Ahmad Ashfaq, Banat Fawzi, Alsafar Habiba, Hasan Shadi W
Department of Chemical Engineering, Khalifa University of Science and Technology, P.O. Box 127788, Abu Dhabi, United Arab Emirates.
Department of Biomedical Engineering, College of Engineering, Khalifa University of Science and Technology, P.O. Box 127788, Abu Dhabi, United Arab Emirates.
Sci Total Environ. 2022 Feb 1;806(Pt 2):150585. doi: 10.1016/j.scitotenv.2021.150585. Epub 2021 Sep 28.
A growing world population is causing hazardous compounds to form at an increasingly rapid rate, calling for ecological action. Wastewater management and treatment is an expensive process that requires appropriate integration technology to make it more feasible and cost-effective. Algae are of great interest as potential feedstocks for various applications, including environmental sustainability, biofuel production, and the manufacture of high-value bioproducts. Bioremediation with microalgae is a potential approach to reduce wastewater pollution. The need for effective nutrient recovery, greenhouse gas reduction, wastewater treatment, and biomass reuse has led to a wide interest in the use of microalgae for wastewater treatment. Furthermore, algae biomass can be used to produce bioenergy and high-value bioproducts. The use of microalgae as medicine (production of bioactive and medicinal compounds), biofuels, biofertilizers, and food additives has been explored by researchers around the world. Technological and economic barriers currently prevent the commercial use of algae, and optimal downstream processes are needed to reduce production costs. Therefore, the simultaneous use of microalgae for wastewater treatment and biofuel production could be an economical approach to address these issues. This article provides an overview of algae and their application in bioremediation, bioenergy production, and bioactive compound production. It also highlights the current problems and opportunities in the algae-based sector, which has recently become quite promising.
不断增长的世界人口正导致有害化合物以越来越快的速度形成,这就需要采取生态行动。废水管理和处理是一个昂贵的过程,需要适当的整合技术使其更可行且更具成本效益。藻类作为各种应用的潜在原料备受关注,包括环境可持续性、生物燃料生产以及高价值生物产品的制造。利用微藻进行生物修复是减少废水污染的一种潜在方法。对有效养分回收、减少温室气体排放、废水处理和生物质再利用的需求,引发了人们对利用微藻处理废水的广泛兴趣。此外,藻类生物质可用于生产生物能源和高价值生物产品。世界各地的研究人员已经探索了将微藻用作药物(生产生物活性和药用化合物)、生物燃料、生物肥料和食品添加剂的用途。目前,技术和经济障碍阻碍了藻类的商业应用,需要优化下游工艺以降低生产成本。因此,同时利用微藻处理废水和生产生物燃料可能是解决这些问题的一种经济方法。本文概述了藻类及其在生物修复、生物能源生产和生物活性化合物生产中的应用。它还强调了基于藻类的领域目前存在的问题和机遇,该领域最近已变得颇具前景。