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Real-world activity, fuel use, and emissions of heavy-duty compressed natural gas refuse trucks

机译:现实世界的活动,燃料使用和重型压缩天然气垃圾桶的排放

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Over 50% of new refuse truck sales have been compressed natural gas (CNG). Compared to diesel, CNG is less expensive on diesel gallon equivalent (dge) basis. This study quantifies the real-world fuel use and tailpipe exhaust emissions from three front- and three side-loader refuse trucks, each with a spark ignition CNG engine, three-way catalyst, and similar gross weight. Measurements were made at 1 Hz using a portable emissions measurement system (PEMS). Inter-cycle and inter-vehicle variability is quantified. Effect of vehicle weight was analyzed and comparisons were made with MOVES predicted cycle average emission rates. In total, about 220,000 s of data covering 490 miles of operation were recorded. The average fuel economy was 1.9 miles per dge. On average the trucks spent 53% of time in idle, which includes trash collection activity. The average speeds were 10 mph and 5 mph, for front- and side-loader trucks, respectively. Overall, compared to side-loader trucks, front-loader trucks had 55% better fuel economy and 60% lower emission rates. Compared to diesel trucks, CNG truck cycle average NO_x and PM emission rates, at 1.2 g/mile and 0.006 g/mile respectively, were substantially lower while CO and HC rates, at 29 g/mile and 6 g/mile respectively, were considerably higher. Fuel use and CO_2 emissions rates increased by 10% due to increase in truck weight during trash collection, while CO emissions rates increased by up to 30%. Compared to measured values, MOVES estimated cycle average fuel use and CO_2 emissions were 25% lower, CO emissions are 70% lower, and NO_x emissions were 200% higher. Results from this study can be used to improve solid waste life cycle and tailpipe emission factor models and, when combined with previous studies on diesel refuse trucks, evaluate the effect on fuel use and emissions from adoption of CNG refuse trucks.
机译:超过50%的新垃圾桶销售已被压缩天然气(CNG)。与柴油相比,CNG在柴油加仑等效物(DGE)的基础上昂贵。本研究量化了三个前面和三个侧面装载机垃圾桶的真实燃料使用和尾管废气排放,每次都有火花点火CNG发动机,三元催化剂和类似的毛重。使用便携式排放测量系统(PEMS)为1 Hz进行测量。定量循环和车间可变性。分析了载体重量的效果,并采用移动预测周期平均排放率进行比较。总共录制了大约220,000秒的数据,记录了490英里的操作。平均燃油经济性为每DGE 1.9英里。平均而言,卡车在空闲时花了53%的时间,包括垃圾收集活动。平均速度分别为前和侧装载卡车为10英里/小时,5英里/小时,为前装载机。总体而言,与侧装载机相比,前装载机的燃料经济性具有55%,排放率较低60%。与柴油卡车相比,CNG卡车周期平均NO_X和PM发射率分别为1.2克/英里和0.006克/英里,同时分别为29克/英里和6克/英里的CO和HC率分别较低更高。燃料使用和CO_2排放率由于垃圾收集期间卡车重量增加而增加10%,而CO排放率增加达30%。与测量值相比,估计循环平均燃料使用和CO_2排放量降低25%,CO排放量降低70%,NO_X排放量高出200%。本研究的结果可用于改善固体废物寿命周期和尾管排放因子模型,并与以前的柴油垃圾桶的研究相结合,评价采用CNG拒绝卡车的燃料使用和排放的影响。

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