
Publications of Julia Remmers
All genres
Journal Article (13)
1.
Journal Article
14 (11), pp. 7297 - 7327 (2021)
An improved TROPOMI tropospheric NO2 research product over Europe. Atmospheric Measurement Techniques 2.
Journal Article
14 (7), pp. 5241 - 5269 (2021)
Evaluation of the coupled high-resolution atmospheric chemistry model system MECO(n) using in situ and MAX-DOAS NO2 measurements. Atmospheric Measurement Techniques 3.
Journal Article
14 (1), pp. 481 - 510 (2021)
Ground-based validation of the Copernicus Sentinel-5P TROPOMI NO2 measurements with the NDACC ZSL-DOAS, MAX-DOAS and Pandonia global networks. Atmospheric Measurement Techniques 4.
Journal Article
20 (13), pp. 8017 - 8045 (2020)
Validation of Aura-OMI QA4ECV NO2 climate data records with ground-based DOAS networks: the role of measurement and comparison uncertainties. Atmospheric Chemistry and Physics 5.
Journal Article
12 (3), pp. 1785 - 1806 (2019)
The Mainz Profile Algorithm (MAPA). Atmospheric Measurement Techniques 6.
Journal Article
12 (5), pp. 2745 - 2817 (2019)
Is a scaling factor required to obtain closure between measured and modelled atmospheric O4 absorptions? An assessment of uncertainties of measurements and radiative transfer simulations for 2 selected days during the MAD-CAT campaign. Atmospheric Measurement Techniques 7.
Journal Article
10 (3), pp. 955 - 978 (2017)
Investigating differences in DOAS retrieval codes using MAD-CAT campaign data. Atmospheric Measurement Techniques 8.
Journal Article
10 (3), pp. 881 - 903 (2017)
In-operation field-of-view retrieval (IFR) for satellite and ground-based DOAS-type instruments applying coincident high-resolution imager data. Atmospheric Measurement Techniques 9.
Journal Article
10, pp. 3719 - 3742 (2017)
MAX-DOAS measurements of HONO slant column densities during the MAD-CAT campaign: inter-comparison, sensitivity studies on spectral analysis settings, and error budget. Atmospheric Measurement Techniques 10.
Journal Article
9 (9), pp. 4803 - 4823 (2016)
Absolute calibration of the colour index and O-4 absorption derived from Multi AXis (MAX-)DOAS measurements and their application to a standardised cloud classification algorithm. Atmospheric Measurement Techniques 11.
Journal Article
8 (10), pp. 4265 - 4280 (2015)
A new method for the absolute radiance calibration for UV-vis measurements of scattered sunlight. Atmospheric Measurement Techniques 12.
Journal Article
8 (12), pp. 5133 - 5156 (2015)
Cloud and aerosol classification for 2.5 years of MAX-DOAS observations in Wuxi (China) and comparison to independent data sets. Atmospheric Measurement Techniques 13.
Journal Article
7 (5), pp. 1289 - 1320 (2014)
Cloud detection and classification based on MAX-DOAS observations. Atmospheric Measurement Techniques Meeting Abstract (1)
14.
Meeting Abstract
Estimating average Nitrogen Oxide emissions from inland waterway vessels using MAX-DOAS measurements. In EGU General Assembly 2022, Vienna, Austria. (2022)
Thesis - Master (1)
15.
Thesis - Master
Untersuchung der räumlichen Verteilung troposphärischer Spurenstoffe und Aerosole mit der MAX-DOAS-Methode. Master, Technische Universität Darmstadt, Darmstadt (2011)
Working Paper (7)
16.
Working Paper
Ground-based validation of the Copernicus Sentinel-5p TROPOMI NO2 measurements with the NDACC ZSL-DOAS, MAX-DOAS and Pandonia global networks. Atmospheric Measurement Techniques Discussions 13 (2020)
17.
Working Paper
Validation of tropospheric NO2 column measurements of GOME-2A and OMI using MAX-DOAS and direct sun network observations. Atmospheric Measurement Techniques Discussions 13 (2020)
18.
Working Paper
The Mainz Profile Algorithm (MAPA). Atmospheric Measurement Techniques Discussions 11 (2018), 33 pp.
19.
Working Paper
Is a scaling factor required to obtain closure between measured and modelled atmospheric O4 absorptions? – A case study for two days during the MADCAT campaign. Atmospheric Measurement Techniques Discussions 11 (2018), 85 pp.
20.
Working Paper
MAX-DOAS measurements of HONO slant column densities during the MAD-CAT Campaign: inter-comparison and sensitivity studies on spectral analysis settings. Atmospheric Measurement Techniques Discussions 10 (2017)