Kleindienst Tadeusz E, Edney Edward O, Lewandowski Michael, Offenberg John H, Jaoui Mohammed
National Exposure Research Laboratory, U.S. Environmental Protection Agency, Research Triangle Park, North Carolina 27711, USA.
Environ Sci Technol. 2006 Jun 15;40(12):3807-12. doi: 10.1021/es052446r.
A laboratory study was carried out to investigate the secondary organic carbon (SOC) yields of alpha-pinene and isoprene in the presence of SO2, which produces acidic aerosol in the system. Experiments were based on irradiating each hydrocarbon (HC) with NOx in a 14.5 m3 smog chamber operated in the dynamic mode. The experimental design consisted of several multi-part experiments for each HC. In the first part of each experiment, an HC/NOx irradiation was conducted in the absence of SO2 and was followed by irradiations with the addition of SO2 in subsequent parts. Filter-based analyses for organic carbon were made using a thermal-optical approach either with an off-line instrument or in situ with an automated instrument. For isoprene in the absence of SO2, the SOC yield was approximately 0.001, a value consistent with earlier work from this laboratory. With the addition of up to 200 ppb SO2, the yield increased by a factor of 7. For alpha-pinene in the absence of SO2, the SOC yield of the irradiated mixture was found to average 0.096 from two experiments. With SO2 in the system, the SOC yield increased on average to 0.132. These results suggest that SO2, and by inference acidic aerosol, may play a role in increasing the yield of SOC from the photooxidation products of biogenic hydrocarbons or by the direct uptake of biogenic hydrocarbons onto acidic aerosol.
开展了一项实验室研究,以调查在存在二氧化硫(SO₂)的情况下α-蒎烯和异戊二烯的二次有机碳(SOC)产率,二氧化硫会在系统中产生酸性气溶胶。实验基于在动态模式下运行的14.5立方米烟雾箱中用氮氧化物(NOₓ)辐照每种碳氢化合物(HC)。实验设计包括针对每种碳氢化合物的几个多部分实验。在每个实验的第一部分,在不存在SO₂的情况下进行碳氢化合物/氮氧化物辐照,随后在后续部分添加SO₂后进行辐照。使用热光方法通过离线仪器或使用自动化仪器原位进行基于过滤器的有机碳分析。对于不存在SO₂的异戊二烯,SOC产率约为0.001,该值与本实验室早期的工作一致。添加高达200 ppb的SO₂后,产率提高了7倍。对于不存在SO₂的α-蒎烯,两次实验中辐照混合物的SOC产率平均为0.096。系统中存在SO₂时,SOC产率平均提高到0.132。这些结果表明,SO₂以及由此推断的酸性气溶胶,可能在提高生物源碳氢化合物光氧化产物的SOC产率或生物源碳氢化合物直接吸附到酸性气溶胶上方面发挥作用。