柴油发动机超细颗粒物数量检测方法研究进展
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TH89

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国家自然科学基金(52006054)、河南省重点研发与推广专项(科技攻关)(212102210331)项目资助


Review on determining ultra-fine particle number emissions from modern diesel engines
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    摘要:

    柴油机的颗粒物排放是城市大气超细颗粒物的主要来源,对环境质量和人体健康有严重的负面影响。 近年来,排放法 规对颗粒物排放的控制愈加严格,并对颗粒数量测量仪器的性能提出了更高的要求。 总结了 5 种颗粒数量测量仪器的测量原 理和特点,在特定测量需求和场合下对这些设备的性能进行了对比并针对下一阶段排放法规的测量需求,分析了以上测量设备 的适用性。 结果表明,冷凝颗粒计数器对粒径>10 nm 颗粒具有更快的响应速度,能够满足未来法规中对城市 RDE 测试循环的 需求。 然而,冷凝颗粒计数器无法测量粒径分布,不适用于针对 10~ 23 nm 颗粒控制技术的研发。 但发动机排气粒度仪可给出 粒径低至 5. 6 nm 颗粒的粒径分布,可为冷凝颗粒计数器的检测结果提供补充信息。

    Abstract:

    Particle emissions from diesel engines are the primary contributor to the ultra-fine particle in the urban atmosphere, and have severely reverse effects on environmental quality and human health. In recent years, particle emission is strictly regulated in the emission legislations, which requires the higher performance of instruments for particle number measurement. In this article, five particle number measuring instruments are summarized in their measuring principles and features. Then, the performances of those instruments under specific requirements and operating conditions are compared. Finally, the accessibility of those instruments is analyzed for the measurement requirements of the upcoming emission regulations. The result shows that the condensation particle counter (CPC) has a faster response to detection of >10 nm particle number emissions, which can meet the test requirements of the urban RDE test cycle and 10 ~ 23 nm in future regulations. However, CPC cannot measure the particle size distribution, so it is not suitable for the development of controlling technology for 10~ 23 nm particles. The engine exhaust particle sizer (EEPS) can give a size distribution of as small as 5. 6 nm particles, which may provide complementary information for the CPC detection for the upcoming emission legislations.

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关 泽,范晨阳,王站成,王 旭,付 政.柴油发动机超细颗粒物数量检测方法研究进展[J].仪器仪表学报,2022,43(7):1-16

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  • 在线发布日期: 2023-02-06
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