以优化方式将废弃生物质转化为生物燃料用于发电和运输:全面综述

IF 6.2 Q2 ENERGY & FUELS
Farrukh Jamil, Abrar Inayat, Murid Hussain, Parveen Akhter, Zainul Abideen, Chaouki Ghenai, Abdallah Shanableh, Tamer M. M. Abdellatief
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引用次数: 0

摘要

化石燃料是能源生产的主要来源。对化石燃料的日益依赖导致了越来越多的环境问题,因此需要替代能源。生物能源因其对环境的积极影响和可再生能源的可用性,正在成为一种流行的替代能源。然而,目前能源领域的可再生能源约占 14%。生物燃料因其可持续性、生态友好型方法和低成本原材料而受到青睐,成为一种高效的能源生产技术。本文介绍了生物质转化为生物燃料过程的基本概念和应用概念,如燃烧、热解、发酵、气化和厌氧消化,以及它们在绿色经济中的作用。生物质资源的不同物理特性非常重要,有助于确定其生产生物燃料的潜力。在此,将对生命周期评估、其技术经济重要性以及生物质在绿色经济中的作用进行说明。文章讨论了不同类型生物质资源的不同成分和特性,包括作为潜在生物质资源的木质纤维素原料、农业和林业残留物、城市固体废弃物、食物垃圾和动物粪便。文章解释了不同热化学转化技术的优缺点,以及目前在规模化应用和商业化方面的投入。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Valorization of Waste Biomass to Biofuels for Power Production and Transportation in Optimized Way: A Comprehensive Review

Valorization of Waste Biomass to Biofuels for Power Production and Transportation in Optimized Way: A Comprehensive Review

Fossil fuels are primary sources for energy production. Increased dependence on fossil fuels has resulted in increased environmental issues demanding alternative sources. Bioenergy is becoming a popular alternative energy source due to its positive environmental impact and the availability of renewable sources. However, the availability of renewable energy sources in the energy sector currently contributes to about 14%. Biofuels are preferred due to its sustainability, eco-friendly approach, and low-cost raw materials, making it an efficient technique for energy production. This article provides the fundamental and applied concepts for on conversion processes of biomass to biofuels, such as combustion, pyrolysis, fermentation, gasification, and anaerobic digestion along with their role in the green economy. Different physical characteristics of biomass resources are important and contribute to determining their potential for producing biofuels. Herein, LCA, its techno-economic importance, and the role of biomass in green economy are explained. Varying compositions and properties of different types of biomass resources, including lignocellulosic feedstocks, agriculture and forest residue, municipal solid waste, food waste, and animal manure as potential biomass resources, have been discussed. The article explains the strengths and weaknesses of different thermochemical conversion techniques and their current input toward scalar applications and commercialization.

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来源期刊
CiteScore
8.20
自引率
3.40%
发文量
0
期刊介绍: Advanced Energy and Sustainability Research is an open access academic journal that focuses on publishing high-quality peer-reviewed research articles in the areas of energy harvesting, conversion, storage, distribution, applications, ecology, climate change, water and environmental sciences, and related societal impacts. The journal provides readers with free access to influential scientific research that has undergone rigorous peer review, a common feature of all journals in the Advanced series. In addition to original research articles, the journal publishes opinion, editorial and review articles designed to meet the needs of a broad readership interested in energy and sustainability science and related fields. In addition, Advanced Energy and Sustainability Research is indexed in several abstracting and indexing services, including: CAS: Chemical Abstracts Service (ACS) Directory of Open Access Journals (DOAJ) Emerging Sources Citation Index (Clarivate Analytics) INSPEC (IET) Web of Science (Clarivate Analytics).
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