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The influence of lubricating oil age on oil quality and emissions from IDI passenger car diesels

机译:润滑油时代对IDI乘用车柴油机油质和排放的影响

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Two Ford IDI passenger car diesel engines, 1.6 and 1.8 litres, were tested over a 100 hour lube oil ageing period with engine out emission samples every 15 hours. The 1.6 litre engine was tested with 5% EGR and the 1.8 litre engine with 15% EGR. Comparison was also made with previous work using an older Petter AA1 engine. The three engines had different dependencies of particulate emissions on the lube oil age. The 1.6 litre engine increased the particulates from 1 to 2.5 g/kg of fuel, whereas the 1.8 litre engine first decreased the particulate emissions from 3 to 1 g/kg over 50 hours of oil age and then they increased to 2 g/kg at 100 hours. This was similar to the previous work on the Petter AA1 engine, where the emissions first decreased and then increased as the oil aged. For the 1.8 litre engine the lube oil fraction of the VOF was high with fresh oil and decreased with time for the first 50 hours and then remained steady. Thus the lube oil VOF was mainly responsible for the particulate decrease in the first 50 hours. The increase in the particulate mass after 50 hours was due to an increased unburnt fuel and carbon fraction and this also occurred for the 1.6 litre engine. The carbon in oil was least for the 1.8 litre engine but carbon was accumulating in the oil at a higher fraction of the carbon emitted than for the other engine. This varied from 7 to 17% and this rate of carbon flow into the lube oil was higher than has been reported by others and may indicate that low emission diesel engines with EGR have a greater flow of carbon into the oil as a proportion of the carbon emitted.
机译:两辆福特IDI乘用车柴油发动机,1.6和1.8升,在100小时的润滑油老化期内用发动机出发射排放样品进行一次测试。用5%EGR和15%EGR的1.8升发动机测试1.6升发动机。使用较旧的佩特斯AA1发动机的先前工作也进行了比较。三个发动机对润滑油时代的微粒排放有不同的依赖性。 1.6升发动机从1-2.5g / kg燃料增加颗粒,而1.8升发动机首先将3至1g / kg的颗粒排放量减少50小时以上的油时代,然后它们增加到2克/千克100小时。这类似于以前的佩特AA1发动机的工作,其中排放首先降低,然后随着石油而增加。对于1.8升发动机,VOF的润滑油部分高,用新鲜的油和前50小时随时间下降,然后保持稳定。因此,润滑油vof主要负责前50小时的颗粒减少。 50小时后颗粒质量的增加是由于燃料的燃料和碳馏分增加,这也发生了1.6升发动机。油中的碳是1.8升发动机的碳,但是碳在油中积聚在油的碳中,比其他发动机的碳的更高分数。这在7〜17%之间变化,并且这种碳流入润滑油的速率高于其他人的速率,并且可能表明具有EGR的低排放柴油发动机具有更大的碳流入油作为碳的比例。发出。

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