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Fant 9850 publikasjoner. Viser side 319 av 394:

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2016

Comparison of ground-based BrO measurements during THESEO with the SLIMCAT chemical transport model. Air pollution research report, 73

Sinnhuber, B.-M.; Chipperfield, M.P.; Enell, C.-F.; Friess, U.; Hendrick, F.; Johnston, P.V.; Kreher, K.; Pfeilsticker, K.; Platt, U.; Richter, A.; South, A.; Tørnkvist, K.K.; Roozendael, M.V.; Wagner, T.; Wittrock, F.

2000

Comparison of GOMOS high-resolution temperature profiles (HRTP) with data from selected EQUAL lidar and radiosonde sites.

Stebel, K.; Hansen, G.; Meijer, Y.; Claude, H.; von der Gathen, P.; Keckhut, P.; Kyrö, E.; Leblanc, T.; Maturilli, M.; McDermid, I.S.; Neuber, R.; Pal, S.; Steinbrecht, W.; Strawbridge, K.; Swart, D.P.J.

2006

Comparison of four inverse modelling systems applied to the estimation of HFC-125, HFC-134a, and SF6 emissions over Europe.

Brunner, D.; Arnold, T.; Henne, S.; Manning, A.; Thompson, R. L.; Maione, M.; O'Doherty, S.; Reimann, S.

2017

Comparison of five eulerian air pollution forecasting systems for the summer of 1999 using the German ozone monitoring data.

Tilmes, S.; Brandt, J.; Flatøy, F.; Bergstrom, R.; Flemming, J.; Langner, J.; Christensen, J.H.; Frohn, L.M.; Hov, Ø.; Jacobsen, I.; Reimer, E.; Stern, R.; Zimmermann, J.

2002

Comparison of five eulerian air pollution forecasting systems for the summer of 1999 using the German ozone monitoring data.

Tilmes, S.; Brandt, J.; Flatøy, F.; Bergstrom, R.; Flemming, J.; Langner, J.; Christensen, J.H.; Frohn, L.M.; Hov, Ø.; Jacobsen, I.; Reimer, E.; Stern, R.; Zimmermann, J.

2002

Comparison of dust-layer heights from active and passive satellite sensors

Kylling, Arve; Vandenbussche, Sophie; Capelle, Virginie; Cuesta, Juan; Klüser, Lars; Lelli, Luca; Popp, Thomas; Stebel, Kerstin; Veefkind, Pepijn

Aerosol-layer height is essential for understanding the impact of aerosols on the climate system. As part of the European Space Agency Aerosol_cci project, aerosol-layer height as derived from passive thermal and solar satellite sensors measurements have been compared with aerosol-layer heights estimated from CALIOP measurements. The Aerosol_cci project targeted dust-type aerosol for this study. This ensures relatively unambiguous aerosol identification by the CALIOP processing chain. Dust-layer height was estimated from thermal IASI measurements using four different algorithms (from BIRA-IASB, DLR, LMD, LISA) and from solar GOME-2 (KNMI) and SCIAMACHY (IUP) measurements. Due to differences in overpass time of the various satellites, a trajectory model was used to move the CALIOP-derived dust heights in space and time to the IASI, GOME-2 and SCIAMACHY dust height pixels. It is not possible to construct a unique dust-layer height from the CALIOP data. Thus two CALIOP-derived layer heights were used: the cumulative extinction height defined as the height where the CALIOP extinction column is half of the total extinction column, and the geometric mean height, which is defined as the geometrical mean of the top and bottom heights of the dust layer. In statistical average over all IASI data there is a general tendency to a positive bias of 0.5–0.8 km against CALIOP extinction-weighted height for three of the four algorithms assessed, while the fourth algorithm has almost no bias. When comparing geometric mean height there is a shift of −0.5 km for all algorithms (getting close to zero for the three algorithms and turning negative for the fourth). The standard deviation of all algorithms is quite similar and ranges between 1.0 and 1.3 km. When looking at different conditions (day, night, land, ocean), there is more detail in variabilities (e.g. all algorithms overestimate more at night than during the day). For the solar sensors it is found that on average SCIAMACHY data are lower by −1.097 km (−0.961 km) compared to the CALIOP geometric mean (cumulative extinction) height, and GOME-2 data are lower by −1.393 km (−0.818 km).

