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首页> 外文期刊>International Journal of Automotive Technology >Experimental study on the characteristics of nano-particle emissions from a heavy-duty diesel engine using a urea-SCR system
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Experimental study on the characteristics of nano-particle emissions from a heavy-duty diesel engine using a urea-SCR system

机译:尿素-SCR系统对重型柴油机纳米颗粒排放特性的实验研究

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摘要

Particulate matter in diesel engine exhaust, particularly nano-particles, can cause serious human health problems including diseases such as lung cancer. Because diesel nano-particle issues are of global concern, regulations on particulate matter emissions specify that not only the weight of particulate matter emitted but also the concentration of nanoparticles must be controlled. This study aimed to determine the effects on nano-particle and PM emissions from a diesel engine when applying a urea-SCR system for NOx reduction. We found that PM weight increases by approximately 90% when urea is injected in ND-13 mode over the emission without urea injection. Additionally, PM weight increases as the NH3/NOx mole ratio is increased at 250 °C. In SEM scans of the collected PM, spherical particles were observed during urea injection, with sizes of approximately 200 nm to 1 μm. This study was designed to determine the conditions under which nano-particles and PM are formed in a urea-SCR system and to relate these conditions to particle size and shape via a quantitative analysis in ND-13 mode.
机译:柴油机排气中的颗粒物,特别是纳米颗粒,可能引起严重的人类健康问题,包括肺癌等疾病。因为柴油纳米颗粒问题是全球关注的问题,所以有关颗粒物排放的法规规定,不仅必须控制排放的颗粒物的重量,而且还必须控制纳米颗粒的浓度。本研究旨在确定应用尿素SCR系统还原NOx 时对柴油机纳米颗粒和PM排放的影响。我们发现,在不使用尿素喷射的情况下,以ND-13模式喷射尿素时,PM重量增加了约90%。另外,随着NH 3 / NO x摩尔比在250°C下增加,PM重量增加。在对收集的PM进行SEM扫描时,在注入尿素期间观察到球形颗粒,尺寸约为200 nm至1μm。本研究旨在确定在尿素SCR系统中形成纳米颗粒和PM的条件,并通过ND-13模式下的定量分析将这些条件与粒径和形状相关联。

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