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用于大规模生产微藻生物质的生物技术:从大规模培养到获得干燥生物质

Biotechnologies for bulk production of microalgal biomass: from mass cultivation to dried biomass acquisition.

作者信息

Qin Song, Wang Kang, Gao Fengzheng, Ge Baosheng, Cui Hongli, Li Wenjun

机构信息

Yantai Institute of Coastal Zone Research, Chinese Academy of Sciences, No. 19, Chunhui Road, Laishan District, Yantai, 264003, Shandong, China.

University of Chinese Academy of Sciences, Beijing, 100049, China.

出版信息

Biotechnol Biofuels Bioprod. 2023 Aug 29;16(1):131. doi: 10.1186/s13068-023-02382-4.

Abstract

Microalgal biomass represents a sustainable bioresource for various applications, such as food, nutraceuticals, pharmaceuticals, feed, and other bio-based products. For decades, its mass production has attracted widespread attention and interest. The process of microalgal biomass production involves several techniques, mainly cultivation, harvesting, drying, and pollution control. These techniques are often designed and optimized to meet optimal growth conditions for microalgae and to produce high-quality biomass at acceptable cost. Importantly, mass production techniques are important for producing a commercial product in sufficient amounts. However, it should not be overlooked that microalgal biotechnology still faces challenges, in particular the high cost of production, the lack of knowledge about biological contaminants and the challenge of loss of active ingredients during biomass production. These issues involve the research and development of low-cost, standardized, industrial-scale production equipment and the optimization of production processes, as well as the urgent need to increase the research on biological contaminants and microalgal active ingredients. This review systematically examines the global development of microalgal biotechnology for biomass production, with emphasis on the techniques of cultivation, harvesting, drying and control of biological contaminants, and discusses the challenges and strategies to further improve quality and reduce costs. Moreover, the current status of biomass production of some biotechnologically important species has been summarized, and the importance of improving microalgae-related standards for their commercial applications is noted.

摘要

微藻生物质是一种可持续的生物资源,可用于多种应用,如食品、营养保健品、药品、饲料和其他生物基产品。几十年来,其大规模生产一直备受广泛关注和兴趣。微藻生物质生产过程涉及多种技术,主要包括培养、收获、干燥和污染控制。这些技术通常经过设计和优化,以满足微藻的最佳生长条件,并以可接受的成本生产高质量的生物质。重要的是,大规模生产技术对于生产足够数量的商业产品至关重要。然而,不应忽视的是,微藻生物技术仍然面临挑战,特别是生产成本高昂、对生物污染物缺乏了解以及生物质生产过程中活性成分损失的挑战。这些问题涉及低成本、标准化、工业规模生产设备的研发和生产工艺的优化,以及迫切需要加强对生物污染物和微藻活性成分的研究。本综述系统地考察了全球微藻生物技术用于生物质生产的发展情况,重点关注培养、收获、干燥和生物污染物控制技术,并讨论了进一步提高质量和降低成本的挑战与策略。此外,还总结了一些具有重要生物技术意义的物种的生物质生产现状,并指出了提高微藻相关标准以促进其商业应用的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9bac/10466707/8b90193a3eb5/13068_2023_2382_Fig1_HTML.jpg

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