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Lean-Burn Natural Gas Engines: Challenges and Concepts for an Efficient Exhaust Gas Aftertreatment System

机译:瘦燃烧天然气发动机:高效排气后处理系统的挑战和概念

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摘要

High engine efficiency, comparably low pollutant emissions, and advantageous carbon dioxide emissions make lean-burn natural gas engines an attractive alternative compared to conventional diesel or gasoline engines. However, incomplete combustion in natural gas engines results in emission of small amounts of methane, which has a strong global warming potential and consequently makes an efficient exhaust gas aftertreatment system imperative. Palladium-based catalysts are considered as most effective in low temperature methane conversion, but they suffer from inhibition by the combustion product water and from poisoning by sulfur species that are typically present in the gas stream. Rational design of the catalytic converter combined with recent advances in catalyst operation and process control, particularly short rich periods for catalyst regeneration, allow optimism that these hurdles can be overcome. The availability of a durable and highly efficient exhaust gas aftertreatment system can promote the widespread use of lean-burn natural gas engines, which could be a key step towards reducing mankind's carbon footprint.
机译:高发动机效率,较低的污染物排放和有利的二氧化碳排放使瘦燃烧天然气发动机与传统的柴油或汽油发动机相比具有吸引力的替代品。然而,天然气发动机中的不完全燃烧导致少量甲烷的排放,这具有强大的全球变暖潜力,从而使得有效的废气后处理系统势在必行。基于钯的催化剂被认为是低温甲烷转化中最有效的,但它们受到燃烧产物水的抑制,并且通过通常存在于气流中的硫种类中毒。催化转化器的合理设计与催化剂操作和过程控制的最近进步相结合,催化剂再生的富裕时期特别短,允许乐观地克服这些障碍。耐用且高效的废气后处理系统的可用性可以促进瘦燃烧天然气发动机的广泛使用,这可能是减少人类碳足迹的关键步骤。

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