ZheJiang JuNeng Co., Ltd., TongXiang, Zhejiang Province, China.
Department of Chemical Engineering, National Taiwan University of Science and Technology, Taipei 106, Taiwan.
Bioresour Technol. 2015 May;184:258-266. doi: 10.1016/j.biortech.2014.10.139. Epub 2014 Nov 5.
Production of intracellular metabolites or biofuels from algae involves various processing steps, and extensive work on laboratory- and pilot-scale algae cultivation, harvesting and processing has been reported. As algal drying and cell disruption are integral processes of the unit operations, this review examines recent advances in algal drying and disruption for nutrition or biofuel production. Challenges and prospects of the processing are also outlined. Engineering improvements in addressing the challenges of energy efficiency and cost-effective and rigorous techno-economic analyses for a clearer prospect comparison between different processing methods are highlighted. Holistic life cycle assessments need to be conducted in assessing the energy balance and the potential environmental impacts of algal processing. The review aims to provide useful information for future development of efficient and commercially viable algal food products and biofuels production.
从藻类中生产细胞内代谢物或生物燃料涉及各种加工步骤,已经有大量关于实验室和中试规模藻类培养、收获和加工的工作报道。由于藻类干燥和细胞破碎是单元操作的组成部分,因此本综述考察了用于营养或生物燃料生产的藻类干燥和破碎的最新进展。还概述了处理过程中的挑战和前景。突出强调了在解决能源效率和具有成本效益的工程改进方面的挑战,并对不同处理方法进行了严格的技术经济分析,以更清晰地比较不同方法的前景。在评估藻类加工的能源平衡和潜在环境影响时,需要进行全面的生命周期评估。本综述旨在为高效和具有商业可行性的藻类食品产品和生物燃料生产的未来发展提供有用信息。