2018

Comparison of data for ozone amounts and UV doses obtained from simultaneous measurements with various standard UV instruments. Proceedings of SPIE, 5156

Dahlback, A.; Eide, H.A.; Høiskar, B.A.K.; Olsen, R.; Schmidlin, F.J.; Tsay, S.-C.; Stamnes, K.H.

2003

Comparison of data assimilation methods for assessing PM10 exceedances on the European scale. NATO science for peace and security series

Denby, B.; Schaap, M.; Segers, A.; Builtjes, P.; Horálek, J.

2008

Comparison of columnar aerosol properties between the Arctic and sub-Arctic stations Hornsund (77N, 16E) and Alomar (69N, 16E).

Rodríguez, E.; Cachorro, V.; Toledano, C.; De Frutos, A.; Sobolewski, P.; Gausa, M.; Stebel, K.; Holben, B.; Kszyscin, J.

2008

Comparison of CH4 emissions reported in UNFCCC inventories against atmospheric inversions

Tzompa-Sosa, Zitely A.; Deng, Zhu; Ciais, Philippe; Saunois, Marielle; Qiu, Chunjing; Tan, Chang; Sun, Taochun; Ke, Piyu; Tanaka, Katsumasa; Lin, Xin; Thompson, Rona Louise; Tian, Hanqin; Yao, Yuanzhi; Huang, Yuanyuan; Lauerwald, Ronny; Jain, Atul K.; Xu, Xiaoming; Bastos, Ana; Sitch, Stephen; Palmer, Paul I.; Lauvaux, Thomas; d'Aspremont, Alexandre; Giron, Clément; Benoit, Antoine; Poulter, Benjamin; Chang, Jinfeng; Petrescu, Ana Maria Roxana; Davis, Steven J.; Liu, Zhu; Grassi, Giacomo; Albergel, Clement; Chevallier, Frederic

2021

Comparison of Atmospheric Microplastic in remote and urban locations in Norway; occurrence, composition and sources

Herzke, Dorte; Schmidt, Natascha; Schulze, Dorothea; Eckhardt, Sabine; Evangeliou, Nikolaos

2025

Comparison of Atmospheric Microplastic in remote and urban locations in Norway; occurence, composition and sources

Herzke, Dorte; Schmidt, Natascha; Schulze, Dorothea; Eckhardt, Sabine; Evangeliou, Nikolaos

2024

Comparison of anthropogenic and natural emissions of mercury. NILU F

Pacyna, J.M.; Pacyna, E.G.; Banel, A.; Sundseth, K.

2013

Comparison of air quality and public perception data collected within Citizens' Observatories tools for Citi-sense project studies in Belgrade and Oslo.

Jovaševic-Stojanovic, M.; Castell, N.; Topalovic, D.; Davidovic, M.; Schneider, P.; Lazovic, I.; Liu, H.-Y.; Bartonova, A.

2016

Comparison of a new emission inventory for the Nordic countries and global inventories

Paunu, V.-V.; Karvosenoja, N.; Segersson, D.; Lopez-Aparicio, Susana; Nielsen, O. K.; Plejdrup, M. S.; Vo, Dam Thanh; Thorsteinsson, T.; Johansson, L.; Kupiainen, K.; van der Gon, H. Denier; Brandt, J.; Geels, C.

2018

Comparison between the Arctic and Sub-Arctic (77ºN, 16ºE) and ALOMAR (69ºN, 16ºE). NILU PP

Rodriguez, E.; Cachorro, V.; Toledano, C.; De Frutos, A.; Sobolewski, P.; Stebel, K.; Holben, B.; Kszyscin, J.

2008

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