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评估海洋微藻黄化棕囊藻(Chrysochromulina rotalis)作为生物活性饲料原料,在易于部署的基于发光二极管的管式光生物反应器中进行培养。

Assessment of the marine microalga Chrysochromulina rotalis as bioactive feedstock cultured in an easy-to-deploy light-emitting-diode-based tubular photobioreactor.

机构信息

Department of Chemical Engineering, Research Centre CIAIMBITAL, University of Almería, 04120 Almería, Spain.

Department of Chemical Engineering, Research Centre CIAIMBITAL, University of Almería, 04120 Almería, Spain; Research Centre CIAIMBITAL, University of Almería, 04120 Almería, Spain.

出版信息

Bioresour Technol. 2023 Dec;389:129818. doi: 10.1016/j.biortech.2023.129818. Epub 2023 Oct 2.

Abstract

Marine microalgae have potential to be low-cost raw materials. This depends on the exploitation of different biomass fractions for high-value products, including unique compounds. Chrysochromulina rotalis, an under-explored haptophyte with promising properties, was the focus of this study. For the first time, C. rotalis was successfully cultivated in an 80 L tubular photobioreactor, illuminated by an easy-to-use light-emitting-diode-based system. C. rotalis grew without certain trace elements and showed adaptability to different phosphorus sources, allowing a significant reduction in the N:P ratio without compromising biomass yield and productivity. The design features of the photobioreactor provided a protective environment that ensured consistent biomass production from this shear-sensitive microalgae. Carotenoid analysis showed fucoxanthin and its derivatives as major components, with essential fatty acids making up a significant proportion of the total. The study emphasizes the tubular photobioreactor's role in sustainable biomass production for biorefineries, with C. rotalis as a valuable bioactive feedstock.

摘要

海洋微藻有可能成为低成本的原材料。这取决于对不同生物质部分的开发,以生产高价值产品,包括独特的化合物。Chrysochromulina rotalis 是一种研究较少的甲藻,具有有前途的特性,是本研究的重点。首次在 80L 管状光生物反应器中成功培养 Chrysochromulina rotalis,该反应器由易于使用的基于发光二极管的系统照明。Chrysochromulina rotalis 在没有某些痕量元素的情况下生长,并能适应不同的磷源,在不影响生物量产量和生产力的情况下,显著降低 N:P 比。光生物反应器的设计特点提供了一个保护性的环境,确保了这种对剪切敏感的微藻的持续生物量生产。类胡萝卜素分析表明,岩藻黄素及其衍生物是主要成分,必需脂肪酸占总脂肪酸的很大比例。该研究强调了管状光生物反应器在生物炼制中可持续生物质生产中的作用,Chrysochromulina rotalis 是一种有价值的生物活性饲料。

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