Adverse results of the economic crisis: A study on the emergence of enhanced formaldehyde (HCHO) levels seen from satellites over Greek urban sites
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A. Bais | K. Boersma | I. D. Smedt | M. Koukouli | D. Melas | D. Balis | E. Gerasopoulos | P. Valks | C. Giannaros | A. Poupkou | I. Zyrichidou | N. Liora | T. Drosoglou | A. Richter | M. Gratsea | M. V. Roozendael
[1] Estimating the Biogenic Non-Methane Hydrocarbon Emissions over Greece , 2018 .
[2] I. D. Smedt,et al. Investigating the Impact of the Economic Recession Over Mediterranean Urban Regions on Satellite-Based Formaldehyde Columns; Comparison with Chemistry Transport Model Results , 2017 .
[3] E. Gerasopoulos,et al. The combined effect of reduced fossil fuel consumption and increasing biomass combustion on Athens' air quality, as inferred from long term CO measurements. , 2017, The Science of the total environment.
[4] I. D. Smedt,et al. Validation of OMI, GOME-2A and GOME-2B tropospheric NO 2 , SO 2 and HCHO products using MAX-DOAS observations from 2011 to 2014 in Wuxi, China: investigation of the effects of priori profiles and aerosols on the satellite products , 2017 .
[5] B. Psiloglou,et al. Multi-tracer approach to characterize domestic wood burning in Athens (Greece) during wintertime , 2017 .
[6] Can Li,et al. Observing atmospheric formaldehyde (HCHO) from space: validation and intercomparison of six retrievals from four satellites (OMI, GOME2A, GOME2B, OMPS) with SEAC4RS aircraft observations over the Southeast US. , 2016, Atmospheric chemistry and physics.
[7] A. Bais,et al. Comparisons of ground-based tropospheric NO 2 MAX-DOAS measurements to satellite observations with the aid of an air quality model over the Thessaloniki area, Greece , 2016 .
[8] S. Pandis,et al. The contribution of wood burning and other pollution sources to wintertime organic aerosol levels in two Greek cities , 2016 .
[9] K. Fameli,et al. The new open Flexible Emission Inventory for Greece and the Greater Athens Area (FEI-GREGAA): Account of pollutant sources and their importance from 2006 to 2012 , 2016 .
[10] J. Burrows,et al. Slant column MAX-DOAS measurements of nitrogen dioxide, formaldehyde, glyoxal and oxygen dimer in the urban environment of Athens , 2016 .
[11] J. Peischl,et al. Formaldehyde production from isoprene oxidation across NOx regimes. , 2015, Atmospheric chemistry and physics.
[12] D. Loyola,et al. OCRA radiometric cloud fractions for GOME-2 on MetOp-A/B , 2015 .
[13] T. Giannaros,et al. The natural emissions model (NEMO): Description, application and model evaluation , 2015 .
[14] L. Ntziachristos,et al. Daily and seasonal variation of traffic related aerosol pollution in Thessaloniki, Greece, during the financial crisis , 2015 .
[15] Nicolas Theys,et al. Diurnal, seasonal and long-term variations of global formaldehyde columns inferred from combined OMI and GOME-2 observations , 2015 .
[16] V. L. Orkin,et al. Chemical Kinetics and Photochemical Data for Use in Atmospheric Studies: Evaluation Number 18 , 2015 .
[17] E. Gerasopoulos,et al. Sources of atmospheric aerosol from long-term measurements (5 years) of chemical composition in Athens, Greece. , 2015, The Science of the total environment.
[18] I. D. Smedt,et al. Inter-annual variations in satellite observations of nitrogen dioxide and formaldehyde over India , 2015 .
[19] Michael Eisinger,et al. The GOME-2 instrument on the Metop series of satellites: instrument design, calibration, and level 1 data processing – an overview , 2015 .
[20] J. Veefkind,et al. Impact of aerosols on the OMI tropospheric NO 2 retrievals over industrialized regions: how accurate is the aerosol correction of cloud-free scenes via a simple cloud model? , 2015 .
[21] Christos Zerefos,et al. Overview of the O3M SAF GOME-2 operational atmospheric composition and UV radiation data products and data availability , 2015 .
[22] Agis M. Papadopoulos,et al. The impact of economic recession on domestic energy consumption , 2015 .
[23] A.J.H. Visschedijk,et al. TNO-MACC_II emission inventory; a multi-year (2003–2009) consistent high-resolution European emission inventory for air quality modelling , 2014 .
[24] D. Sarigiannis,et al. Total exposure to airborne particulate matter in cities: the effect of biomass combustion. , 2014, The Science of the total environment.
[25] N. Moussiopoulos,et al. Increased biomass burning due to the economic crisis in Greece and its adverse impact on wintertime air quality in Thessaloniki. , 2013, Environmental science & technology.
[26] K. Boersma,et al. Key chemical NOx sink uncertainties and how they influence top-down emissions of nitrogen oxides , 2013 .
[27] Christos Zerefos,et al. Economic crisis detected from space: Air quality observations over Athens/Greece , 2013 .
[28] A. Bais,et al. Phaethon: A System for the Validation of Satellite Derived Atmospheric Columns of Trace Gases , 2013 .
[29] Nicolas Theys,et al. Improved retrieval of global tropospheric formaldehyde columns from GOME-2/MetOp-A addressing noise reduction and instrumental degradation issues , 2012 .
[30] M. Gauß,et al. The EMEP MSC-W chemical transport model -- technical description , 2012 .
