Department of Biotechnology, St. Joseph's College of Engineering, Chennai, India.
Department of Biotechnology, St. Joseph's College of Engineering, Chennai, India.
Chemosphere. 2023 Oct;339:139724. doi: 10.1016/j.chemosphere.2023.139724. Epub 2023 Aug 2.
Marine macroalgae have attracted significant interest as a viable resource for biofuel and value-added chemical production due to their abundant availability, low production costs, and high carbohydrate and lipid content. The growing awareness of socio-economic factors worldwide has led to a greater consideration of marine macroalgae as a sustainable source for biofuel production and the generation of valuable products. The integration of biorefinery techniques into biofuel production processes holds immense potential for fostering the development of a circular bioeconomy on a broad scale. Extensive research was focused on the technoeconomic and environmental impact analysis of biofuel production from macroalgal biomass. The integrated biorefinery processes offers valuable pathways for the practical implementation of macroalgae in diverse conversion technologies. These studies provided crucial insights into the large-scale industrial production of biofuels and associated by-products. This review explores the utilization of marine macroalgal biomass for the production of biofuels and biochemicals. It examines the application of assessment tools for evaluating the sustainability of biorefinery processes, including process integration and optimization, life cycle assessment, techno-economic analysis, socio-economic analysis, and multi-criteria decision analysis. The review also discusses the limitations, bottlenecks, challenges, and future perspectives associated with utilizing macroalgal biomass for the production of biofuels and value-added chemicals.
海洋大型藻类作为生物燃料和高附加值化学品生产的可行资源,因其丰富的可用性、低成本的生产以及高碳水化合物和脂质含量而受到极大关注。全球对社会经济因素的认识不断提高,使人们更加关注海洋大型藻类作为生物燃料生产和有价值产品生成的可持续来源。生物炼制技术与生物燃料生产过程的融合为大规模发展循环生物经济提供了巨大潜力。广泛的研究集中在从大型藻类生物质生产生物燃料的技术经济和环境影响分析上。综合生物炼制工艺为在各种转化技术中实际应用大型藻类提供了有价值的途径。这些研究为生物燃料和相关副产品的大规模工业生产提供了重要的见解。本文探讨了利用海洋大型藻类生物质生产生物燃料和生物化学物质的问题。它考察了评估生物炼制过程可持续性的评估工具的应用,包括过程集成和优化、生命周期评估、技术经济分析、社会经济分析和多准则决策分析。本文还讨论了利用大型藻类生物质生产生物燃料和高附加值化学品所涉及的限制、瓶颈、挑战和未来展望。