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基于纳秒级脉冲电场处理的微藻生物炼制技术根据潜在的微生物生态系统来控制生长促进或选择性失活。

Nanosecond pulsed electric field processing of microalgae based biorefineries governs growth promotion or selective inactivation based on underlying microbial ecosystems.

机构信息

Swiss Federal Institute of Technology (ETH), Zurich, Institute of Food, Nutrition and Health, Sustainable Food Processing Laboratory, Schmelzbergstrasse 9, Zurich 8092, Switzerland.

出版信息

Bioresour Technol. 2021 Jan;319:124173. doi: 10.1016/j.biortech.2020.124173. Epub 2020 Sep 24.

Abstract

Nanosecond pulsed electric field treatment (nsPEF) is a technology-driven, resource-efficient approach fostering microalgae biorefineries for transforming them into economically viable scenarios. A processing window of 100 ns, 7 Hz, and 10 kV cm significantly leveraged phototrophic Chlorella vulgaris and bacterial counts up to + 50.1 ± 12.2% and + 77.0 ± 37.4%, respectively (n = 4; p < 0.05) in non-axenic cultures. Applying the same processing window decreased C. vulgaris (-17.1 ± 13.8%) and prokaryotic (-82.7 ± 14.6%) counts owing to alterations in the prokaryotic community diversity. Principle coordinate analysis of prokaryotic phenotypic fingerprints indicated that phenotype or metabolism related diversity changes in the prokaryotic community affected the treatment outcome. The study fosters the upsurge of industrial-scale nsPEF realization and the economic viability of microalgae biorefineries through improved process understanding and thus control. It perpetuates nsPEF applicability for microalgae feedstock production and several other applications within single-cell biorefineries in the bio-based domain.

摘要

纳秒脉冲电场处理(nsPEF)是一种技术驱动、资源高效的方法,可促进微藻生物精炼厂将其转化为经济可行的方案。处理窗口为 100ns、7Hz 和 10kV/cm,可分别将光养小球藻和细菌计数显著提高+50.1±12.2%和+77.0±37.4%(n=4;p<0.05),在非无菌培养中。应用相同的处理窗口会降低小球藻(-17.1±13.8%)和原核生物(-82.7±14.6%)的计数,这是由于原核生物群落多样性的改变。原核生物表型指纹图谱的主坐标分析表明,原核生物群落中与表型或代谢相关的多样性变化影响了处理结果。该研究通过提高对工艺的理解和控制,促进了工业规模纳秒脉冲电场处理的实现和微藻生物精炼厂的经济可行性。它使纳秒脉冲电场处理在微藻原料生产和生物基领域单细胞生物精炼厂中的其他几个应用中具有适用性。

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