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The influence of block heaters on the emissions from gasoline fueled cars with varying emission control technology at low ambient temperatures

机译:块加热器对汽油燃料汽车排放的影响,在低环境温度下变化排放控制技术

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The introduction of the three way catalyst (TWC) has considerably reduced emissions from gasoline fueled cars. Most of the pollutants from these cars are emitted during the cold start period. At lower ambient temperatures (below +20°C), as in the Northern part of Europe, these emissions increase considerably. In Sweden engine block heaters, mostly in combination with compartment heaters, are often used to increase the driver's comfort. The increased engine temperature also reduces emissions. Block heaters are also suitable for aftermarket installations, and can thus reduce emissions from in-use cars. This paper reports the investigations of the effects of a block heater on emissions and fuel consumption. It was decided to conduct tests on three types of light duty vehicles: cars with TWC, cars without TWC, and one car with very low emissions (i.e. TLEV). The cars were tested according to the FTP-75 test procedure at +22, +5, and -15°C ambient temperature. The test results showed substantial reductions of emissions for all cars with a block heater, at low ambient temperature. The reduction of CO and HC emissions in FTP-75 can be more than 80% for some cars. The relative reduction was less for older cars without a catalyst, but the absolute reduction was about the same as for TWC cars. NO{sub}x emissions were less affected and even increased marginally in some cases. The results also showed considerable reductions in particulate emissions at the lowest ambient temperature. The fuel consumption for the vehicle and the energy consumed by the block heater was measured and it was found that the preheat time for the heater could be optimized to minimize the total energy consumption. Some further optimizations and future development of this technology were also discussed.
机译:三种方式的引入催化剂(TWC)大大降低了汽油燃料汽车排放。来自这些汽车的大多数污染物在冷的开始期间被排放。在较低的环境温度(低于+ 20°C),如欧洲北部,这些排放量大幅增加。在瑞典发动机块加热器中,主要与隔室加热器结合,通常用于增加驾驶员的舒适度。增加的发动机温度也降低了排放。块加热器也适用于售后装置,从而可以减少来自使用汽车的排放。本文报告了块加热器对排放和燃料消耗影响的调查。决定在三种类型的轻型税车上进行测试:带有TWC的汽车,没有TWC的汽车,以及一辆带有非常低的排放(即TLEV)的汽车。根据FTP-75测试程序在+22,+5和-15°C环境温度下进行测试。在低环境温度下,测试结果表明,带块加热器的所有汽车的排放都减少了排放。对于某些汽车,FTP-75中的CO和HC排放的减少可能超过80%。对于没有催化剂的较旧的汽车,相对减少较少,但绝对减少与TWC汽车大致相同。在某些情况下,没有{sub} x排放甚至略微增加。结果还表明在最低环境温度下颗粒排放量显着减少。测量车辆的燃料消耗和块加热器消耗的能量,发现可以优化加热器的预热时间以最小化总能量消耗。还讨论了一些进一步的优化和未来的发展。

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