State Key Joint Laboratory of ESPC, School of Environment , Tsinghua University , Beijing 100084 , China.
State Environmental Protection Key Laboratory of Sources and Control of Air Pollution Complex , Beijing 100084 , China.
Environ Sci Technol. 2019 Dec 3;53(23):13832-13840. doi: 10.1021/acs.est.9b01316. Epub 2019 Nov 18.
Intermediate-volatility organic compounds (IVOCs) have been found as important sources for secondary organic aerosol (SOA) formation. IVOC emissions from nonroad construction machineries (NRCMs), including two road rollers and three motor graders, were characterized under three operation modes using an improved portable emission measurement system. The fuel-based IVOC emission factors (EFs) of NRCMs varied from 245.85 to 1802.19 mg/kg·fuel, which were comparable at magnitudes to the reported results of an ocean-going ship and on-road diesel vehicles without filters. The discrepancy of IVOC EFs is significant within different operation modes. IVOC EFs under the idling mode were 1.24-3.28 times higher than those under moving/working modes. Unspeciated -alkanes and cyclic compounds, which were the unresolved components in IVOCs at the molecular level, accounted for approximately 91% of total IVOCs from NRCMs. The SOA production potential analysis shows that IVOCs dominated SOA formation of NRCMs. Our results demonstrate that IVOC emissions from NRCMs are non-negligible. Thus, an accurate estimation of their IVOC emissions would benefit the understanding of SOA formation in the urban atmosphere.
中等挥发性有机化合物(IVOCs)已被发现是二次有机气溶胶(SOA)形成的重要来源。使用改进的便携式排放测量系统,在三种操作模式下对包括两台道路轧辊和三台平地机在内的非道路施工机械(NRCM)的 IVOC 排放进行了特征描述。NRCM 的基于燃料的 IVOC 排放因子(EF)在 245.85 至 1802.19 mg/kg·燃料之间变化,与报告的远洋船舶和无过滤器的道路柴油车辆的结果相当。在不同的操作模式下,IVOC EF 的差异很大。空转模式下的 IVOC EF 比移动/工作模式下的 EF 高 1.24-3.28 倍。非特定 -烷烃和环状化合物是 IVOC 中分子水平上未解析的成分,占 NRCM 总 IVOC 的约 91%。SOA 生成潜力分析表明,IVOC 主导了 NRCM 的 SOA 形成。我们的结果表明,NRCM 排放的 IVOC 不容忽视。因此,准确估算其 IVOC 排放量将有助于了解城市大气中 SOA 的形成。