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Title: Molecular Chemistry of Organic Aerosols Through the Application of High Resolution Mass Spectrometry

Journal Article · · Physical Chemistry Chemical Physics. PCCP, 13(9):3612-3629
DOI:https://doi.org/10.1039/c0cp02032j· OSTI ID:1007357

Understanding of molecular composition and fundamental chemical transformations of organic aerosols (OA) during their formation and aging is both a major challenge and the area of greatest uncertainty in atmospheric research. Particularly little is known about fundamental relationship between the chemical composition and physicochemical properties of OA, their atmospheric history, evolution, and impact on the environment. Ambient soft-ionization methods combined with high-resolution mass spectrometry (HR-MS) analysis provide detailed information on the molecular content of OA that is pivotal for improved understanding of their complex composition, multi-phase aging chemistry, direct (light absorption and scattering) and indirect (aerosol-cloud interactions) effects on atmospheric radiation and climate, and health effects. The HR-MS methods can detect thousands of individual OA constituents at once, provide their elemental formulae from accurate mass measurements, and provide structural information based on tandem mass spectrometry. Integration with additional analytical tools, such as chromatography and UV/Vis absorption spectroscopy, makes it possible to further separate OA compounds by their polarity and ability to absorb solar radiation. The goal of this perspective is to describe modern HR-MS methods, review recent applications to field and laboratory studies of OA, and explain how the information obtained from HR-MS methods can be translated into improved understanding of OA chemistry.

Research Organization:
Pacific Northwest National Lab. (PNNL), Richland, WA (United States). Environmental Molecular Sciences Lab. (EMSL)
Sponsoring Organization:
USDOE
DOE Contract Number:
AC05-76RL01830
OSTI ID:
1007357
Report Number(s):
PNNL-SA-76971; 34503; KP1704020; KC0302020; TRN: US201106%%235
Journal Information:
Physical Chemistry Chemical Physics. PCCP, 13(9):3612-3629, Vol. 13, Issue 9; ISSN 1463-9076
Country of Publication:
United States
Language:
English