Mechanical and energy assessment of hybrid biofuels: Integrating agro-industrial coconut and rice husk biomass with mineral coal for sustainable energy in Córdoba, Colombia

Q1 Social Sciences
Stiven J. Sofán-Germán , Miguel E. Doria-Oviedo , Jesús D. Rhenals-Julio
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引用次数: 0

Abstract

Global dependence on fossil fuels is a major environmental and energy concern. This study investigates the potential of solid biofuels produced from blends of agro-industrial biomass (coconut husk and rice husk) and mineral coal, specifically in the context of the department of Córdoba, Colombia. The main objective is to evaluate the mechanical and energetic properties of these blends in order to optimise their performance as a sustainable alternative to conventional fuels. Through a rigorous methodological approach, drying, compaction, combustion and mechanical characterisation tests were carried out according to international technical standards. The results show that the mixture with 95 % biomass achieved the highest thermal efficiency (54.34 %) and an acceptable mechanical strength, with a durability of 93.76 % and a compressive strength exceeding 3650 kPa. In contrast, rice husk had a lower durability (83.53 %) and the lowest compressive strength (2100 kPa), while coconut husk had high mechanical properties with a durability of 99.88 % and a compressive strength of over 7000 kPa. These combinations not only improved the calorific value and combustion characteristics, but also reduced the use of mineral coal, thereby reducing its environmental impact. In conclusion, the integration of agro-industrial biomass with mineral coal offers a viable solution for the transition to more sustainable energy sources, contributing to both waste management and emissions reduction. This approach represents a significant contribution to energy diversification in agricultural regions and globally.
全球对化石燃料的依赖是一个主要的环境和能源问题。本研究以哥伦比亚科尔多瓦省为背景,调查了由农工生物质(椰子壳和稻壳)和矿物煤混合物生产的固体生物燃料的潜力。主要目的是评估这些混合物的机械和能量特性,以优化其性能,使其成为传统燃料的可持续替代品。通过严格的方法,按照国际技术标准进行了干燥、压实、燃烧和机械特性测试。结果表明,含 95% 生物质的混合物热效率最高(54.34%),机械强度可接受,耐久性达 93.76%,抗压强度超过 3650 千帕。相比之下,稻壳的耐久性较低(83.53%),抗压强度最低(2100 千帕),而椰壳的机械性能较高,耐久性达 99.88%,抗压强度超过 7000 千帕。这些组合不仅提高了热值和燃烧特性,还减少了矿物煤的使用,从而降低了对环境的影响。总之,农工生物质与矿物煤的结合为向更可持续的能源过渡提供了一个可行的解决方案,既有助于废物管理,也有助于减少排放。这种方法是对农业地区和全球能源多样化的重大贡献。
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来源期刊
CiteScore
8.40
自引率
0.00%
发文量
100
审稿时长
33 weeks
期刊介绍: The journal has a particular interest in publishing papers on the unique issues facing chemical engineering taking place in countries that are rich in resources but face specific technical and societal challenges, which require detailed knowledge of local conditions to address. Core topic areas are: Environmental process engineering • treatment and handling of waste and pollutants • the abatement of pollution, environmental process control • cleaner technologies • waste minimization • environmental chemical engineering • water treatment Reaction Engineering • modelling and simulation of reactors • transport phenomena within reacting systems • fluidization technology • reactor design Separation technologies • classic separations • novel separations Process and materials synthesis • novel synthesis of materials or processes, including but not limited to nanotechnology, ceramics, etc. Metallurgical process engineering and coal technology • novel developments related to the minerals beneficiation industry • coal technology Chemical engineering education • guides to good practice • novel approaches to learning • education beyond university.
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