反应从生物精炼厂生产大容量、低价值化学品是可行的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5c65/11351705/0aad2b6f587e/sc4c03648_0001.jpg

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