Research Institute of Environment & Biosystem, Chungnam National University, Daejeon, Republic of Korea.
Department of Biochemistry, Faculty of Biological Sciences, Quaid-i-Azam University, Islamabad, Pakistan.
J Environ Manage. 2021 Nov 1;297:113268. doi: 10.1016/j.jenvman.2021.113268. Epub 2021 Jul 16.
The fossil fuel utilization adversely affected the environmental health due to the rising emission levels of greenhouse gases. Consequently, the challenges of climate change loaded great stress on renewable energy sources. It is noted that extreme consumption of fossil fuels increased the earth temperature by 1.9 °C that adversely influenced the life and biodiversity. Biorefinery is the sustainable process for the production of biofuels and other bio-products from biomass feedstock using different conversion technologies. Biofuel is an important component of renewable energy sources contributing to overall carbon-neutral energy system. Studies reported that on global scale, over 90% of petroleum goods could be produced from renewable resources by 2023, whereas, 33% chemicals, and 50% of the pharmaceutical market share is also expected to be bio-based. This study details the brief review of operation, development, application, limitations, future perspectives, circular bioeconomy, and life cycle assessment of biorefinery. The economic and environmental aspects of biofuels and biorefineries are briefly discussed. Lastly, considering the present challenges, the future perspectives of biofuels and biorefineries are highlighted.
化石燃料的利用由于温室气体排放水平的上升而对环境健康产生了不利影响。因此,气候变化带来的挑战给可再生能源带来了巨大压力。值得注意的是,化石燃料的过度消耗使地球温度升高了 1.9°C,这对生命和生物多样性产生了不利影响。生物炼制是一种可持续的工艺,可利用不同的转化技术从生物质原料生产生物燃料和其他生物产品。生物燃料是可再生能源的重要组成部分,有助于实现整体碳中性能源系统。研究报告称,到 2023 年,在全球范围内,超过 90%的石油产品可以用可再生资源生产,而 33%的化学品和 50%的医药市场份额预计也将是基于生物的。本研究详细介绍了生物炼制的操作、发展、应用、局限性、未来展望、循环生物经济和生命周期评估的简要回顾。简要讨论了生物燃料和生物炼制的经济和环境方面。最后,考虑到目前的挑战,强调了生物燃料和生物炼制的未来展望。