Departamento de Pesca e Aquicultura, Universidade Federal Rural de Pernambuco, Recife, Brazil.
School of Mechanical Engineering, Sathyabama Institute of Science and Technology, Chennai, India.
J Environ Manage. 2022 Oct 15;320:115897. doi: 10.1016/j.jenvman.2022.115897. Epub 2022 Aug 7.
The increased demands and dependence on depleted oil reserves, accompanied by global warming and climate change have driven the world to explore and develop new strategies for global sustainable development. Among sustainable biomass sources, microalgae represent a promising alternative to fossil fuel and can contribute to the achievement of important Sustainable Development Goals (SDGs). This article has reviewed the various applications of microalgal biomass that includes (i) the use in aquaculture and its sustainability; (ii) commercial value and emerging extraction strategies of carotenoids; (iii) biofuels from microalgae and their application in internal combustion engines; (iv) the use and reuse of water in microalgae cultivation; and (v) microalgae biotechnology as a key factor to assist SDGs. The future prospects and challenges on the microalgae circular bio economy, issues with regard to the scale-up and water demand in microalgae cultivation are also highlighted.
对已枯竭石油储备日益增长的需求和依赖,加上全球变暖与气候变化,促使全世界探索和制定新的全球可持续发展战略。在可持续的生物质资源中,微藻是化石燃料的一种很有前途的替代品,有助于实现重要的可持续发展目标 (SDGs)。本文综述了微藻生物质的各种应用,包括 (i) 在水产养殖中的应用及其可持续性;(ii) 类胡萝卜素的商业价值和新兴提取策略;(iii) 微藻生物燃料及其在内燃机中的应用;(iv) 微藻培养中用水的使用和再利用;以及 (v) 微藻生物技术作为辅助 SDGs 的关键因素。本文还强调了微藻循环生物经济的未来前景和挑战,以及微藻培养中规模扩大和用水需求方面的问题。