Department of Civil Engineering, Anna University Regional Campus, Tirunelveli, India.
Department of Physics, Anna University Regional Campus, Tirunelveli, India.
Bioresour Technol. 2020 Apr;302:122822. doi: 10.1016/j.biortech.2020.122822. Epub 2020 Jan 21.
Microalgae are source of third generation biofuel having the key advantage of high lipid productivity. In recent times, biorefinery is seen as promising option to further reduce the production cost of microalgae biofuel. However, exact energy balance analysis has not been performed on important biorefinery routes. In this aspect, three biorefinery routes, all based on lipid based biorefinery route are evaluated for economical production of microalgal biofuel and valorised products. Biorefinery route 1 involves production of biodiesel, pigments, and animal feed. Biorefinery route 2 involves biogas and pigments production and two stage fermentation, and third biorefinery route involves bio-hydrogen and pigments production. Finally, the technoeconomic assessment of three biorefinery routes were reviewed, net energy savings, and life-cycle costing approaches to economize microalgal biorefinery are suggested.
微藻是第三代生物燃料的来源,具有高脂质生产力的关键优势。在最近的一段时间里,生物炼制被视为降低微藻生物燃料生产成本的有前途的选择。然而,对于重要的生物炼制途径,还没有进行确切的能量平衡分析。在这方面,基于脂质生物炼制途径的三种生物炼制途径,均用于经济地生产微藻生物燃料和增值产品。生物炼制途径 1 涉及生物柴油、色素和动物饲料的生产。生物炼制途径 2 涉及沼气和色素的生产以及两段发酵,第三种生物炼制途径涉及生物氢和色素的生产。最后,对三种生物炼制途径的技术经济评估进行了回顾,并提出了节约微藻生物炼制的净能量节约和生命周期成本方法。