Nikkho Sepehr, Bai Bin, Mahrt Fabian, Zaks Julia, Peng Long, Kiland Kristian J, Liu Pengfei, Bertram Allan K
Department of Chemistry, The University of British Columbia, Vancouver, British Columbia V6T 1Z1, Canada.
School of Earth and Atmospheric Sciences, Georgia Institute of Technology, Atlanta, Georgia 30332, United States.
Environ Sci Technol. 2024 Dec 10;58(49):21702-21715. doi: 10.1021/acs.est.4c06235. Epub 2024 Nov 27.
Biomass burning events, including wildfires, can emit large amounts of phenolic compounds such as guaiacol. These phenolic compounds can undergo oxidation by nitrate radicals (NO) to form secondary organic aerosol (SOA). Viscosity and hygroscopicity are key properties that affect SOA's role in atmospheric chemistry, air quality, climate and public health. However, these properties have not been quantified for SOA formed from the reaction of phenolic compounds with NO. We used the poke-flow technique and a quartz crystal microbalance (QCM) to measure the viscosity and hygroscopicity of SOA particles generated from the reaction of NO with guaiacol, termed guaiacol-NO SOA. The viscosity of this SOA is extremely high (≳5 × 10 Pa s) at RH ≲ 70% and drastically higher than other SOA types previously investigated with the poke-flow technique at RH ≳ 40%. The high viscosity for guaiacol-NO SOA can be attributed, at least in part, to the low hygroscopicity measured via the QCM. From the viscosity results, we calculated the mixing times of organic molecules within guaiacol-NO SOA. The results suggest that mixing times within this type of SOA exceed 1 h for most tropospheric conditions, with possible implications for predicting the size, mass, and long-range transport of pollutants in phenolic SOA.
包括野火在内的生物质燃烧事件会排放大量酚类化合物,如愈创木酚。这些酚类化合物可被硝酸根自由基(NO)氧化,形成二次有机气溶胶(SOA)。粘度和吸湿性是影响SOA在大气化学、空气质量、气候及公众健康方面作用的关键特性。然而,对于酚类化合物与NO反应生成的SOA,这些特性尚未得到量化。我们采用针流技术和石英晶体微天平(QCM)来测量由NO与愈创木酚反应生成的SOA颗粒(称为愈创木酚 - NO SOA)的粘度和吸湿性。在相对湿度(RH)≲70%时,这种SOA的粘度极高(≳5×10 Pa·s),且大大高于此前在RH≳40%时用针流技术研究的其他类型的SOA。愈创木酚 - NO SOA的高粘度至少部分可归因于通过QCM测得的低吸湿性。根据粘度结果,我们计算了愈创木酚 - NO SOA中有机分子的混合时间。结果表明,在大多数对流层条件下,这类SOA中的混合时间超过1小时,这可能对预测酚类SOA中污染物的大小、质量及长距离传输有影响。