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纳米增强微藻生物工艺的进展。

Advancements in Nano-Enhanced microalgae bioprocessing.

机构信息

Institute of Aquatic Science and Technology, College of Hydrosphere, National Kaohsiung University of Science and Technology, Kaohsiung City 81157, Taiwan.

Institute of Aquatic Science and Technology, College of Hydrosphere, National Kaohsiung University of Science and Technology, Kaohsiung City 81157, Taiwan; Department of Marine Environmental Engineering, National Kaohsiung University of Science and Technology, Kaohsiung City, Taiwan.

出版信息

Bioresour Technol. 2024 Jun;401:130749. doi: 10.1016/j.biortech.2024.130749. Epub 2024 Apr 26.

Abstract

Microalgae are promising sources of valuable compounds: carotenoids, polyunsaturated fatty acids, lipids, etc. To overcome the feasibility challenge due to low yield and attain commercial potential, researchers merge technologies to enhance algal bioprocess. In this context, nanomaterials are attractive for enhancing microalgal bioprocessing, from cultivation to downstream extraction. Nanomaterials enhance biomass and product yields (mainly lipid and carotenoids) through improved nutrient uptake and stress tolerance during cultivation. They also provide mechanistic insights from recent studies. They also revolutionize harvesting via nano-induced sedimentation, flocculation, and flotation. Downstream processing benefits from nanomaterials, improving extraction and purification. Special attention is given to cost-effective extraction, showcasing nanomaterial integration, and providing a comparative account. The review also profiles nanomaterial types, including metallic nanoparticles, magnetic nanomaterials, carbon-based nanomaterials, silica nanoparticles, polymers, and functionalized nanomaterials. Challenges and future trends are discussed, emphasizing nanomaterials' role in advancing sustainable and efficient microalgal bioprocessing, unlocking their potential for bio-based industries.

摘要

微藻是有价值化合物的有前途的来源

类胡萝卜素、多不饱和脂肪酸、脂质等。为了克服由于产量低而导致的可行性挑战,并实现商业潜力,研究人员将技术融合以增强藻类的生物工艺。在这种情况下,纳米材料通过改善培养过程中的养分吸收和耐胁迫性,为藻类生物工艺的增强提供了吸引力,从培养到下游提取。纳米材料还提供了最近研究的机理见解。它们还通过纳米诱导的沉降、絮凝和浮选来彻底改变收获。下游加工得益于纳米材料,可提高提取和纯化效率。特别关注具有成本效益的提取方法,展示了纳米材料的整合,并提供了对比说明。该综述还介绍了纳米材料的类型,包括金属纳米粒子、磁性纳米材料、碳基纳米材料、硅纳米粒子、聚合物和功能化纳米材料。讨论了挑战和未来趋势,强调了纳米材料在推进可持续和高效藻类生物工艺中的作用,为生物基产业释放其潜力。

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