生物燃料生产:传统燃料和能源的可持续替代品综述

Fuels Pub Date : 2024-05-02 DOI:10.3390/fuels5020010
Kamla Malik, S. Capareda, B. Kamboj, Shweta Malik, Karmal Singh, Sandeep Arya, D. Bishnoi
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摘要

随着全球能源需求的增加和使用化石燃料所产生的二氧化碳排放量的增加,现代社会正面临着严峻的问题。能源是人类最重要的资源之一,由于能源消耗、化石燃料迅速枯竭和环境危机,人类对能源的需求急剧增加。因此,必须确定和寻找化石燃料的替代品,以可靠、稳定和可持续的方式提供能源,有效利用现有能源,替代清洁、无毒和环保的可再生燃料。因此,亟需开发生物燃料生产技术,重点关注经济可行性、可持续性和可再生性。一些技术,如生物和热化学方法,来自丰富的可再生生物资源,如生物质和农业废弃物,利用先进的转换技术生产生物燃料。生物燃料无毒、可生物降解,是公认的替代传统化石燃料的重要可持续绿色能源,具有降低碳排放、治理空气污染、增强农村社区能力、促进经济增长和能源供应等优点。本综述旨在解释生物燃料的基本方面及其可持续性标准,尤其侧重于生物燃料生产的转化技术、挑战和未来展望。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Biofuels Production: A Review on Sustainable Alternatives to Traditional Fuels and Energy Sources
With increased worldwide energy demand and carbon dioxide emissions from the use of fossil fuels, severe problems are being experienced in modern times. Energy is one of the most important resources for humankind, and its needs have been drastically increasing due to energy consumption, the rapid depletion of fossil fuels, and environmental crises. Therefore, it is important to identify and search for an alternative to fossil fuels that provides energy in a reliable, constant, and sustainable way that could use available energy sources efficiently for alternative renewable sources of fuel that are clean, non-toxic, and eco-friendly. In this way, there is a dire need to develop technologies for biofuel production with a focus on economic feasibility, sustainability, and renewability. Several technologies, such as biological and thermochemical approaches, are derived from abundant renewable biological sources, such as biomass and agricultural waste, using advanced conversion technologies for biofuel production. Biofuels are non-toxic, biodegradable, and recognized as an important sustainable greener energy source to conventional fossil fuels with lower carbon emissions, combat air pollution, empower rural communities, and increase economic growth and energy supply. The purpose of this review is to explain the basic aspects of biofuels and their sustainability criteria, with a particular focus on conversion technologies for biofuel production, challenges, and future perspectives.
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