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Low and Medium Calorific Value Gasification Gas Combustion in IC Engines

机译:内燃机的中低热值气化气燃烧

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摘要

Higher hydrogen to carbon ratio of gasification gases produced from solid fuels has been utilized in internal combustion engines (ICE) since long ago. Advancements in the conversion technologies and the abundant availability of solid fuels added with advancements in the technology of gas engines and their fuelling system have renewed the interest and are believed to be transition fuels from carbon based to hydrogen based. Over the past 30 years, there were many trials to bring back the gasification gas technology in ICE. This study is mainly focused on the investigation of technical challenges with lower and medium calorific value gasification gases in IC engines The range of operation of these fuels is found to be influenced by available injection duration and injector pulse width in direct-injection spark-ignition engines. The lower calorific value of these gases also make them less competitive to CNG and H2 in the dual fueling in CI engine even though they have better advantage in the emissions. Furthermore, red glow color deposit was spotted on the surface of the combustion chamber after short running on all fuels that was resulted from decomposition of iron pentacarbonyl (Fe(CO)5) contaminants.
机译:早在很久以前,就已经在内燃机(ICE)中使用了由固体燃料产生的气化气中较高的氢碳比。转换技术的进步和固体燃料的丰富可用性,再加上燃气发动机及其燃料系统的技术进步,引起了人们的兴趣,并被认为是从碳基到氢基的过渡燃料。在过去的30年中,进行了许多试验来恢复ICE中的气化气技术。这项研究主要侧重于研究IC发动机中低热值和中热值气化气体的技术挑战。发现这些燃料的工作范围受直喷式火花点火发动机的可用喷射持续时间和喷射器脉冲宽度的影响。 。这些气体的低热值也使它们在CI发动机的双燃料中与CNG和H2的竞争力较弱,即使它们在排放方面具有更好的优势。此外,由于五羰基铁(Fe(CO)5)污染物的分解,所有燃料短暂运行后,在燃烧室的表面上会发现红色的发光沉积物。

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