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The influence of CO2 in biogas flammability limit and laminar burning velocity in spark ignited premix combustion at various pressures

机译:二氧化碳对不同压力下火花点燃预混燃烧中沼气可燃性极限和层流燃烧速度的影响

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摘要

Biogas is an alternative energy source that is sustainable andudrenewable containing more than 50% CH4 and its biggest impurity or inhibitor is CO2. Demands for replacing fossil fuels require an improved fundamental understanding of its combustion processes. Flammabilityudlimits and laminar burning velocities are important characteristics in udthese processes. Thus, this research focused on the effects of CO2 on biogas flammability limits and laminar burning velocities in spark ignited premixed combustion. Biogas was burned in a spark ignited spherical combustion bomb. Spherically expanding laminar premixed flames, freely propagating from spark ignition in initial, were continuously recorded by a high-speed digital camera. The combustion bomb was filled with biogas-air mixtures at various pressures, CO2 levels and equivalence ratios (φ) at ambient temperature. The results were also compared to those of the previous study into inhibitorless biogas (udmethane) at various pressures and equivalence ratios (φ). Either the flammable areas become narrower with increased percentages of carbon dioxide or the pressure become lower. In biogas with 50% CO2 content, there was no biogas flame propagation for any equivalence ratio at reduced pressure (0.5 atm). The results show that the laminar burning velocity at the same equivalence ratio declined in respect with the increased level of CO2. The laminar burning velocities were higher at the same equivalence ratio by reducing the initial pressure.
机译:沼气是一种可持续的,不可再生的替代能源,其甲烷含量超过50%,最大的杂质或抑制剂是二氧化碳。替代化石燃料的需求要求对其燃烧过程有更深入的了解。可燃性极限和层流燃烧速度是这些过程中的重要特征。因此,本研究的重点是二氧化碳对火花点火预混燃烧中沼气可燃性极限和层流燃烧速度的影响。沼气在火花点火的球形燃烧弹中燃烧。最初由火花点火自由传播的球状扩展层状预混火焰由高速数码相机连续记录。在环境温度下,燃烧弹充满各种压力,CO2水平和当量比(φ)的沼气混合物。还将结果与先前在不同压力和当量比(φ)下无抑制剂沼气( ud甲烷)的研究结果进行了比较。随着二氧化碳百分比的增加,可燃区域会变窄,或者压力会降低。在二氧化碳含量为50%的沼气中,在减压(0.5 atm)下,任何当量比都没有沼气火焰蔓延。结果表明,相同当量比下的层流燃烧速度随CO2含量的增加而下降。通过降低初始压力,在相同的当量比下,层流燃烧速度更高。

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