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PAH measurements in air and moss around selected industrial sites in Norway 2015. NILU report

Halse, A. K.; Uggerud, H.; Schlabach, M.; Steinnes, E.

On request from the Norwegian Environment Agency a pilot study of atmospheric deposition of PAH around industrial enterprises in Norway has been carried out. The participation was voluntary and 10 industries located at 10 different sites financed their own participation. The survey is based on analysis of samples of naturally growing moss collected around the enterprises during the summer of 2015. In addition, passive air samplers for collection of volatile PAH were placed around 6 of the participating enterprises. Generally, the PAH level determined in moss collected around industrial sites were considerably higher than the PAH level found in moss collected at background sites. The levels of PAHs found in the air samples was low and often at the same level as found at the closest background site, for all out of two sites, i.e. Sunndal and Kristiansand. There is no clear indication that the industry is the only source to the levels of PAHs in moss. Hence, results from this pilot study, illustrates that moss and air samples together provide a more comprehensive information regarding the spatial distribution of PAH around the industrial sites.

2017

PAH measurements at Lista. January 2020 – December 2020.

Hak, Claudia

On behalf of Aluminiumindustriens Miljøsekretariat (AMS) and Alcoa Lista, NILU – Norwegian institute for air research has
conducted a sampling campaign in the surroundings of the Alcoa Lista aluminium smelter in order to update the knowledge on PAH-concentrations around the smelter today. Samples were taken in the period January – December 2020 and
analysed for particle bound PAHs. As a consequence of reduced emissions compared to earlier measurements, the ambient
concentrations of benzo(a)pyrene (BaP) were reduced. BaP had an annual average concentration below the target value at
both sampling sites. At Huseby, the lower assessment threshold was exceeded. PAH-levels in the area were similar to those observed in Norwegian cities.

NILU

2021

PAH in moss from Norway: Spatial distribution and comparison with metal data. NILU F

Uggerud, H.T.; Steinnes, E.; Schlabach, M.; Berg, T.

2013

P-4 Formation of ultrafine particles in a classroom under different ventilation conditions

Hak, Claudia; Vogt, Matthias; Dauge, Franck Rene; Fjellheim, Øystein; Holøs, Sverre Bjørn; Yang, Aileen; Mikoviny, Tomas; Wisthaler, Armin

2019

Ozonlaget - den internasjonale ozondagen

Hansen, Georg Heinrich (intervjuobjekt)

2019

Ozone.

Solberg, S.; Simpson, D.; Jonson, J.E.; Hjellbrekke, A.-G.; Derwent, R.

2004

Ozone variability and halogen oxidation within the Arctic and sub-Arctic springtime boundary layer.

Gilman, J.B.; Burkhart, J.F.; Lerner, B.M.; Williams, E.J.; Kuster, W.C.; Goldan, P.D.; Murphy, P.C.; Warneke, C.; Fowler, C.; Montzka, S.A.; Miller, B.R.; Miller, L.; Oltmans, S.J.; Ryerson, T.B.; Cooper, O.R.; Stohl, A.,, de Gouw, J.A.

2010

Ozone trends at northern mid- and high latitudes - a European perspective.

Harris, N.R.P.; Kyrö, E.; Staehelin, J.; Brunner, D.; Andersen, S.-B.; Godin-Beekmann, S.; Dhomse, S.; Hadjinicolaou, P.; Hansen, G.; Isaksen, I.; Jrrar, A.; Karpetchko, A.; Kivi, R.; Knudsen, B.; Krizan, P.; Lastovicka, J.; Maeder, J.; Orsolini, Y.; Pyle, J.A.; Rex, M.; Vanicek, K.; Weber, M.; Wohltmann, I.; Zanis, P.; Zerefos, C.

2008

Ozone trends and impacts on health and crop yields.

Dentener, F.; Simpson, D.; Wild, O.; Klimont, Z.; Colette, A.; Tarasova, O.; Solberg, S.; Harmens, H.; Fagerli, H.; Mills, G.; Grennfelt, P.; Almodovar, P.; Scavo, K.; Kerr, J.; Pritula, D.; Reiss, I.

2016

Ozone soundings at the Nadir datacentre. NILU F

Vik, A.F.; Hansen, G.H.; Bojkov, B.; Westby, A.

2003

Ozone retrievals from MAGEAQ GEO TIR+VIS for air quality.

Quesada-Ruiz, S.; Attié, J.-L.; Lahoz, W.A.; Abida, R.; El-Amraoui, L.; Ricaud, P.; Zbinden, R.; Spurr, R.; da Silva, A.M.

2016

Ozone profiles in the high-latitude stratosphere and lower mesosphere measured by the Improved Limb Atmospheric Spectrometer (ILAS)-II: Comparison with other satellite sensors and ozonesondes.

Sugita, T.; Nakajima, H.; Yokota, T.; Kanzawa, H.; Gernandt, H.; Herber, A.; von der Gathen, P.; König-Langlo, G.; Sato, K.; Dorokhov, V.; Yushkov, V.A.; Murayama, Y.; Yamamori, M.; Godin-Beekmann, S.; Goutail, F.; Roscoe, H.K.; Deshler, T.; Yela, M.; Taalas, P.; Kyrö, E.; Oltmans, S.J.; Johnson, B.J.; Allaart, M.; Litynska, Z.; Klekociuk, A.; Andersen, S.B.; Braathen, G.O.; et al.

2006

Ozone minihole observation over the Balkan Peninsula in March 2003. Poster presentation. NILU PP

Werner, R.; Valev, D.; Atanasov, A.; Kostadinov, I.; Petkov, B.; Giovanelli, G.; Stebel, K.; Petrotoli, A.; Palazzi, E.; Gausa, M.

2006

Ozone mini-hole observation over the Balkan Peninsula in March 2005.

Werner, R.; Valev, D.; Atanassov, At.; Kostadinov, I.; Petkov, B.; Giovanelli, G.; Stebel, K.; Petritoli, A.; Palazzi, E.; Gausa, M.; Markova, T.

2009

Ozone measurements 2022

Hjellbrekke, Anne-Gunn; Solberg, Sverre

This report gives an overview of annual statistics and results from the monitoring programme of ozone in EMEP 2022.

NILU

2024

Ozone measurements 2021

Hjellbrekke, Anne-Gunn; Solberg, Sverre

NILU

2023

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