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Experimental and modeling study of hydrogen/syngas production and particulate emissions from a natural gas-fueled partial oxidation engine

机译:天然气部分氧化发动机的氢气/合成气生产和颗粒物排放的实验和模型研究

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摘要

In this study, a combustion model was first applied to conditions representing varying compression ratios and equivalence ratios to investigate engine exhaust composition from partial oxidation (POX) of natural gas in reciprocating engines. The model was experimentally validated over a range of equivalence ratios from 1.3 to 1.6 with a spark-ignited single cylinder engine fueled by natural gas. The modeling results matched well with engine gaseous emission data over the experimental range. The model was also extended to higher equivalence ratios to predict H_2 and CO production at engine conditions and stoichiometries representative of homogeneous charge compression ignition (HCCI) engine operation. Secondly, over the same experimental range of equivalence ratios, particulate samples were taken to determine both total particulate mass production (g/hp h) via gravimetric measurement as well as particle size distribution and loading via a scanning mobility particle sizer (SMPS). While experiments indicate hydrogen yields up to 11% using spark ignition (SI), modeling results indicate that greater than 20% H_2 yield may be possible in HCCI operation. Over the experimental range, rich-burn particulate matter (PM) production is no greater than that from typical lean-burn operation. Finally, an energy balance was performed over the range of engine experimental operation.
机译:在这项研究中,首先将燃烧模型应用于代表不同压缩比和当量比的条件,以研究往复式发动机中天然气的部分氧化(POX)引起的发动机排气成分。该模型在以天然气为燃料的火花点火单缸发动机的1.3至1.6的当量比范围内进行了实验验证。模拟结果与实验范围内的发动机气体排放数据非常吻合。该模型还扩展到更高的当量比,以预测发动机工况下的H_2和CO产生以及代表均质充量压燃(HCCI)发动机运行的化学计量。其次,在相同的当量比实验范围内,通过重量分析法测量颗粒样品,以确定总颗粒质量产量(g / hp h),并通过扫描迁移率粒度仪(SMPS)确定粒度分布和负载量。虽然实验表明使用火花点火(SI)氢产率最高可达到11%,但建模结果表明,在HCCI操作中,H_2产率可能超过20%。在实验范围内,浓燃烧颗粒物(PM)的产量不大于典型的稀燃操作。最后,在发动机实验操作范围内进行了能量平衡。

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