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超声法用于微藻细胞破碎及产物提取:综述

Ultrasound for microalgal cell disruption and product extraction: A review.

机构信息

State Environmental Protection Key Laboratory of Drinking Water Source Management and Technology, Shenzhen Academy of Environmental Science, Shenzhen 518001, Guangdong, China.

Key Laboratory of Tropical Marine Ecosystem and Bioresource, Fourth Institute of Oceanography, Ministry of Natural Resources, Beihai 536000, Guangxi, China.

出版信息

Ultrason Sonochem. 2022 Jun;87:106054. doi: 10.1016/j.ultsonch.2022.106054. Epub 2022 Jun 1.

Abstract

Microalgae are a promising feedstock for the production of biofuels, nutraceuticals, pharmaceuticals and cosmetics, due to their superior capability of converting solar energy and CO into lipids, proteins, and other valuable bioactive compounds. To facilitate the release of these important biomolecules from microalgae, effective cell disruption is usually necessary, where the use of ultrasound has gained tremendous interests as an alternative to traditional methods. This review not only summarizes the mechanisms of and operation parameters affecting cell disruption, but also takes an insight into measuring techniques, synergistic integration with other disruption methods, and challenges of ultrasonication for microalgal biorefining. Optimal conditions including ultrasonic frequency, intensity, and duration, and liquid viscosity and sonochemical reactor are the key factors for maximizing the disruption and extraction efficiency. A combination of ultrasound with other disruption methods such as ozonation, microwave, homogenization, enzymatic lysis, and solvents facilitates cell disruption and release of target compounds, thus provides powerful solutions to commercial scale-up of ultrasound extraction for microalgal biorefining. It is concluded that ultrasonication is a sustainable "green" process, but more research and work are needed to upscale this process without sacrificing performance or consuming more energy.

摘要

微藻由于其将太阳能和 CO 转化为脂类、蛋白质和其他有价值的生物活性化合物的卓越能力,是生产生物燃料、营养保健品、药物和化妆品的有前途的原料。为了促进这些重要生物分子从微藻中的释放,通常需要有效的细胞破碎,而超声作为传统方法的替代方法已经引起了极大的兴趣。本综述不仅总结了细胞破碎的机制和影响细胞破碎的操作参数,还深入探讨了测量技术、与其他破碎方法的协同集成以及超声处理在微藻生物炼制中的挑战。最佳条件包括超声频率、强度和持续时间以及液体粘度和声化学反应器是最大化破碎和提取效率的关键因素。超声与臭氧、微波、匀浆、酶解和溶剂等其他破碎方法的结合促进了细胞破碎和目标化合物的释放,从而为微藻生物炼制的超声提取的工业化规模提供了强大的解决方案。结论是,超声处理是一种可持续的“绿色”工艺,但需要进一步研究和工作,以在不牺牲性能或消耗更多能源的情况下扩大该工艺的规模。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/46e0/9175141/8fd086ee3eba/ga1.jpg

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