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Hydrocarbons and Particulate Matter in EGR Cooler Deposits: Effects of Gas Flow Rate, Coolant Temperature, and Oxidation Catalyst

机译:EGR冷却器沉积物中的烃和颗粒物质:气体流速,冷却剂温度和氧化催化剂的影响

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Compact heat exchangers are commonly used in diesel engines to reduce the temperature of recirculated exhaust gases, resulting in decreased NO{sub}x emissions. These exhaust gas recirculation (EGR) coolers experience fouling through deposition of particulate matter (PM) and hydrocarbons (HCs) that reduces the effectiveness of the cooler. Surrogate tubes have been used to investigate the impacts of gas flow rate and coolant temperature on the deposition of PM and HCs. The results indicate that mass deposition is lowest at high flow rates and high coolant temperatures. An oxidation catalyst was investigated and proved to effectively reduce deposition of HCs, but did not reduce overall mass deposition to near-zero levels. Speciation of the deposit HCs showed that a range of HCs from C{sub}15 -^sC{sub}25 were deposited and retained in the surrogate tubes. Analysis of the deposit mass of eicosane (C{sub}20) showed that the deposition of HCs is very sensitive to the coolant temperature in the range investigated. The results suggest that use of an oxidation catalyst and/or reduction of the amount of high-boiling point HC species in the fuel may be pathways toward reduced EGR cooler fouling.
机译:紧凑型热交换器通常用于柴油发动机,以降低再循环废气的温度,导致不降低{Sub} x排放。这些废气再循环(EGR)冷却器通过沉积颗粒物质(PM)和烃(HCS)来进行污染,从而降低冷却器的有效性。替代管已被用于研究气体流速和冷却剂温度对PM和HCS沉积的影响。结果表明,质量沉积在高流速和高冷却剂温度下最低。研究了氧化催化剂并证明有效地减少了HC的沉积,但没有将总质量沉积降低到零水平。沉积HCS的形态表明,沉积并保留在替代管中的一系列来自C {Sub} 15 - ^ Sc {sub} 25的HC。 eICosane(C {Sub} 20)的沉积物质量分析表明,HCS的沉积对所研究范围内的冷却剂温度非常敏感。结果表明,使用氧化催化剂和/或减少燃料中的高沸点HC物质的量可以是降低EGR冷却器污垢的途径。

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