Tong Kevin Tian Xiang, Tan Inn Shi, Foo Henry Chee Yew, Lam Man Kee, Lim Steven, Lee Keat Teong
Department of Chemical and Energy Engineering, Faculty of Engineering and Science, Curtin University Malaysia, CDT 250, 98009 Miri, Sarawak, Malaysia.
Chemical Engineering Department, Universiti Teknologi PETRONAS, 32610 Seri Iskandar, Perak, Malaysia.
Biomass Convers Biorefin. 2022 Mar 17:1-37. doi: 10.1007/s13399-022-02561-7.
The extensive growth of energy and plastic demand has raised concerns over the depletion of fossil fuels. Moreover, the environmental conundrums worldwide integrated with global warming and improper plastic waste management have led to the development of sustainable and environmentally friendly biofuel (bioethanol) and biopolymer (lactic acid, LA) derived from biomass for fossil fuels replacement and biodegradable plastic production, respectively. However, the high production cost of bioethanol and LA had limited its industrial-scale production. This paper has comprehensively reviewed the potential and development of third-generation feedstock for bioethanol and LA production, including significant technological barriers to be overcome for potential commercialization purposes. Then, an insight into the state-of-the-art hydrolysis and fermentation technologies using macroalgae as feedstock is also deliberated in detail. Lastly, the sustainability aspect and perspective of macroalgae biomass are evaluated economically and environmentally using a developed cascading system associated with techno-economic analysis and life cycle assessment, which represent the highlights of this review paper. Furthermore, this review provides a conceivable picture of macroalgae-based bioethanol and lactic acid biorefinery and future research directions that can be served as an important guideline for scientists, policymakers, and industrial players.
能源和塑料需求的大幅增长引发了人们对化石燃料枯竭的担忧。此外,全球范围内与全球变暖以及不当塑料垃圾管理相关的环境难题,促使人们开发出可持续且环保的生物燃料(生物乙醇)和生物聚合物(乳酸,LA),它们分别源自生物质,用于替代化石燃料和生产可生物降解塑料。然而,生物乙醇和LA的高生产成本限制了其工业化规模生产。本文全面综述了用于生物乙醇和LA生产的第三代原料的潜力与发展,包括为实现潜在商业化需要克服的重大技术障碍。随后,还详细探讨了以大型藻类为原料的最新水解和发酵技术。最后,利用与技术经济分析和生命周期评估相关的先进级联系统,从经济和环境角度评估了大型藻类生物质的可持续性方面及前景,这也是本文的亮点。此外,本综述提供了基于大型藻类的生物乙醇和乳酸生物精炼厂的可设想图景以及未来研究方向,可为科学家、政策制定者和行业参与者提供重要指导。