Biomass: A Versatile Resource for Biofuel, Industrial, and Environmental Solution

Van Giao Nguyen, Minh Ho Tran, P. Paramasivam, Huu Cuong Le, Duy Tan Nguyen
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引用次数: 1

Abstract

Biomass, noted for its adaptability, has various applications in biofuel generation, industrial use, and environmental cleaning. This study looks into the multiple roles of biomass as a renewable energy source, with a particular emphasis on its vital contribution to biofuel production. Through a thorough evaluation of different conversion routes—thermal, biological, and physical—the study emphasizes thermochemical processes' efficiency, cost-effectiveness, and adaptability. Notably, technologies like gasification and quick pyrolysis are thoroughly investigated, followed by in-depth discussions of reactor optimization strategies to enhance performance and output. The complex structure of biomass, which is dominated by high-molecular-weight polysaccharides such as cellulose and hemicelluloses, demonstrates its significant potential for energy generation. Furthermore, the study categorizes biomass by content, origin, and conversion processes, resulting in a comprehensive inventory of available resources. Biomass from the agriculture and forestry industries, such as starch, sugar, lignocellulose, and organic wastes, is rigorously analyzed for energy production. Furthermore, various biomass processing techniques, including thermochemical, biochemical, and physicochemical conversions, are carefully tested in real-world applications to ensure their efficacy and viability. Beyond its importance in biofuel production, the article underlines biomass' versatility in satisfying industrial needs and contributing to environmental cleanup initiatives. This study lays the groundwork for informed decision-making and innovative solutions in various industries by providing a thorough understanding of biomass's various benefits and applications, including energy provision, industrial processes, and ecological restoration.
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生物质:生物燃料、工业和环境解决方案的多功能资源
生物质以其适应性强而著称,在生物燃料生产、工业用途和环境清洁方面有多种应用。本研究探讨了生物质作为可再生能源的多重作用,特别强调了其对生物燃料生产的重要贡献。通过对热能、生物和物理等不同转化途径的全面评估,该研究强调了热化学工艺的效率、成本效益和适应性。值得注意的是,该书对气化和快速热解等技术进行了深入研究,随后还对反应器优化策略进行了深入讨论,以提高性能和产量。生物质结构复杂,以纤维素和半纤维素等高分子量多糖为主,这表明生物质具有巨大的能源生产潜力。此外,该研究还根据生物质的含量、来源和转化过程对生物质进行了分类,从而形成了一份全面的可用资源清单。对来自农业和林业的生物质,如淀粉、糖、木质纤维素和有机废物,进行了严格的能源生产分析。此外,各种生物质加工技术,包括热化学、生物化学和物理化学转化技术,都在实际应用中经过仔细测试,以确保其功效和可行性。除了在生物燃料生产中的重要性,文章还强调了生物质在满足工业需求和促进环境清洁行动方面的多功能性。本研究透彻了解生物质的各种益处和应用,包括能源供应、工业流程和生态恢复,为各行各业的明智决策和创新解决方案奠定了基础。
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来源期刊
International Journal on Advanced Science, Engineering and Information Technology
International Journal on Advanced Science, Engineering and Information Technology Agricultural and Biological Sciences-Agricultural and Biological Sciences (all)
CiteScore
1.40
自引率
0.00%
发文量
272
期刊介绍: International Journal on Advanced Science, Engineering and Information Technology (IJASEIT) is an international peer-reviewed journal dedicated to interchange for the results of high quality research in all aspect of science, engineering and information technology. The journal publishes state-of-art papers in fundamental theory, experiments and simulation, as well as applications, with a systematic proposed method, sufficient review on previous works, expanded discussion and concise conclusion. As our commitment to the advancement of science and technology, the IJASEIT follows the open access policy that allows the published articles freely available online without any subscription. The journal scopes include (but not limited to) the followings: -Science: Bioscience & Biotechnology. Chemistry & Food Technology, Environmental, Health Science, Mathematics & Statistics, Applied Physics -Engineering: Architecture, Chemical & Process, Civil & structural, Electrical, Electronic & Systems, Geological & Mining Engineering, Mechanical & Materials -Information Science & Technology: Artificial Intelligence, Computer Science, E-Learning & Multimedia, Information System, Internet & Mobile Computing
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