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Found 9759 publications. Showing page 158 of 391:

Publication  
Year  
Category

Methane emissions from the Arctic Ocean.

Myhre, C.L.; Mienert, J.; Myhre, G.; Stohl, A.

2015

Methane from the Arctic Ocean around Svalbard: synthesis of model and observation data.

Platt, S.M.; Myhre, C.L.; Ferré, B.; Silyakova, A.; Hermansen,O.; Pisso, I.; Schmidbauer, N.; Jansson, P.; Greinert, J.; Stohl, A.; Fjaeraa, A.M.; Vadakkepuliyambatta, S.; Fisher, R.; Nisbet, E.; Lowry, D.; Myhre, G.; Mienert, J.

2015

CH4 and the atmosphere. MOCA-CAGE activities in 2015, and plans for 2016.

Myhre, C.L.; Platt, S.M.; Hermansen, O.; Schmidbauer, N.; Stohl, A.; Pisso, I.; Eckhardt, S.; Fjæraa, A.M.; Hodnebrog, Ø.; Dalsøren, S.; Skeie, R.B.; Myhre, G.; Silyakova, A.; Vadakkepuliyambatta, S.; Jansson, P.; Ferré, B.; Mienert, J.

2015

On the use of small and cheaper sensors and devices for indicative citizen-based monitoring of respirable particulate matter.

Jovaševic-Stojanovic, M.; Bartonova, A.; Topalovic, D.; Lazovic, I.; Pokric, B.; Ristovski, Z.

2015

Measurement data July 2013 - June 2014. Environmental monitoring of emissions to air from Snøhvit-Hammerfest LNG. NILU OR

Hak, C.

Statoil assigned NILU - Norwegian Institute for Air Research to carry out a monitoring programme on "Environmental monitoring of emissions to air from the Snøhvit LNG facility". The project started on 1 February 2006. This report summarises the results of the measurement programme from 1 July 2012 to 30 June 2013. It involves the measurement of meteorological parameters on Melkøya and Fuglenesodden. Air quality parameters were measured at Fuglenesodden. Precipitation samples taken at Forsøl and Kargeneset were analysed for PAHs, inorganic ions, heavy metals and mercury. The current air quality standards were met for all compounds

2015

Impact of storage conditions and storage time on silver nanoparticles' physicochemical properties and implications for their biological effects.

Izak-Nau, E.; Huk, A.; Reidy, B.; Uggerud, H.; Vadset, M.; Eiden, S.; Voetz, M.; Himly, M.; Duschl, A.; Dusinska, M.; Lynch, I.

2015

Measurement of SO2 and BrO at Lastarria, Lascar, and Salar de Atacama.

Dinger, F.; Osorio, M.; Gliß J.; Lübcke, P.; Bobrowski, N.; Platt, U.; Frins, E.; Wagner, T.

2015

On the coupling between polar and tropical regions during springtime: variability of tropical intrusion and Frozen In Anticyclones. Poster P-1108-04

Huret, N.; Thiéblemont, R.; Hauchecorne, A.; Orsolini, Y.J.; Matthes. K.

Abstract : Recent observational and modeling transport studies of Arctic stratospheric final warming have shown that tropical/subtropical air masses can be transported to high latitudes and remain confined within a long-lived ¿frozen- in¿ anticyclone (FriaC), embedded in the summer easterlies for several months. We first present a climatology of these sporadic events over the period 1960-2011 using era-40 and era interim reanalyses. this study highlights stratospheric favorable preconditioning for FrIACs occurrence, that is: i) early and abrupt final warming, ii) no stratospheric major warming during the previous winter, and iii) east phase of the Quasi-Biennial Oscillation. We will present in detail the FriaC in spring 2011, which was the largest ever recorded. Our climatology further suggests that the frequency of occurrence of FriaCs has increased over the last decade (among the nine cases detected over the period 1960- 2011, five occurred between 2002 and 2011). A chemistry climate model is then used for the first time to investigate FriaCs characteristics and variability. simulations were performed with the nCar¿s Community earth system Model (CesM, version 1.0.2), a coupled model system including the Whole Atmosphere Community Climate Model (WACCM). FrIACs characteristics (i.e. spatial extent and duration), are overall consistent by comparing with FriaCs detected era-40 meteorological reanalyses. Dynamical analysis reveals that FriaCs are associated with an abrupt and early winter-to-summer stratospheric circulation transition, characterized by an amplification of planetary wave activity. Furthermore, our model results confirm that FrIACs occur preferentially under the easterly phase of the QBO and in absence of MSW during the preceding

2015

A regional air quality forecasting system over Europe: the MACC-II daily ensemble production.

Marécal, V.; Peuch, V.-H.; Andersson, C.; Andersson, S.; Arteta, J.; Beekmann, M.; Benedictow, A.; Bergström, R.; Bessagnet, B.; Cansado, A.; Chéroux, F.; Colette, A.; Coman, A.; Curier, R. L.; Denier van der Gon, H. A. C.; Drouin, A.; Elbern, H.; Emili, E.; Engelen, R. J.; Eskes, H. J.; Foret, G.; Friese, E.; Gauss, M.; Giannaros, C.; Guth, J.; Joly, M.; Jaumouillé, E.; Josse, B.; Kadygrov, N.; Kaiser, J. W.; Krajsek, K.; Kuenen, J.; Kumar, U.; Liora, N.; Lopez, E.; Malherbe, L.; Martinez, I.; Melas, D.; Meleux, F.; Menut, L.; Moinat, P.; Morales, T.; Parmentier, J.; Piacentini, A.; Plu, M.; Poupkou, A.; Queguiner, S.; Robertson, L.; Rouïl, L.; Schaap, M.; Segers, A.; Sofiev, M.; Tarrasón, L.; Thomas, M.; Timmermans, R.; Valdebenito, Á.; van Velthoven, P.; van Versendaal, R.; Vira, J.; Ung, A.

2015

ACTRIS ACSM intercomparison - Part 1: Reproducibility of concentration and fragment results from 13 individual Quadrupole Aerosol Chemical Speciation Monitors (Q-ACSM) and consistency with co-located instruments.

Crenn, V.; Sciare, J.; Croteau, P. L.; Verlhac, S.; Fröhlich, R.; Belis, C. A.; Aas, W.; Äijälä, M.; Alastuey, A.; Artiñano, B.; Baisnée, D.; Bonnaire, N.; Bressi, M.; Canagaratna, M.; Canonaco, F.; Carbone, C.; Cavalli, F.; Coz, E.; Cubison, M. J.; Esser-Gietl, J. K.; Green, D. C.; Gros, V.; Heikkinen, L.; Herrmann, H.; Lunder, C.; Minguillón, M. C.; Mocnik, G.; O'Dowd, C. D.; Ovadnevaite, J.; Petit, J.-E.; Petralia, E.; Poulain, L.; Priestman, M.; Riffault, V.; Ripoll, A.; Sarda-Estève, R.; Slowik, J. G.; Setyan, A.; Wiedensohler, A.; Baltensperger, U.; Prévôt, A. S. H.; Jayne, J. T.; Favez, O.

2015

NILU - viktig for miljøet.

Solbakken, C.F.

2015

Estimation of daytime NO3 radical levels in the UK urban atmosphere using the steady state approximation method.

Khan, M.A.H.; Morris, W.C.; Watson, L.A.; Galloway, M.; Hamer, P.D.; Shallcross, B.M.A.; Percival, C.J.; Shallcross, D.E.

2015

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