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NO_x, CO and HC emissions and thermodynamic- energetic efficiency of an SI gas engine powered by gases simulated from biomass gasification under different H_2 content

机译:NO_X,CO和HC排放和由不同H_2含量下的生物质气化模拟的气体供电的SI燃气发动机的热力学 - 能量效率

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This work explored the problem of using gaseous biofuels with different content of hydrogen and carbon monoxide in a three-cylinder naturally aspirated spark-ignition (SI) engine under laboratory conditions. The tests investigated the combustion process of simulated gases, whose composition was similar to the syngas generated from biomass gasification processes. During the lab tests, the engine operated at a constant speed and wide-open throttle. The engine control parameters and syngas composition influence on the combustion process, performance, as well as its harmful effects on the environment were analysed. The assay also focused on the fast-changing combustion parameters (heat release rate - HRR, mass fraction burned - MFB and combustion duration) based on incylinder pressure measurements. Gaseous fuels using during the tests were free from contamination and moisture. A clear impact of the molar fraction ratio H-2/CO in the syngas mixture on the internal parameters of the tested engine could be observed. Syngas with higher hydrogen content required the use of slightly lower ignition advance to get the maximum value of Indicated Mean Effective Pressure of the engine - IMEP. The lower heating value of the syngas fuel did not directly affect the indicated efficiency of the engine. The decisive influencing factor indeed was the type and molar fraction of combustible and inert components at the syngas mixture. For syngas mixtures with higher H-2 content, increasing the excess gas ratio increased the indicated efficiency. A clear correlation was found between the carbon monoxide content of the synthesis gas mixture and the specific emission of CO in the engine exhaust gas. Nevertheless, keeping the carbon monoxide content constant and increasing the hydrogen content in the syngas mixture resulted in a decrease of specific CO emissions. (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:这项工作探讨了在实验室条件下三缸自然吸气的火花点火(Si)发动机中具有不同含量的气态生物燃料的问题。该试验研究了模拟气体的燃烧过程,其组合物类似于生物质气化过程产生的合成气。在实验室测试期间,发动机以恒定的速度和宽敞的油门操作。发动机控制参数和合成气作用对燃烧过程,性能以及对环境的有害影响的影响。该测定还基于提包压力测量重点放在快速变化的燃烧参数(热释放率 - HRR,质量分数燃烧 - MFB和燃烧持续时间)。在测试期间使用的气态燃料免受污染和水分。可以观察到在合成气混合物上对测试发动机内部参数的摩尔级分比H-2 / Co的明显影响。具有较高氢气含量的合成气需要使用稍低的点火前进,以获得发动机的指示平均有效压力的最大值 - IMEP。合成气燃料的较低的加热值没有直接影响发动机的指示效率。决定性影响因素确实是合成气混合物中可燃和惰性组分的类型和摩尔分数。对于具有较高H-2含量的合成气混合物,增加了过量的气体比率提高了指示的效率。在合成气混合物的一氧化碳含量和发动机废气中的CO的特定发射之间发现了明显的相关性。然而,保持一氧化碳含量常数并增加合成气混合物中的氢含量导致特定的CO排放量减少。 (c)2020氢能源出版物LLC。 elsevier有限公司出版。保留所有权利。

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