Faculty of Engineering, Department of Mechanical Engineering, University of Malaya, Kuala Lumpur, 50603, Malaysia.
Bioseparation Research Group, University of Nottingham Malaysia Campus, Semenyih, 43500, Selangor, Malaysia.
Biotechnol J. 2018 Jun;13(6):e1700618. doi: 10.1002/biot.201700618. Epub 2018 Feb 9.
Microalgae are considered promising feedstock for the production of biofuels and other bioactive compounds, yet there are still challenges on commercial applications of microalgae-based products. This review focuses on the economic analysis, environmental impact, and industrial potential of biofuels production from microalgae. The cost of biofuels production remains higher compared to conventional fuel sources. However, integration of biorefinery pathways with biofuels production for the recovery of value-added products (such as antioxidants, natural dyes, cosmetics, nutritional supplements, polyunsaturated fatty acids, and so forth) could substantially reduce the production costs. It also paves the way for sustainable energy resources by significantly reducing the emissions of CO , NO , SO , and heavy metals. Large-scale biofuels production has yet to be successfully commercialized with many roadblocks ahead and heavy competition with conventional fuel feedstock as well as technological aspects. One of the prominent challenges is to develop a cost-effective method to achieve high-density microalgal cultivation on an industrial scale. The biofuels industry should be boosted by Government's support in the form of subsidies and incentives, for addressing the pressing climate change issues, achieving sustainability, and energy security.
微藻被认为是生产生物燃料和其他生物活性化合物的有前途的原料,但基于微藻的产品在商业应用方面仍存在挑战。本综述重点介绍了从微藻生产生物燃料的经济分析、环境影响和工业潜力。与传统燃料相比,生物燃料的生产成本仍然较高。然而,通过生物炼制途径与生物燃料生产相结合,回收附加值产品(如抗氧化剂、天然染料、化妆品、营养补充剂、多不饱和脂肪酸等),可以大幅降低生产成本。这也为可持续能源资源铺平了道路,显著减少了 CO、NO、SO 和重金属的排放。大规模的生物燃料生产尚未成功商业化,未来还面临许多障碍,而且还面临着与传统燃料原料以及技术方面的激烈竞争。突出的挑战之一是开发一种具有成本效益的方法,以在工业规模上实现高密度微藻培养。政府应通过补贴和激励等形式提供支持,以解决紧迫的气候变化问题、实现可持续性和能源安全,从而推动生物燃料行业的发展。