一种用于高效沼气炉灶的自吸式双层多孔辐射燃烧器:实验性能及排放分析

IF 2.1 Q2 ENGINEERING, MULTIDISCIPLINARY
Applications in engineering science Pub Date : 2026-03-01 Epub Date: 2025-12-26 DOI:10.1016/j.apples.2025.100289
Yared Yalew Temesgen , Kamil Dino Adem , Kumlachew Yeneneh
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引用次数: 0

摘要

本研究介绍了用于离网和资源受限家庭的高效沼气炉灶的自吸两层多孔辐射燃烧器(PRB)的设计、开发和验证。为了提高火焰稳定性,鼓励空气-燃料混合,并促进被动喷射器携带,而不需要外部鼓风机,燃烧器结合了碳化硅(SiC)燃烧区和铸铁预热区。通过沸水和排放试验对热效率进行了评价,发现热效率为51-59%。该性能接近强制空气PRB性能(53-61%),超过传统沼气燃烧器的性能(46-54%)。氮氧化物(NOₓ)和一氧化碳(CO)排放量分别下降29.6%和79.4%,表明燃烧更加清洁和彻底。通过与现有多孔燃烧器技术的对比测试,证实了该系统的性能平价;它的效率相当于强制空气PRBs的97%,同时不需要辅助动力。环境分析显示,每户每年减少约12公斤的CO₂当量排放量,而经济分析显示,由于节省了约9%的沼气,因此投资回收期约为11个月。因此,自我追求的PRB为可持续利用沼气提供了技术上合理、经济上可行和生态上有利的解决方案。这些结果将该设计从概念验证转变为经过验证的可用于埃塞俄比亚和其他发展中国家清洁烹饪计划的候选方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A self-aspirated two-layer porous radiant burner for high-efficiency biogas cookstoves: Experimental performance and emission analysis
The design, development, and validation of a self-aspirated two-layer porous radiant burner (PRB) for high-efficiency biogas cookstoves meant for off-grid and resource-constrained households are presented in this study. To improve flame stability, encourage air-fuel mixing, and facilitate passive jet-ejector entrainment without the need for external blowers, the burner combines a silicon carbide (SiC) combustion zone with a cast-iron preheating zone. Thermal efficiencies of 51–59% were found through experimental evaluation using water-boiling and emission tests. This performance was close to forced-air PRB performance (53–61%) and exceeded that of conventional biogas burners (46–54%). Emissions of nitrogen oxides (NOₓ) and carbon monoxide (CO) decreased by 29.6% and 79.4%, respectively, indicating cleaner and more thorough combustion. The system's performance parity was confirmed by comparative benchmarking with current porous burner technologies; it achieved 97% efficiency equivalency to forced-air PRBs while removing the need for auxiliary power. Environmental analysis showed an annual reduction of about 12 kg CO₂-eq emissions per household, while economic analysis showed a payback period of about 11 months due to biogas savings of about 9%. Thus, the self-aspired PRB offers a technically sound, financially viable, and ecologically advantageous solution for the sustainable use of biogas. These results transform the design from a proof-of-concept into a verified, ready-to-use candidate for implementation in clean cooking initiatives in Ethiopia and other developing nations.
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来源期刊
Applications in engineering science
Applications in engineering science Mechanical Engineering
CiteScore
3.60
自引率
0.00%
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审稿时长
68 days
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