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Fant 9855 publikasjoner. Viser side 214 av 395:

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Air quality status and trends in Europe.

Guerreiro, C.B.B.; Foltescu, V.; de Leeuw, F.

2014

Bhas 42 cell transformation assay for genotoxic and non-genotoxic carcinogens. Methods in Pharmacology and Toxicology

Sasaki, K.; Huk, A.; El Yamani, N.; Tanaka, N.; Dusinska, M.

2014

Aerosol extinction profiles with the EMEP model: First evaluation through Earlinet profiles. NILU F

Tsyro, S.; Schulz, M.; Mona, L.; Papagiannopoulos, N.; Aas, W.

2014

Corrigendum to "Global and regional emission estimates for HCFC-22", Atmos. Chem. Phys., 12, 10033-10050, 2012.

Saikawa, E.; Rigby, M.; Prinn, R. G.; Montzka, S. A.; Miller, B. R.; Kuijpers, L. J. M.; Fraser, P. J. B.; Vollmer, M. K.; Saito, T.; Yokouchi, Y.; Harth, C. M.; Mühle, J.; Weiss, R. F.; Salameh, P. K.; Kim, J.; Li, S.; Park, S.; Kim, K.-R.; Young, D.; O'Doherty, S.; Simmonds, P. G.; McCulloch, A.; Krummel, P. B.; Steele, L. P.; Lunder, C.; Hermansen, O.; Maione, M.; Arduini, J.; Yao, B.; Zhou, L. X.; Wang, H. J.; Elkins, J. W.; Hall, B.

2014

Activity segment 4. BAPMAN project deliverable D4.2, D4.3 and D4.4. NILU OR

Sundseth, K.; Randall, S.; Sivertsen, B.; Khan, S.R.; Uddin, N.

Bangladesh Air Pollution Management (BAPMAN) er et kapasitetsbyggingsprosjekt finansiert av NORAD hvor NILU bidrar med nødvendige verktøy og kompetansebygging til Clean Air and Sustainable Environment (CASE) programmet ved Miljøverndepartementet (DoE) i Bangladesh. Denne rapporten presenterer en oversikt over mulige helseeffekter fra luftforurensning (PM10) i Dhaka så vel som fremtidige strategier og mulige strategier for å redusere disse helseeffektene.

2014

GMOS Global Mercury Observation System. D2.3 - Report on future emission estimates along the SQ, EXEC, and MFTR scenarios for total mercury and its chemical forms. NILU OR

Sundseth, K.; Pacyna, J.M.; Banel, A.; Pacyna, E.G.; Gustavsson, T.; Kindbom, K.; Munthe, J.

This report is the final version of GMOS Deliverable D 2.3 Report on future emission estimates along the SQ, EXEC, and MFTR scenarios for total mercury and its chemical forms. It presents future global anthropogenic mercury emissions for different scenarios of energy and emission control policy for the reference year 2035.

2014

EMEP data quality as assessed by laboratory intercomparisons. NILU F

Tørseth, K.; Aas, W.; Uggerud, H.T.; Hjellbrekke, A.-G.; Bohlin-Nizzetto, P.; Pfaffhuber, K.A.

2014

An overview of ecological status, vulnerability and future perspectives of European large shallow, semi-enclosed coastal systems, lagoons and transitional waters.

Newton, A.; Icely, J.; Cristina, S.; Brito, A.; Cardoso, A.C.; Colijn, F.; Riva, S.D.; Gertz, F.; Hansen, J.; Holmer, M.; Ivanova, K.; Leppäkoski, E.; Mocenni, C.; Mudge, S.; Murray, N.; Pejrup, M.; Razinkovas, A.; Reizopoulou, S.; Pérez-Ruzafa, A.; Schernewski, G.; Schubert, H.; Seeram, L.; Solidoro, C.; Viaroli, P.; Zaldívar, J.-M.

2014

Dynamics in the methane hydrate system of the Arctic Ocean.

Mienert, J.; Andreassen, K.; Knies, J.; Carroll, J.; Bünz, S.; Ferre, B.; Rasmussen, T.; Panieri, G.; Myhre, C.L.

2014

Persistent organic pollutants in males in the Tromsø study 1979-2007.

Nøst, T.H.; Berg, V.; Vestergren, R.; Nieboer, E.; Odland, J.; Sandanger, T.M.

2014

Future changes in elevated stratopause events.

Scheffler, J.; Langematz, U.; Orsolini, Y.J.; Ayarzagüena, B.

2014

Total ozone loss during the 2013/14 Arctic winter and comparison to previous years.

Goutail, F.; Lefèvre, F.; Pommereau, J.-P.; Pazmino, A.; Chipperfield, M.; Feng, W.; Van Roozendael, M.; Eriksen, P.; Stebel, K.; Dorokhov, V.; Kivi, R.; Zhao, X.; Strong, K.

2014

Part 1: Trends in ozone. NILU F

Simpson, D.; Solberg, S.; Fagerli, H.

2014

Investigation of outdoor textiles with respect to determine the content of ionic perfluorinated substances (PFASs). Evaluation of results. NILU OR

Hanssen, L.; Herzke, D.

NILU has on behalf of the Norwegian Environment Agency determined the concentration of ionic perfluorinated substances (PFASs), including PFOA, in outdoor clothing. Of the investigated 12 items, no PFAS could be detected at all in only 2 of them (sample 8 and 12). Four samples contained PFOA exceeding the limit of 1 µg/m2. The quality assurance where three replicates of one sample were extracted had a relative standard deviation (RSD) less than 10% for all detected substances except one (PFTrDA). Other quality measures such as recovery calculations and blanks shows that the method used for extraction is suitable for these types of matrices and substances. PFOS was not present in the items investigated, indicating that the textile industry manages to effectively avoid PFOS in their production processes.

2014

New Directions: The future of European urban air quality monitoring.

Kuhlbusch, T.A.J.; Quincey, P.; Fuller, G.W.; Kelly, F.; Mudway, I.; Viana, M.; Querol, X.; Alastuey, A.; Katsouyanni, K.; Weijers, E.; Borowiak, A.; Gehrig, R.; Hueglin, C.; Bruckmann, P.; Favez, O.; Sciare, J.; Hoffmann, B.; Yttri, K.E.; Tørseth, K.; Sager, U.; Asbach, C.; Quass, U.

2014

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