Department of Basic and Applied Sciences, School of Engineering and Sciences, GD Goenka University, Gurugram, Haryana, India.
Ecosystem Research Laboratory, Department of Environmental Science, School of Earth, Biological and Environmental Sciences, Central University of South Bihar, Fatehpur, Gaya, Bihar, India.
Biotechnol Genet Eng Rev. 2022 Apr;38(1):111-131. doi: 10.1080/02648725.2022.2053319. Epub 2022 Mar 27.
The greenhouse gas emission from fossil fuel and higher economic cost in its transportation are stimulating scientists to explore biomass energy production at the local level. In the present review, the authors have explored the prospects of commercial-scale biofuels production from the microalgal group, diatoms. Insights on suitability of mass cultivation systems for large-scale production of diatoms have been deliberated based on published literature. Diatoms can proliferate extracting nutrients from the wastewater and the same biomass can be harvested for biofuel production. Residues can be further utilized for the formation of other bioproducts and biofertilizers. The residual applications of diatoms from mass culture are estimated to compensate for the additional costs incurred in the removal of impurities. Well-planned research is required to optimize the commercial-scale production of biofuels from diatoms. The aim of this review is therefore, to demonstrate the economically feasible, hygienically safe cultivation of diatoms on nutrients from wastewater, limitations in using diatoms for biofuel production, and how these limitations can be shorted out for optimum utilization of diatom for biofuel production.
化石燃料的温室气体排放和运输成本的增加,促使科学家们在当地层面探索生物质能源的生产。在本综述中,作者探讨了利用微藻群体——硅藻来大规模生产商业生物燃料的前景。根据已发表的文献,对大规模培养系统适合大规模生产硅藻的情况进行了审议。硅藻可以从废水中提取营养物质进行繁殖,同样的生物质可以收获用于生物燃料生产。残留物可以进一步用于形成其他生物制品和生物肥料。从大规模培养中获得的硅藻的剩余应用估计可以弥补去除杂质所产生的额外成本。需要进行精心规划的研究,以优化从硅藻生产生物燃料的商业规模。因此,本综述的目的是展示在利用废水营养物质进行经济可行、卫生安全的硅藻培养,以及利用硅藻生产生物燃料的局限性,以及如何克服这些局限性,以实现硅藻生物燃料生产的最佳利用。