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Dive into the research topics where Enno Peters is active.

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Featured researches published by Enno Peters.


Atmospheric Chemistry and Physics | 2017

Comparison of tropospheric NO 2 columns from MAX-DOAS retrievals and regional air quality model simulations

Anne-Marlene Blechschmidt; J. Arteta; Adriana Coman; Lyana Curier; Henk Eskes; Gilles Foret; Clio Gielen; F. Hendrick; Virginie Marécal; Frédérik Meleux; Jonathan Parmentier; Enno Peters; Gaia Pinardi; Ankie Piters; Matthieu Plu; Andreas Richter; Mikhail Sofiev; A. Valdebenito; Michel Van Roozendael; Julius Vira; Tim Vlemmix; J. P. Burrows

Multi-axis differential optical absorption spectroscopy (MAX-DOAS) tropospheric NO2 column retrievals from four European measurement stations are compared to simulations from five regional air quality models which contribute to the European regional ensemble forecasts and reanalyses of the operational Copernicus Atmosphere Monitoring Service (CAMS). Compared to other observational data usually applied for regional model evaluation, MAX-DOAS data are closer to the regional model data in terms of horizontal and vertical resolution, and multiple measurements are available during daylight, so that, for example, diurnal cycles of trace gases can be investigated. In general, there is good agreement between simulated and retrieved NO2 column values for individual MAX-DOAS measurements with correlations between 35 % and 70 % for individual models and 45 % to 75 % for the ensemble median for tropospheric NO2 vertical column densities (VCDs), indicating that emissions, transport and tropospheric chemistry of NOx are on average well simulated. However, large differences are found for individual pollution plumes observed by MAX-DOAS. Most of the models overestimate seasonal cycles for the majority of MAX-DOAS sites investigated. At the urban stations, weekly cycles are reproduced well, but the decrease towards the weekend is underestimated and diurnal cycles are overall not well represented. In particular, simulated morning rush hour peaks are not confirmed by MAX-DOAS retrievals, and models fail to reproduce observed changes in diurnal cycles for weekdays versus weekends. The results of this study show that future model development needs to concentrate on improving representation of diurnal cycles and associated temporal scalings. Published by Copernicus Publications on behalf of the European Geosciences Union. 2796 A.-M. Blechschmidt et al.: Comparison of NO2 columns from MAX-DOAS and regional air quality models


web science | 2010

Intercomparison of slant column measurements of NO 2 and O 4 by MAX-DOAS and zenith-sky UV and visible spectrometers

Howard K. Roscoe; Van M Roozendael; C. Fayt; du A Piesanie; Nader Abuhassan; C. Adams; M. Akrami; A. Cede; J. Chong; K. Clémer; Udo Friess; M Gil Ojeda; Florence Goutail; R. Graves; Alexandra Griesfeller; Katja Grossmann; G. Hemerijckx; F. Hendrick; Jay R. Herman; C. Hermans; Hitoshi Irie; P. V. Johnston; Yugo Kanaya; K. Kreher; Roland J. Leigh; Alexis Merlaud; George H. Mount; Monica Navarro; H. Oetjen; Andrea Pazmino


Atmospheric Measurement Techniques | 2011

The Cabauw Intercomparison campaign for Nitrogen Dioxide measuring Instruments (CINDI): Design, execution, and early results

Ankie Piters; K. F. Boersma; M. Kroon; Jennifer Carrie Hains; M. Van Roozendael; F. Wittrock; N. Abuhassan; C. Adams; M. Akrami; M. Allaart; Arnoud Apituley; Steffen Beirle; J. B. Bergwerff; A. J. C. Berkhout; Dominik Brunner; A. Cede; J. Chong; K. Clémer; C. Fayt; U. Frieß; L. Gast; Manuel Gil-Ojeda; Florence Goutail; R. Graves; Alexandra Griesfeller; K. Großmann; G. Hemerijckx; F. Hendrick; B. Henzing; Jay R. Herman


Atmospheric Measurement Techniques | 2012

MAX-DOAS formaldehyde slant column measurements during CINDI: intercomparison and analysis improvement

G. Pinardi; M. Van Roozendael; Nader Abuhassan; C. Adams; Alexander Cede; Katrijn Clemer; C. Fayt; U. Frieß; M. Gil; Jay R. Herman; C. Hermans; F. Hendrick; Hitoshi Irie; A. Merlaud; M. Navarro Comas; Enno Peters; Ankie Piters; O. Puentedura; Andreas Richter; A. Schönhardt; R. Shaiganfar; E. Spinei; K. Strong; H. Takashima; M. Vrekoussis; Thomas Wagner; F. Wittrock; S. Yilmaz


Atmospheric Chemistry and Physics | 2012

Iodine monoxide in the Western Pacific marine boundary layer

K. Großmann; U. Frieß; Enno Peters; F. Wittrock; Johannes Lampel; S. Yilmaz; J. Tschritter; Roberto Sommariva; R. von Glasow; Birgit Quack; Kirstin Krüger; K. Pfeilsticker; U. Platt


Atmospheric Chemistry and Physics | 2012

Formaldehyde and nitrogen dioxide over the remote western Pacific Ocean: SCIAMACHY and GOME-2 validation using ship-based MAX-DOAS observations

Enno Peters; F. Wittrock; K. Großmann; U. Frieß; Andreas Richter; J. P. Burrows


Atmospheric Measurement Techniques | 2014

Liquid water absorption and scattering effects in DOAS retrievals over oceans

Enno Peters; F. Wittrock; Andreas Richter; Leonardo M. A. Alvarado; Vladimir V. Rozanov; J. P. Burrows


Atmospheric Environment | 2015

Ship-based MAX-DOAS measurements of tropospheric NO2 and SO2 in the South China and Sulu Sea

Stefan F. Schreier; Enno Peters; Andreas Richter; Johannes Lampel; F. Wittrock; J. P. Burrows


Atmospheric Measurement Techniques | 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

Yang Wang; Steffen Beirle; F. Hendrick; Andreas Hilboll; Junli Jin; Aleksandra A. Kyuberis; Johannes Lampel; Ang Li; Yuhan Luo; Lorenzo Lodi; Jianzhong Ma; Monica Navarro; Ivan Ortega; Enno Peters; Oleg L. Polyansky; Julia Remmers; Andreas Richter; O. Puentedura; Michel Van Roozendael; André Seyler; Jonathan Tennyson; R. Volkamer; Pinhua Xie; Nikolai F. Zobov; Thomas Wagner


Atmospheric Measurement Techniques | 2016

Investigating differences in DOAS retrieval codes using MAD-CAT campaign data

Enno Peters; Gaia Pinardi; André Seyler; Andreas Richter; F. Wittrock; Tim Bösch; Michel Van Roozendael; F. Hendrick; Theano Drosoglou; A. F. Bais; Yugo Kanaya; X. Zhao; Kimberly Strong; Johannes Lampel; R. Volkamer; Theodore K. Koenig; Ivan Ortega; O. Puentedura; Mónica Navarro-Comas; Laura Gómez; Margarita Yela González; Ankie Piters; Julia Remmers; Yang Wang; Thomas Wagner; Shanshan Wang; Alfonso Saiz-Lopez; David García-Nieto; Carlos A. Cuevas; Nuria Benavent

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U. Frieß

Heidelberg University

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F. Hendrick

Belgian Institute for Space Aeronomy

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Michel Van Roozendael

Belgian Institute for Space Aeronomy

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Ankie Piters

Royal Netherlands Meteorological Institute

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