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蓝藻生物燃料生产改进策略的最新进展综述

Review of recent advances in improvement strategies for biofuels production from cyanobacteria.

作者信息

Mescouto Vanessa Albuquerque de, Ferreira Lucas da Cunha, Paiva Rutiléia de Jesus, Oliveira Deborah Terra de, Santana Mozaniel Oliveira, Rocha Filho Geraldo Narciso da, Luque Rafael, Noronha Renata Coelho Rodrigues, Nascimento Luís Adriano Santos do

机构信息

Graduate Program in Biotechnology, Universidade Federal do Pará, Augusto Corrêa Street, Guamá, Belém, PA, 66075-110, Brazil.

Laboratório Adolpho Ducke-Coordenação de Botânica, Museu Paraense Emílio Goeldi, Av. Perimetral, 1901, Terra Firme, Belém, 66077-830, PA, Brazil.

出版信息

Heliyon. 2024 Nov 8;10(22):e40293. doi: 10.1016/j.heliyon.2024.e40293. eCollection 2024 Nov 30.

Abstract

Cyanobacteria, a group of photosynthetic bacteria capable of converting sunlight and carbon dioxide into organic compounds, are being explored as a potential source for the production of biofuels. They have the ability to produce various types of biofuels, such as ethanol, hydrogen, and biodiesel. This study is a systematic review of scientific articles published between 2011 and 2022, focusing on the optimization of cyanobacteria cultivation for biofuel production. The results indicated that the most favorable temperature for the cultivation of cyanobacteria is around 30-40 °C. In addition, there is a relationship between temperature, light, and nutrients to increase the production of lipids of interest for biofuel production. With the advancement of technological tools, researchers can genetically manipulate these bacteria to increase the production of desired molecules, such as lipids or alcohol, by introducing genes that encode enzymes involved in the biosynthesis of these molecules. Once the cyanobacteria have been modified to produce the desired molecules, they can be cultivated in large-scale bioreactors and harvested for further processing. However, despite the great potential of cyanobacteria-based biofuel production, there are still challenges to be overcome. These include improving the efficiency and scalability of the production process, optimizing the composition of the produced biofuels, and reducing production costs. With continuous research and development, biofuels produced using cyanobacteria can play a significant role in meeting a substantial portion of the high energy demand.

摘要

蓝藻是一类能够将阳光和二氧化碳转化为有机化合物的光合细菌,目前正被探索作为生物燃料生产的潜在来源。它们有能力生产各种类型的生物燃料,如乙醇、氢气和生物柴油。本研究是对2011年至2022年间发表的科学文章的系统综述,重点是优化用于生物燃料生产的蓝藻培养。结果表明,培养蓝藻最适宜的温度约为30-40摄氏度。此外,温度、光照和营养物质之间存在关系,可提高用于生物燃料生产的目标脂质的产量。随着技术工具的进步,研究人员可以通过引入编码参与这些分子生物合成的酶的基因,对这些细菌进行基因改造,以增加所需分子(如脂质或酒精)的产量。一旦蓝藻经过改造以产生所需分子,就可以在大型生物反应器中培养并收获以进行进一步加工。然而,尽管基于蓝藻的生物燃料生产潜力巨大,但仍有一些挑战需要克服。这些挑战包括提高生产过程的效率和可扩展性、优化所生产生物燃料的成分以及降低生产成本。随着持续的研发,利用蓝藻生产的生物燃料可以在满足很大一部分高能源需求方面发挥重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5594/11609329/7c4911267ed8/ga1.jpg

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