Laboratory of Cyanobacterial Biotechnology, Department of Biochemistry, Faculty of Science, Chulalongkorn University, Bangkok 10330, Thailand.
Department of Biotechnology, College of Science and Humanities, Ramapuram Campus, SRM Institute of Science and Technology, Bharathi Salai, Ramapuram, Chennai 600089, India.
Int J Mol Sci. 2022 Feb 27;23(5):2623. doi: 10.3390/ijms23052623.
Microalgae have received much interest as a biofuel feedstock. However, the economic feasibility of biofuel production from microalgae does not satisfy capital investors. Apart from the biofuels, it is necessary to produce high-value co-products from microalgae fraction to satisfy the economic aspects of microalgae biorefinery. In addition, microalgae-based wastewater treatment is considered as an alternative for the conventional wastewater treatment in terms of energy consumption, which is suitable for microalgae biorefinery approaches. The energy consumption of a microalgae wastewater treatment system (0.2 kW/h/m) was reduced 10 times when compared to the conventional wastewater treatment system (to 2 kW/h/m). Microalgae are rich in various biomolecules such as carbohydrates, proteins, lipids, pigments, vitamins, and antioxidants; all these valuable products can be utilized by nutritional, pharmaceutical, and cosmetic industries. There are several bottlenecks associated with microalgae biorefinery. Hence, it is essential to promote the sustainability of microalgal biorefinery with innovative ideas to produce biofuel with high-value products. This review attempted to bring out the trends and promising solutions to realize microalgal production of multiple products at an industrial scale. New perspectives and current challenges are discussed for the development of algal biorefinery concepts.
微藻作为生物燃料原料受到了广泛关注。然而,从微藻生产生物燃料的经济可行性并不符合资本投资者的要求。除了生物燃料之外,还需要从微藻馏分中生产高附加值的副产物,以满足微藻生物炼制厂的经济方面的要求。此外,与传统的废水处理相比,基于微藻的废水处理在能耗方面被认为是一种替代方法,这适合微藻生物炼制厂的方法。与传统的废水处理系统(2kW/h/m)相比,微藻废水处理系统的能耗(0.2kW/h/m)降低了 10 倍。微藻富含各种生物分子,如碳水化合物、蛋白质、脂质、色素、维生素和抗氧化剂;所有这些有价值的产品都可以被营养、制药和化妆品行业利用。微藻生物炼制厂存在几个瓶颈。因此,必须通过创新的理念来提高微藻生物炼制厂的可持续性,以生产具有高附加值产品的生物燃料。本综述试图提出实现工业规模生产多种产品的微藻生产的趋势和有前途的解决方案。讨论了新的观点和当前的挑战,以开发藻类生物炼制概念。