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Air-Water Partitioning of Biomass-Burning Phenols and the Effects of Temperature and Salinity

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Date 2020 Mar 13
PMID 32162913
Citations 2
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Abstract

Biomass burning (BB) emits organic gases that, with chemical aging, can form secondary organic aerosol (SOA) in both the gas and aqueous phases. One class of biomass-burning emissions, phenols, are of interest because they react rapidly in the aqueous phase to efficiently form SOA, which might affect climate and human health. However, while measurements exist for the air-water partitioning constants of some simple phenols, Henry's law constants () are unknown for more complex BB phenols. In this work, we use a custom-built apparatus to measure for a suite of biomass-burning phenols that span a wide range of air-water partitioning coefficients. Comparing our measurements to predicted values from EPI Suite shows that this model consistently overestimates unless a suitable measured phenol value is included to adjust the calculations. In addition, we determine the effect of five salts on phenol partitioning by measuring the Setschenow coefficients (). Across the eight phenols we examined, values of depend primarily on salt identity and descend in the order (NH)SO > NaCl > NHCl ≥ KNO > NHNO. Lastly, we use our and results to discuss the aqueous processing of biomass-burning phenols in cloud/fog water versus aerosol liquid water.

Citing Articles

Chemical Differences between Phenolic Secondary Organic Aerosol Formed through Gas-Phase and Aqueous-Phase Reactions.

Jiang W, Yu L, Yee L, Chhabra P, Seinfeld J, Anastasio C ACS Earth Space Chem. 2024; 8(11):2270-2283.

PMID: 39600320 PMC: 11587083. DOI: 10.1021/acsearthspacechem.4c00204.


Rapid aqueous-phase dark reaction of phenols with nitrosonium ions: Novel mechanism for atmospheric nitrosation and nitration at low pH.

Cai B, Wang Y, Yang X, Li Y, Zhai J, Zeng Y PNAS Nexus. 2024; 3(9):pgae385.

PMID: 39295950 PMC: 11410049. DOI: 10.1093/pnasnexus/pgae385.