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Fant 9758 publikasjoner. Viser side 212 av 391:

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The ArcRisk mercury (Hg) case study.

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

2014

Part 2: Trends in PM, chemical composition and atmospheric deposition. NILU F

Aas, W.; Schultz, M.; Fagerli, H.; Myhre, C.L.; Tsyro, S.; Tørseth, K.

2014

Support to Aviation Control Service (SACS): an online service for near-real-time satellite monitoring of volcanic plumes.

Brenot, H.; Theys, N.; Clarisse, L.; van Geffen, J.; van Gent, J.; Van Roozendael, M.; van der A, R.; Hurtmans, D.; Coheur, P.-F.; Clerbaux, C.; Valks, P.; Hedelt, P.; Prata, F.; Rasson, O.; Sievers, K.; Zehner, C.

2014

Skogens helsetilstand i Norge. Resultater fra skogskadeovervåkingen i 2013. Rapport fra Skog og landskap, 13/14

Timmermann, V.; Andreassen K.; Clarke N. Nordbakken J.F.; Røsberg I.; Solheim H.; Aas W.

2014

Modelled concentrations of criteria air pollutants in Dhaka and Chittagong, PM10, PM2,5, NOx, and SOx for 2013 and 2020. NILU OR

Randall, S.; Sivertsen, B.; Ahammad, Sk. S.; Cruz, N.D.

Air pollution concentrations were estimated the dispersion models as well as the emissions inventories compiled in AirQUIS for Dhaka and Chittagong. Meteorological data were generated from TAPM. Concentration plots for PM10, PM2.5 and SO2 and NO2 were presented for both cities. A scenario for 2020 was developed based on a combination of projected mitigation measures and sector growth based on GDP and population growth rates. In addition, health impacts were assessed based on methodologies from previous studies performed in Asia.
Results show that in general the PM2.5 and PM10 concentration distributions are closely linked to the emissions from brick kilns in the Dhaka area, while in Chittagong the impacts are more spread between the urban sources, brick, and industry and traffic sources. Results also show that PM10 and PM2.5 concentrations exceeds annual limit values, and that the dry season is most critical when it comes to high concentrations of PM10 and PM2.5.

2014

Trends in inland water surface temperatures from satellite observations. NILU F

Hook, S.J.; Schneider, P.; Hulley, G.C.

2014

Pollutants in an urban terrestrial environment. NILU F

Herzke, D.; Nygård, T.

2014

Elevated stratopause events and downward transport of nitrogen oxides. NILU F

Orsolini, Y.; Limpasuvan, V.; Kinnison, D.

2014

Analysis of variability in atmospheric methane in the Arctic.

Thompson, R.; Stohl, A.; Myhre, C.L.; Fisher, R.; Lowry, D.; Nisbet, E.; Aalto, T.; Dlugokencky, E.; Crotwell, A.

2014

Can further mitigation of ammonia emissions reduce exceedances of particulate matter air quality standards?

Bessagnet, B.; Beauchamp, M.; Guerreiro, C.; de Leeuw, F.; Tsyro, S.; Colette, A.; Meleux, F.; Rouïl, L.; Ruyssenaars, P.; Sauter, F.; Velders, G.J.M.; Foltescu, V.L.; van Aardenne, J.

2014

Influence of traffic volume reductions on ambient air quality in Dhaka, Bangladesh. NILU PP

Randall, S.; Sivertsen, B.; Uddin, Md. N.; Rana, Md. M.

2014

Estimates of European emissions of methyl chloroform using a Bayesian inversion method.

Maione, M.; Graziosi, F.; Arduini, J.; Furlani, F.; Giostra, U.; Blake, D. R.; Bonasoni, P.; Fang, X.; Montzka, S. A.; O'Doherty, S. J.; Reimann, S.; Stohl, A.; Vollmer, M. K.

2014

Arctic contaminant occurrence and effects in a changing climate - a synthesis of the ArcRisk project results.

Munthe, J.; Brorström-Lunden, E.; Cousins, I.; Halsall, C.; Rautio, A.; Wilson, S.; Pacyna, J.; Pawlak, J.

2014

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