Heterogeneous reactions of isoprene and ozone on α-Al2O3: The suppression effect of relative humidity

Hong Yang Lian, Shu Feng Pang, Xiang He, Miao Yang, Jia Bi Ma, Yun Hong Zhang*

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

20 Citations (Scopus)

Abstract

The heterogeneous reactions of α-Al2O3 particles with a mixture of ozone (∼50 ppm) and isoprene (∼50 ppm) were studied as a function of relative humidities (RHs). The reactions were monitored in real time through the microscopic Fourier transform infrared (micro-FTIR) spectrometer. The results show that the presence of ozone leads to the rapid conversion of isoprene to carboxylate (COO) ions on the surfaces of α-Al2O3 particles in the initial stage. The water significantly suppresses the formation of the carboxylate ions. For the isoprene ozonolysis reaction on the α-Al2O3 particles, the reactive uptake coefficient is strongly suppressed by over a factor of 8 when the RH increases from 8% to 89%. The negative correlation between RH with the secondary organic aerosol (SOA) produced by isoprene ozonolysis plays a key role in the actual atmospheric environment under high humidity. Our results may provide insight into the ozonolysis process of biogenic alkenes over mineral aerosol surfaces with the influence of RHs.

Original languageEnglish
Article number124744
JournalChemosphere
Volume240
DOIs
Publication statusPublished - Feb 2020

Keywords

  • Heterogeneous reactions
  • Isoprene
  • Micro-FTIR
  • Relative humidity
  • α-AlO

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