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The Influence of an Oil Recycler on Emissions with Oil Age for a Refuse Truck Using in Service Testing

机译:石油回收器对垃圾桶石油时代排放的影响

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A method of cleaning lubricating oil on line was investigated using a fine bypass particulate filter followed by an infra red heater. Two bypass filter sizes of 6 and 1 micron were investigated, both filter sizes were effective but the one micron filter had the greatest benefit. This was tested on two nominally identical EURO 1 emissions compliance refuse trucks, fitted with Perkins Phazer 210Ti 6 liter turbocharged intercooled engines and coded as RT320 and RT321. These vehicles had emissions characteristics that were significantly different, in spite of their similar age and total mileage. RT321 showed an apparent heavier black smoke than RT320. Comparison was made with the emissions on the same vehicles and engines with and without the on-line bypass oil recycler. Engine exhaust emissions were measured about every 400 miles. Both vehicles started the test with an oil drain and fresh lubricating oil. The two refuse trucks were tested in a different sequence, the RT320 without the recycler fitted and then fitted later and the RT321 with the recycler fitted and then removed later in the test and both without any oil change. The RT320 was also the one with the finer bypass filter. The test mileage was nearly 8,000 miles both trucks. The air/fuel ratio was worked out by the exhaust gas analysis. The correlation between air/fuel ratio and emission parameters was determined and appropriate corrections were made in the case of that the air/fuel ratio had an effect on emissions. The results showed that the on line oil recycler cleaning system can reduce the rate of increase of the NOx with oil age. There appeared little influence of the oil recycler on carbon monoxide and hydrocarbon emissions. The rate of increase in particulate emissions was reduced by 50% for RT320 and an immediate decrease in particulate emissions was seen on RT320 test after fitting the recycler. The black smoke was reduced by 30% for RT320 in terms average value and an immediate decrease in smoke after fitting the recycler on RT320 test and an immediate increase in smoke after the removal of the recycler on RT321 test were shown.
机译:使用细旁路颗粒过滤器,然后进行红外线加热器,研究了一种清洁润滑油的方法。研究了6和1微米的两个旁路滤光片尺寸,滤波器尺寸都有效,但一个微米过滤器具有最大的好处。这是两种名义上相同的欧元1个排放责任垃圾卡车测试,配备了珀金斯普利拿塞尔210Ti 6升涡轮增压间的中电发动机,并编码为RT320和RT321。这些车辆有这样的人显著不同,尽管他们年龄相仿,总里程的排放特性。 RT321表现出比RT320更加较重的黑烟。使用同一车辆和发动机的排放和没有在线旁路油回收器进行比较。发动机的废气排放物约每400英里数来测量。两辆车都开始使用排水油和新鲜的润滑油。两种垃圾桶以不同的顺序测试,RT320,没有回收器安装,然后稍后装配RT321,然后在试验后稍后移除,两者都没有任何油。 RT320也是具有更精细旁路滤波器的RT320。测试里程两辆卡车都是近8,000英里。空气/燃料比是由排气分析计算出。空气/燃料比和发射参数之间的相关性被确定和适当的修正是在的,该空气/燃料比对排放的影响的情况下作出。结果表明,在上线油回收清洗系统可以减少石油时代的NOx的增加速度。有出现在一氧化碳和碳氢化合物的排放油回收的影响不大。在微粒排放增加的速率降低了50%和RT320微粒排放量立即减少被拟合回收后看到的RT320测试。黑烟在术语平均值和装配上RT320测试和去除上RT321测试再循环器的后立即增加烟雾再循环器被示出后立即减少烟雾减少了用于RT320 30%。

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