4.8 Article

A Role for 2-Methyl Pyrrole in the Browning of 4-Oxopentanal and Limonene Secondary Organic Aerosol

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ENVIRONMENTAL SCIENCE & TECHNOLOGY
卷 51, 期 19, 页码 11048-11056

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AMER CHEMICAL SOC
DOI: 10.1021/acs.est.7b02293

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资金

  1. U.S. Department of Commerce, National Oceanic and Atmospheric Administration through Climate Program Office [NA13OAR4310066, NA13OAR4310062]
  2. Ford Foundation of National Academy of Science
  3. NSF
  4. Office of Biological and Environmental Research of the U.S. DOE
  5. US DOE [DEAC06-76RL0 1830]

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Reactions of ammonia or ammonium sulfate (AS) with carbonyls in secondary organic aerosol (SOA) produced from limonene are known to form brown carbon (BrC) with a distinctive absorption band at 505 nm. This 0) study examined the browning processes in aqueous solutions of AS and 4-oxopentanal (4-OPA), which has a 1,4-dicarbonyl structural motif present in many limonene SOA compounds. Aqueous reactions of 4-OPA with AS were found to produce 2-methyl pyrrole (2-MP), which was detected by gas chromatography. While 2-MP does not absorb visible radiation, it can further react with 4-OPA eventually forming BrC compounds. This was demonstrated by reacting 2-MP with 4-OPA or limonene SOA, both of which produced BrC with absorption bands at 475 and 505 nm, respectively. The formation of BrC in the reaction of 4-OPA with AS and ammonium nitrate was greatly accelerated by evaporation of the solution suggesting an important role of the dehydration processes in BrC formation. 4-OPA was also found to produce BrC in aqueous reactions with a broad spectrum of amino acids and amines. These results suggest that 4-OPA may be the smallest atmospherically relevant compound capable of browning by the same mechanism as limonene SOA.

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