CUTTING-EDGE BIOFUEL TECHNOLOGIES FOR ENVIRONMENTAL MANAGEMENT AND SUSTAINABILITY

Q3 Environmental Science Acta Innovations Pub Date : 2024-05-24 DOI:10.62441/actainnovations.51.14
I. W. Suryasa, Alma Delia Sánchez Rodríguez, Diego Mauricio Hurtado Sotalin, Teresa Isabel Mina Quiñónez, Baster Ly Estupiñán Ortiz, Glenda Magali Barbosa Quintero
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Abstract

Researchers focus on finding Renewable Energy Sources (RES) and green energy for a sustainable future owing to ecological sustainability standards, growing power demands, depletion of traditional energy resources, and ecological damage caused by global warming and climate change. Bioenergy is a very viable option as it may be used for various energy needs via appropriate conversion methods. This analysis focuses on the promise and problems of producing biofuels using different feedstocks and advancements in process technology. The use of biofuels, such as biodiesel, ethanol, bio-oil, syngas, Fischer-Tropsch Hydrogen, and methane (CH4), generated from agricultural crop left-overs, micro- and macroalgae, and other biological waste via thermo-bio-chemical procedures, has been determined to be an environmentally beneficial option for energy production. Developing and implementing biofuels in industry and transportation significantly reduces reliance on petroleum and coal. The literature study indicated that biofuels derived from crops and microalgae have the potential to be the most effective and appealing method. The area of biofuels has made significant advancements via genetic engineering, which has opened up new possibilities for large-scale production for commercial use. However, the process of producing biofuels on a big scale remains difficult. Therefore, it is crucial to address this issue by converting biomass into biofuels using innovative technology to meet present and future energy demands.
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促进环境管理和可持续性的尖端生物燃料技术
由于生态可持续性标准、日益增长的电力需求、传统能源的枯竭以及全球变暖和气候变化造成的生态破坏,研究人员专注于寻找可再生能源(RES)和绿色能源,以实现可持续发展的未来。生物能源是一个非常可行的选择,因为它可以通过适当的转换方法满足各种能源需求。本分析侧重于利用不同原料和先进工艺技术生产生物燃料的前景和问题。使用生物燃料,如生物柴油、乙醇、生物油、合成气、费托合成氢气和甲烷(CH4),通过热生物化学程序从农作物剩料、微藻和大型藻类以及其他生物废料中产生,已被确定为对环境有益的能源生产选择。在工业和交通领域开发和使用生物燃料可以大大减少对石油和煤炭的依赖。文献研究表明,从农作物和微藻中提取的生物燃料有可能成为最有效、最具吸引力的方法。通过基因工程,生物燃料领域取得了重大进展,为商业用途的大规模生产提供了新的可能性。然而,大规模生产生物燃料的过程仍然困难重重。因此,利用创新技术将生物质转化为生物燃料,以满足当前和未来的能源需求,是解决这一问题的关键。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Acta Innovations
Acta Innovations Environmental Science-Environmental Engineering
CiteScore
3.90
自引率
0.00%
发文量
15
审稿时长
16 weeks
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