Publikationen von John Crowley
Alle Typen
Meeting Abstract (9)
181.
Meeting Abstract
Comparison of Isoprene+NO3 Chemical Mechanisms at Atmospheric Night-Time Conditions in Chamber Experiments at SAPHIR: Evidence of Epoxy Production and Unimolecular RO2 Decomposition (Invited). In AGU Fall Meeting 2022, A45D-05. AGU Fall Meeting, Chicago, IL, 12. Dezember 2022 - 16. Dezember 2022. (2022)
Forschungspapier (19)
182.
Forschungspapier
Molecular composition and volatility of multi-generation products formed from isoprene oxidation by nitrate radical. Atmospheric Chemistry and Physics Discussions 21 (2020)
183.
Forschungspapier
Modelling the impact of gas-phase pyruvic acid on acetaldehyde and peroxy radical formation in the boreal forest. Atmospheric Chemistry and Physics Discussions 20 (2020)
184.
Forschungspapier
Reaction between CH3C(O)OOH (peracetic acid) and OH in the gas-phase: A combined experimental and theoretical study of the kinetics and mechanism. Atmospheric Chemistry and Physics Discussions 20 (2020)
185.
Forschungspapier
Influence of vessel characteristics and atmospheric processes on the gas and particle phase of ship emission plumes: In-situ measurements in the Mediterranean Sea and around the Arabian Peninsula. Atmospheric Chemistry and Physics Discussions in review (2019)
186.
Forschungspapier
Chemical ionisation quadrupole mass spectrometer with an electrical discharge ion source for atmospheric trace gas measurement. Atmospheric Measurement Techniques Discussions 11 (2018), 35 S.
187.
Forschungspapier
Diurnal variability, photochemical production and loss processes of hydrogen peroxide in the boundary layer over Europe. Atmospheric Chemistry and Physics Discussions 18 (2018), 29 S.
188.
Forschungspapier
Direct measurements of NO3-reactivity in and above the boundary layer of a mountain-top site: Identification of reactive trace gases and comparison with OH-reactivity. Atmospheric Chemistry and Physics Discussions 18 (2018)
189.
Forschungspapier
Oxidation processes in the Eastern Mediterranean atmosphere: Evidence from the Modelling of HOx Measurements over Cyprus. Atmospheric Chemistry and Physics Discussions 18 (2018)
190.
Forschungspapier
Temperature-dependent rate coefficients for the reactions of the hydroxyl radical with the atmospheric biogenics isoprene, alpha-pinene and delta-3-carene. Atmospheric Chemistry and Physics Discussions 17 (2017)
191.
Forschungspapier
Temperature-(208–318 K) and pressure-(18–696 Torr) dependent rate coefficients for the reaction between OH and HNO3. Atmospheric Chemistry and Physics Discussions 17 (2017)
192.
Forschungspapier
Atmospheric chemistry, sources and sinks of carbon suboxide, C3O2. Atmospheric Chemistry and Physics Discussions 17 (2017)
193.
Forschungspapier
Volatile organic compounds (VOCs) in photochemically aged air from the Eastern and Western Mediterranean. Atmospheric Chemistry and Physics Discussions 16 (2016)
194.
Forschungspapier
Measurement of ambient NO3 reactivity: design, characterization and first deployment of a new instrument. Atmospheric Measurement Techniques Discussions 9 (2016)
195.
Forschungspapier
Daytime formation of nitrous acid at a coastal remote site in Cyprus indicating a common ground source of atmospheric HONO and NO. Atmospheric Chemistry and Physics Discussions 16 (2016)
196.
Forschungspapier
Nitrate radicals and biogenic volatile organic compounds: oxidation, mechanisms, and organic aerosol. Atmospheric Chemistry and Physics Discussions 16 (2016)
197.
Forschungspapier
Estimating N2O5 uptake coefficients using ambient measurements of NO3, N2O5, ClNO2 and particle-phase nitrate. Atmospheric Chemistry and Physics Discussions 16 (2016)
198.
Forschungspapier
A five-channel cavity ring-down spectrometer for the detection of NO2, NO3, N2O5, total peroxy nitrates and total alkyl nitrates. Atmospheric Measurement Techniques Discussions 9 (2016)
199.
Forschungspapier
Day and night-time formation of organic nitrates at a forested mountain site in south-west Germany. Atmospheric Chemistry and Physics Discussions 16 (2016)
200.
Forschungspapier
A two-channel, thermal dissociation cavity-ringdown spectrometer for the detection of ambient NO2, RO2NO2 and RONO2. Atmospheric Measurement Techniques Discussions 8 S. 11533 - 11596 (2015), 63 S.