Joo Taekyu, Rivera-Rios Jean C, Alvarado-Velez Daniel, Westgate Sabrina, Ng Nga Lee
School of Earth and Atmospheric Sciences, Georgia Institute of Technology, Atlanta, Georgia 30332, United States.
School of Chemical and Biomolecular Engineering, Georgia Institute of Technology, Atlanta, Georgia 30332, United States.
Environ Sci Technol Lett. 2021 Jul 14;8(8):691-698. doi: 10.1021/acs.estlett.1c00416. eCollection 2021 Aug 10.
The COVID-19 pandemic increased the demand for indoor air cleaners. While some commercial electronic air cleaners can be effective in reducing primary pollutants and inactivating bioaerosol, studies on the formation of secondary products from oxidation chemistry during their use are limited. Here, we measured oxygenated volatile organic compounds (OVOCs) and the chemical composition of particles generated from a hydroxyl radical generator in an office. During operation, enhancements in OVOCs, especially low-molecular-weight organic acids, were detected. Rapid increases in particle number and mass concentrations were observed, corresponding to the formation of highly oxidized secondary organic aerosol (SOA) (O:C ∼ 1.3), with an enhanced signal at / 44 (CO) in the organic mass spectra. These results suggest that organic acids generated during VOC oxidation contributed to particle nucleation and SOA formation. Nitrate, sulfate, and chloride also increased during the oxidation without a corresponding increase in ammonium, suggesting organic nitrate, organic sulfate, and organic chloride formation. As secondary species are reported to have detrimental health effects, further studies should not be limited to the inactivation of bioaerosol or reduction of particular VOCs, but should also evaluate potential OVOCs and SOA formation from electronic air cleaners in different indoor environments.
新冠疫情增加了对室内空气净化器的需求。虽然一些商用电子空气净化器在减少主要污染物和使生物气溶胶失活方面可能有效,但关于其使用过程中氧化化学产生二次产物的研究有限。在此,我们测量了办公室中羟基自由基发生器产生的含氧挥发性有机化合物(OVOCs)和颗粒物的化学成分。在运行过程中,检测到OVOCs有所增加,尤其是低分子量有机酸。观察到颗粒物数量和质量浓度迅速增加,这与高度氧化的二次有机气溶胶(SOA)(O:C ∼ 1.3)的形成相对应,在有机质谱图中/ 44(CO)处信号增强。这些结果表明,VOC氧化过程中产生的有机酸促成了颗粒物成核和SOA形成。氧化过程中硝酸盐、硫酸盐和氯化物也增加了,而铵没有相应增加,表明形成了有机硝酸盐、有机硫酸盐和有机氯化物。由于据报道二次物种对健康有有害影响,未来研究不应仅限于生物气溶胶失活或特定VOCs的减少,还应评估不同室内环境中电子空气净化器潜在的OVOCs和SOA形成情况。