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Influence of Ambient Temperature on Cold-start Emissions for a Euro 1 SI Car Using In-vehicle Emissions Measurement in an Urban Traffic Jam Test Cycle

机译:环境温度对欧元1 SI汽车冷启动排放的影响在城市交通堵塞测试周期中的车载排放测量

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摘要

The influence of ambient temperature on exhaust emissions for an instrumented Euro 1 SI car was determined for urban congested traffic conditions. In UK cities cold-starting vehicles directly into congested traffic conditions is a common occurrence that is not currently taken into account when modeling urban traffic pollution. In-vehicle emission samples were taken directly from the exhaust, upstream and downstream of the catalyst, using the bag sampling technique. The first bag was for the cold start emissions and approximately the first 1.1 km of travel. The following three bags were with a hotter catalyst. The cold start tests were conducted over a year, with ambient temperatures ranging from 2°C to 30°C. The results showed that CO emissions for the cold start were reduced by 70% downstream of the catalyst when the ambient temperature rose from 2°C to 30°C. The corresponding hydrocarbon emissions were reduced by 41% and NOx emissions were increased by 90%. The influence of ambient temperature was less when the catalyst was fully warmed up. The results showed that ambient temperature had a greater influence on cold start emission under traffic jam conditions than in previous work with real world driving closer to the ECE passenger car drive cycle.
机译:针对城市拥挤的交通状况,确定了环境温度对1欧1仪表汽车的尾气排放的影响。在英国城市中,将车辆冷启动直接导致交通拥堵是一种普遍现象,目前在对城市交通污染进行建模时并未考虑到这一点。使用布袋采样技术直接从催化剂的排气,上游和下游获取车内排放样品。第一个袋子用于冷启动排放,大约行驶1.1公里。以下三个袋子装有较热的催化剂。冷启动测试进行了一年,环境温度范围为2°C至30°C。结果表明,当环境温度从2°C升至30°C时,冷启动时的CO排放量在催化剂下游降低了70%。相应的碳氢化合物排放量减少了41%,NOx排放量增加了90%。当催化剂完全预热时,环境温度的影响较小。结果表明,在交通拥堵条件下,环境温度对冷启动排放的影响要大于以往工作中接近ECE乘用车驾驶周期的实际工作。

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