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首页> 外文期刊>Biofuels, bioproducts & biorefining: Biofpr >A sustainable perspective of microalgal biorefinery for co-production and recovery of high-value carotenoid and biofuel with CO2 valorization
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A sustainable perspective of microalgal biorefinery for co-production and recovery of high-value carotenoid and biofuel with CO2 valorization

机译:微藻生物素治疗高价值类胡萝卜素和生物燃料的微藻生物灌注,CO2 Valorization

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Process biotechnology can play a very important role in addressing contemporary global challenges in the areas of energy, the environment, and healthcare. This review discusses the development of a biorefinery model using sustainable feedstocks such as microalgal biomass, with multiple benefits. As a case study, it demonstrates the development of a microalgal biorefinery to produce lipid for biofuel and carotenoids like lutein for healthcare applications, along with CO2 mitigation. However, there has been a question mark regarding the economic viability of microalgal biorefinery, mainly for low biomass and product yields and discrete downstream processing steps. To provide sustainable solutions for these technological challenges, process intensification strategies can be implemented to enhance the yields of biomass-derived biofuels and value-added products. This article investigates the design aspects of photo-bioreactors to enhance biomass productivity and CO2 sequestration. Despite efforts made by researchers to improve product yields, there is ample scope to improve the economic viability of lutein and lipid production by integrating upstream and downstream operations to reduce the cost associated with the process. The future of algal biorefineries will rely on the development of rationally integrated genome and process-scale engineering strategies to improve further the production of lipid and carotenoids. This review critically analyzes the current state of the art and presents the future prospects for microalgal biorefinery to address some of the challenges in the areas of healthcare, energy, and the environment. (c) 2020 Society of Chemical Industry and John Wiley & Sons, Ltd
机译:过程生物技术可以在解决能源,环境和医疗保健领域的当代全球挑战方面发挥非常重要的作用。本次审查讨论了使用可持续原料等微藻生物质,具有多种益处的生物遗产模型的开发。作为一个案例研究,它证明了微藻生物遗料的发展,以生产用于医疗应用的叶黄素等生物燃料和类胡萝卜素的脂质,以及CO 2缓解。然而,有关于微藻生物术的经济可行性的问标志,主要用于低生物质和产物产量和离散的下游加工步骤。为这些技术挑战提供可持续解决方案,可以实施过程强化策略,以增强生物量衍生的生物燃料和增值产品的产量。本文研究了光生物反应器的设计方面,以提高生物量生产率和CO2封存。尽管研究人员提出了提高产品产量的努力,但通过整合上游和下游操作来降低与该过程相关的成本,可以提高叶黄素和脂质生产的经济可行性。藻类生物猎物的未来将依赖于理性综合基因组和过程规模工程策略的发展,以进一步提高脂质和类胡萝卜素的生产。本综述分析了现有技术的现状,并提出了微藻生物术语的未来前景,以解决医疗保健,能源和环境领域的一些挑战。 (c)2020化学工业协会和约翰瓦里和儿子有限公司

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