Department of Mechanical Engineering, Indian Institute of Technology Guwahati, Guwahati, 781039, India.
Centre for Energy, Indian Institute of Technology Guwahati, Guwahati, 781039, India.
Environ Sci Pollut Res Int. 2021 Mar;28(10):12168-12177. doi: 10.1007/s11356-020-10862-5. Epub 2020 Oct 12.
In this paper, the combustion characteristics of biogas in a Porous Radiant Burner (PRB) designed for domestic cooking appliances are presented. Developed PRB consists of two layers of porous matrices viz., Silicon Carbide (SiC) and Alumina (AlO) and operates in the biogas flow range of 177 to 530 l/h with stable equivalence ratio (ϕ) range of 0.75 to 0.95. The effects of biogas flow rate and equivalence ratio on thermal efficiency (η) and emission characteristics of the burner are investigated and also compared with its conventional counterpart. Overall performance assessment shows that PRB operating at lower equivalence ratio and lower firing power has better thermal efficiency with lower CO and NO emissions. The performance of the burner in terms of temperature mapping suggests that firing power variation is of higher importance than that of equivalence ratio. The maximum temperature difference between the center and the periphery of the burner surface is found to be ~ 83 °C at an equivalence ratio of 0.95. The thermal efficiency varies in the range of 51-62% and its maximum is at 0.75 equivalence ratio and 177 l/h flow rate of biogas. Within the range of studied biogas flow rate range, CO emission is in the range of 29-80 ppm and NO concentration was lower than 4 ppm. Whereas, for Conventional Burner (CB), thermal efficiency, CO, and NO emission are found in the range of 43-52%, 211-276 ppm, and 9-15 ppm, respectively. The overall performance showed that PRB is capable of burning a lean biogas-air mixture with better thermal efficiency and lower emissions.
本文介绍了为家用炊具设计的多孔辐射燃烧器(PRB)中沼气的燃烧特性。所开发的 PRB 由两层多孔基质组成,即碳化硅(SiC)和氧化铝(AlO),工作在沼气流量范围为 177 至 530 升/小时,稳定当量比(ϕ)范围为 0.75 至 0.95。研究了沼气流量和当量比对燃烧器热效率(η)和排放特性的影响,并与传统燃烧器进行了比较。总体性能评估表明,在较低当量比和较低燃烧功率下运行的 PRB 具有更好的热效率,CO 和 NO 排放更低。从温度分布图来看,燃烧器的性能表明燃烧功率变化比当量比更为重要。在当量比为 0.95 时,燃烧器表面中心和周边之间的最大温差约为 83°C。热效率在 51-62%范围内变化,最大热效率在当量比为 0.75 和沼气流量为 177 升/小时时达到。在所研究的沼气流量范围内,CO 排放量在 29-80ppm 之间,NO 浓度低于 4ppm。相比之下,对于传统燃烧器(CB),热效率、CO 和 NO 排放分别在 43-52%、211-276ppm 和 9-15ppm 范围内。整体性能表明,PRB 能够燃烧稀薄的沼气-空气混合物,具有更好的热效率和更低的排放。