[31] Dirk Richter,et al. Primary and secondary sources of formaldehyde in urban atmospheres: Houston Texas region , 2012 .
[32] K. F. Boersma,et al. Reductions in nitrogen oxides over Europe driven by environmental policy and economic recession , 2012, Scientific Reports.
[33] D. Luecken,et al. Regional sources of atmospheric formaldehyde and acetaldehyde, and implications for atmospheric modeling , 2012 .
[34] Henk Eskes,et al. An improved tropospheric NO 2 column retrieval algorithm for the Ozone Monitoring Instrument , 2011 .
[35] Pieter Valks,et al. Operational total and tropospheric NO 2 column retrieval for GOME-2 , 2011 .
[36] J. Hansen,et al. GLOBAL SURFACE TEMPERATURE CHANGE , 2010 .
[37] Christian George,et al. Inter-comparison of source apportionment models for the estimation of wood burning aerosols during wintertime in an Alpine city (Grenoble, France) , 2010 .
[38] Trissevgeni Stavrakou,et al. Trend detection in satellite observations of formaldehyde tropospheric columns , 2010 .
[39] Alexis Merlaud,et al. Ground-based FTIR and MAX-DOAS observations of formaldehyde at Réunion Island and comparisons with satellite and model data , 2009 .
[40] J. Burrows,et al. Satellite measurements of formaldehyde linked to shipping emissions , 2009 .
[41] Johannes W. Kaiser,et al. Aerosol analysis and forecast in the European Centre for Medium-Range Weather Forecasts Integrated Forecast System : Forward modeling , 2009 .
[42] M. Molina,et al. Impact of primary formaldehyde on air pollution in the Mexico City Metropolitan Area , 2008 .
[43] I. D. Smedt,et al. Evaluating the performance of pyrogenic and biogenic emission inventories against one decade of space-based formaldehyde columns , 2008 .
[44] R. Spurr. LIDORT and VLIDORT: Linearized pseudo-spherical scalar and vector discrete ordinate radiative transfer models for use in remote sensing retrieval problems , 2008 .
[45] Ulrich Platt,et al. Differential optical absorption spectroscopy , 2008 .
[46] G. Powers,et al. A Description of the Advanced Research WRF Version 3 , 2008 .
[47] Stefan Reimann,et al. A photochemical modeling study of ozone and formaldehyde generation and budget in the Po basin , 2007 .
[48] Diego G. Loyola,et al. Cloud Properties Derived From GOME/ERS-2 Backscatter Data for Trace Gas Retrieval , 2007, IEEE Transactions on Geoscience and Remote Sensing.
[49] J. Peñuelas,et al. Short-chain oxygenated VOCs : Emission and uptake by plants and atmospheric sources, sinks, and concentrations , 2007 .
[50] J. Burrows,et al. Simultaneous global observations of glyoxal and formaldehyde from space , 2006 .
[51] I. Isaksen,et al. Photochemical modelling in the Po basin with focus on formaldehyde and ozone , 2006 .
[52] John P. Burrows,et al. Comparison of 7 years of satellite‐borne and ground‐based tropospheric NO2 measurements around Milan, Italy , 2006 .
[53] K. Chance,et al. Constraining global isoprene emissions with Global Ozone Monitoring Experiment (GOME) formaldehyde column measurements , 2005 .
[54] D. Hauglustaine,et al. Impact of climate variability and land use changes on global biogenic volatile organic compound emissions , 2005 .
[55] Diego G. Loyola,et al. Automatic cloud analysis from polar-orbiting satellites using neural network and data fusion techniques , 2004, IGARSS 2004. 2004 IEEE International Geoscience and Remote Sensing Symposium.
[56] Henk Eskes,et al. Error analysis for tropospheric NO2 retrieval from space , 2004 .
[57] P. Zieger,et al. Multi axis differential optical absorption spectroscopy (MAX-DOAS) , 2003 .
[58] G. Carmichael,et al. Airborne tunable diode laser measurements of formaldehyde during TRACE-P: Distributions and box model comparisons , 2003 .
[59] John P. Burrows,et al. GOME MEASUREMENTS OF STRATOSPHERIC AND TROPOSPHERIC BrO , 2002 .
[60] M. Andreae,et al. Emission of trace gases and aerosols from biomass burning , 2001 .
[61] J. Lamarque,et al. A global simulation of tropospheric ozone and related tracers: Description and evaluation of MOZART, version 2 , 2001 .
[62] Thomas P. Kurosu,et al. Satellite observations of formaldehyde over North America from GOME , 2000 .
[63] D. Jacob,et al. Distribution and fate of selected oxygenated organic species in the troposphere and lower stratosphere over the Atlantic , 2000 .
[64] D. Jacob,et al. Hydrogen peroxide, organic hydroperoxide, and formaldehyde as primary pollutants from biomass burning , 1997 .
[65] Rainer Friedrich,et al. GENEMIS: Assessment, Improvement, and Temporal and Spatial Disaggregation of European Emission Data , 1997 .
[66] Larry G. Anderson,et al. Sources and sinks of formaldehyde and acetaldehyde: An analysis of Denver's ambient concentration data , 1996 .
[67] D. R. Lawson,et al. Formaldehyde Measurement Methods Evaluation and Ambient Concentrations During the Carbonaceous Species Methods Comparison Study , 1990 .
[68] D. Lowe,et al. Formaldehyde (HCHO) measurements in the nonurban atmosphere , 1983 .