Arora Kanika, Kumar Pradeep, Bose Debajyoti, Li Xiangkai, Kulshrestha Saurabh
Faculty of Applied Sciences and Biotechnology, Shoolini University of Biotechnology and Management Sciences, Solan, Himachal Pradesh 173212 India.
Ministry of Education Key Laboratory of Cell Activities and Stress Adaptations, School of Life Science, Lanzhou University, Tianshuinanlu, Gansu Province People's Republic of China.
3 Biotech. 2021 Jun;11(6):296. doi: 10.1007/s13205-021-02825-5. Epub 2021 May 24.
Algae have gained substantial importance as the most promising potential green fuel source across the globe and is on growing demand due to their antioxidant, anticancer, antiviral, antihypertensive, cholesterol reducing and thickening properties. Therefore, it has vast range of application in medicines, pharmaceutical, cosmetics, paper and nutraceutical industries. In this work, the remarkable ability of algae to convert CO and other toxic compounds in atmosphere to potential biofuels, foods, feeds and high-value bioactive compounds is reviewed. Algae produce approximately 50% of the earth's oxygen using its photosynthetic activity, thus acting as a potent tool to mitigate the effects of air pollution. Further, the applicability of algae as a desirable energy source has also been discussed, as they have the potential to serve as an effective alternative to intermittent renewable energy; and also, to combustion-based fossil fuel energy, making them effective for advanced biofuel conversions. This work also evaluates the current applications of algae and the implications of it as a potential substrate for bioplastic, natural alternative to inks and for making paper besides high-value products. In addition, the scope for integrated biorefinery approach is also briefly explored in terms of economic aspects at the industrial scale, as such energy conversion mechanisms are directly linked with sustainability, thus providing a positive overall energy outlook.
藻类作为全球最具潜力的绿色燃料来源已变得极为重要,并且由于其具有抗氧化、抗癌、抗病毒、抗高血压、降胆固醇和增稠特性,其需求也在不断增长。因此,它在医药、制药、化妆品、造纸和营养保健品行业有着广泛的应用。在这项工作中,我们综述了藻类将大气中的一氧化碳和其他有毒化合物转化为潜在生物燃料、食物、饲料和高价值生物活性化合物的卓越能力。藻类利用其光合作用产生了地球上约50%的氧气,因此是减轻空气污染影响的有力工具。此外,还讨论了藻类作为理想能源的适用性,因为它们有潜力成为间歇性可再生能源以及基于燃烧的化石燃料能源的有效替代品,从而使其对先进生物燃料转化有效。这项工作还评估了藻类的当前应用以及它作为生物塑料的潜在底物、油墨的天然替代品和除高价值产品外用于造纸的意义。此外,还从工业规模的经济方面简要探讨了综合生物炼制方法的前景,因为这种能量转换机制与可持续性直接相关,从而提供了积极的总体能源前景。