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機動車來源多環芳烴及其衍生物的排放特征研究進展

Research progress of emission characteristics of polycyclic aromatic hydrocarbons and their derivatives of vehicle exhaust

  • 摘要: 隨著機動車保有量快速增長,機動車排放成為大部分大中城市大氣中PAHs及其衍生物的主要來源之一。因此,基于以往的研究成果,匯總了臺架實驗、車載實驗、隧道實驗、路邊實驗等常用的機動車尾氣采集方法,對機動車來源PAHs及其衍生物的排放特征(排放因子、氣粒分配規律、成分譜研究以及機動車車型、工況和行駛里程的影響等)進行了總結,為不同研究需求下實驗方法的選取以及機動車減排措施的制定提供科學參考。此外,為緩解能源問題和機動車排放污染問題,中國計劃2020年在全國范圍內推廣使用車用乙醇汽油。由于乙醇汽油與普通汽油的性質存在諸多不同,乙醇汽油對機動車排放的影響也引起了研究者們的關注,因此分析了乙醇汽油實施對機動車尾氣PAHs及其衍生物的污染特征變化的影響,以期為該領域未來的研究方向提供建議,為機動車污染防控研究提供科學合理的參考。

     

    Abstract: Polycyclic aromatic hydrocarbons (PAHs) are a type of persistent organic pollutants with carcinogenic, teratogenic, and mutagenic effects. Moreover, the derivatives of PAHs, including nitro-PAHs (NPAHs) and oxygenated-PAHs (OPAHs), have strong oxidizing properties, and their mutagenicity and carcinogenic potential can reach 10 times and 100,000 times of the parent PAHs, respectively. Various epidemiological and toxicological studies have shown that PAHs and their derivatives are closely related to the occurrence and growth of many critical diseases. Therefore, PAHs have received immense attention in academics and is becoming a hot topic in scientific research. In recent years, a rapid increase in the number of motor vehicles has resulted in emissions from vehicles that have become one of the primary sources of PAHs and their atmospheric derivatives in almost all large and medium-sized cities. Based on the previous research, this review has summarized several standard sampling methods for vehicle exhaust, including bench experiment, vehicle-mounted experiment, tunnel experiment, and roadside experiment, and concluded the characteristics of PAHs and their derivatives from vehicle emissions (i.e., emission factor, gas-particle phase partitioning, source profiles, the influence of vehicle type, operating condition, and vehicle mileage). This review also provides scientific references for collecting sampling methods under various research demands by formulating emission reduction measures for motor vehicles. The oxygen content of ethanol–gasoline is higher than that of regular gasoline. The use of ethanol–gasoline can reduce many kinds of harmful substances in vehicle exhaust. At the same time, as straw is one of the raw materials of bioethanol, the promotion of ethanol gasoline for vehicles is also an important measure to solve the problem of burning agricultural waste such as straw and reduce the emission of pollutants. In this context, China plans to promote using vehicles with the ethanol–gasoline fuel nationwide in 2020 to alleviate the problem of pollution due to energy and motor vehicle emissions. However, there are certain differences in the properties between ethanol–gasoline and regular gasoline; hence, the impact of ethanol-blended gasoline on emissions from motor vehicles has attracted the attention of researchers. This paper reviewed the effect of ethanol-blended gasoline on the variation of pollution characteristics of PAHs and discussed their derivatives. Some useful suggestions for future research directions in this field are made, and scientific and reasonable references for the prevention and control measures of motor vehicle emission reduction are provided.

     

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