Mixotrophic and heterotrophic growth of microalgae using acetate from different production processes

IF 8.6 1区 环境科学与生态学 Q1 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Reviews in Environmental Science and Bio/Technology Pub Date : 2024-02-20 DOI:10.1007/s11157-024-09682-7
Giacomo Proietti Tocca, Valeria Agostino, Barbara Menin, Tonia Tommasi, Debora Fino, Fabrizio Di Caprio
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Abstract

The high metabolic flexibility and biodiversity of microalgae make them promising systems for the production of chemicals and high-value metabolites to be utilized in various industrial applications. Currently, microalgae are primarily cultivated in phototrophic processes or in fermenters using glucose as substrate. However, such configurations are often too costly for the majority of potential applications and require improvements. The use of acetate as substrate to enhance biomass productivity and reduce cost and environmental impacts is a promising solution. In a future bio-based economy, acetate can serve as an excellent intermediate to link many industrial facilities, as it can be synthesized using different technologies from renewable resources as CO2 and waste. This work provides a detailed description of acetate synthesis processes alternative to the conventional methanol carbonylation, including the pros and cons of each: aerobic and anaerobic fermentations; thermochemical treatments; C1 gas fermentation; microbial electrosynthesis and artificial photosynthesis. Additionally, the utilization of acetate as substrate for microalgae growth in mixotrophic and heterotrophic conditions is reviewed, covering key metabolic and engineering aspects (strains, yields, growth rate, inhibition, productivity, process configuration). These aspects serve as guidelines for a rationale design of an algal cultivation process based on acetate as a carbon source. Finally, the review critically assesses the state of the art of coupling of acetate-rich streams with algal biomass production, highlighting the pros and cons and addressing the main knowledge gaps to be filled through future research.

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微藻利用不同生产工艺产生的醋酸盐进行混养和异养生长
微藻类代谢的高度灵活性和生物多样性使其成为生产化学品和高价值代谢物的有前途的系统,可用于各种工业应用。目前,微藻类主要在光养过程中或以葡萄糖为底物的发酵罐中培养。然而,这种配置对于大多数潜在应用来说往往成本过高,需要加以改进。使用醋酸盐作为底物来提高生物量生产率并降低成本和对环境的影响是一个很有前景的解决方案。在未来的生物基经济中,醋酸酯可以作为连接许多工业设施的极佳中间体,因为它可以利用不同的技术从二氧化碳和废物等可再生资源中合成。本研究详细介绍了替代传统甲醇羰基化的醋酸酯合成工艺,包括每种工艺的优缺点:好氧和厌氧发酵;热化学处理;C1 气体发酵;微生物电合成和人工光合作用。此外,还综述了在混养和异养条件下利用醋酸盐作为底物促进微藻生长的情况,涵盖了关键的代谢和工程方面(菌种、产量、生长速度、抑制作用、生产率、工艺配置)。这些方面为合理设计以醋酸盐为碳源的藻类培养工艺提供了指导。最后,该综述对富含醋酸盐的溪流与藻类生物质生产耦合的技术现状进行了批判性评估,强调了其利弊,并探讨了未来研究中需要填补的主要知识空白。
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来源期刊
Reviews in Environmental Science and Bio/Technology
Reviews in Environmental Science and Bio/Technology Environmental Science-Waste Management and Disposal
CiteScore
25.00
自引率
1.40%
发文量
37
审稿时长
4.5 months
期刊介绍: Reviews in Environmental Science and Bio/Technology is a publication that offers easily comprehensible, reliable, and well-rounded perspectives and evaluations in the realm of environmental science and (bio)technology. It disseminates the most recent progressions and timely compilations of groundbreaking scientific discoveries, technological advancements, practical applications, policy developments, and societal concerns encompassing all facets of environmental science and (bio)technology. Furthermore, it tackles broader aspects beyond the natural sciences, incorporating subjects such as education, funding, policy-making, intellectual property, and societal influence.
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