Peer reviewed publications

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Millet, D. B. and Coauthors, 2015: A large and ubiquitous source of atmospheric formic acid. Atmospheric Chemistry and Physics, 15, 6283 - 6304, doi:10.5194/acp-15-6283-201510.5194/acp-15-6283-2015-supplement. http://www.atmos-chem-phys.net/15/6283/2015/.
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Lerner, B. M. and Coauthors, 2017: An improved, automated whole air sampler and gas chromatography mass spectrometry analysis system for volatile organic compounds in the atmosphere. Atmospheric Measurement Techniques, 10, 291 - 313, doi:10.5194/amt-10-291-201710.5194/amt-10-291-2017-supplement. http://www.atmos-meas-tech.net/10/291/2017/.
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Kaser, L. and Coauthors, 2013: Comparison of different real time VOC measurement techniques in a ponderosa pine forest. Atmospheric Chemistry and Physics, 13, 2896 - 2906, doi:10.5194/acp-13-2893-2013.
Kaser, L. and Coauthors, 2015: Chemistry-turbulence interactions and mesoscale variability influence the cleansing efficiency of the atmosphere. Geophysical Research Letters, 42, 10,894 - 10,903, doi:10.1002/grl.v42.2410.1002/2015GL066641. http://doi.wiley.com/10.1002/grl.v42.24.
de Gouw, J. A. and Coauthors, 2018: Chemistry of Volatile Organic Compounds in the Los Angeles Basin: Formation of Oxygenated Compounds and Determination of Emission Ratios. Journal of Geophysical Research: Atmospheres, 123, 2298 - 2319, doi:10.1002/jgrd.v123.410.1002/2017JD027976. http://doi.wiley.com/10.1002/jgrd.v123.4.
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Pye, H. O. T. and Coauthors, 2019: Anthropogenic enhancements to production of highly oxygenated molecules from autoxidation. Proceedings of the National Academy of Sciences, 116, 6641 - 6646, doi:10.1073/pnas.1810774116. http://www.pnas.org/lookup/doi/10.1073/pnas.1810774116.
de Gouw, J. A. and Coauthors, 2015: Airborne measurements of the atmospheric emissions from a fuel ethanol refinery. Journal of Geophysical Research: Atmospheres, 120, 4385 - 4397, doi:10.1002/jgrd.v120.910.1002/2015JD023138. http://doi.wiley.com/10.1002/jgrd.v120.9.