Molecular and physical composition of tar balls in wildfire smoke: an investigation with complementary ionisation methods and 15-Tesla FT-ICR mass spectrometry
Amna Ijaz(Michigan Technological University), Lynn Mazzoleni(Michigan Technological University), Simeon Schum(Michigan Technological University), Swarup China(Michigan Technological University), Nurun Nahar Lata(Pacific Northwest National Laboratory), Libor Kovařík(Pacific Northwest National Laboratory), William Kew(Pacific Northwest National Laboratory), Susan Mathai(Michigan Technological University), Zezhen Cheng(Pacific Northwest National Laboratory)
Cited by 10
Related Papers
Carbon oxidation state as a metric for describing the chemistry of atmospheric organic aerosol
|University of North Texas Digital Library (University of North Texas)|2010|1.4k
Water-Soluble Atmospheric Organic Matter in Fog: Exact Masses and Chemical Formula Identification by Ultrahigh-Resolution Fourier Transform Ion Cyclotron Resonance Mass Spectrometry
|Environmental Science & Technology|2010|260
Transformations of dissolved organic matter induced by UV photolysis, Hydroxyl radicals, chlorine radicals, and sulfate radicals in aqueous-phase UV-Based advanced oxidation processes
|Water Research|2018|245
Morphology and mixing state of aged soot particles at a remote marine free troposphere site: Implications for optical properties
|Geophysical Research Letters|2015|238
Atmospheric organic matter in clouds: exact masses and molecular formula identification using ultrahigh-resolution FT-ICR mass spectrometry
|Atmospheric chemistry and physics|2013|221