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Monitoring of environmental contaminants in freshwater food webs (MILFERSK), 2025

Økelsrud, Asle; Grung, Merete; Bæk, Kine; Rundberget, Thomas; Misaghian, Dorna; Enge, Ellen Katrin; Hansen, Linda; Johansen, Ingar

This report presents data from the fifth year of a five-year period for the MILFERSK program. In 2025, the monitoring program focused on the sampling and analysis of the pelagic food chain in Lake Mjøsa, encompassing the following sample types: zooplankton mainly epipelagic species, Mysis, vendace, E. smelt, and brown trout. Additionally, brown trout from the reference lake, Femunden, were collected. The concentrations of 228 individual compounds/isomers were determined, with frequent detections of specific per- and polyfluoroalkyl substances (PFAS), polybrominated diphenyl ethers (PBDEs), mercury (Hg), and siloxanes exhibiting biomagnifying properties throughout the food chain. Time series of these
contaminant groups show declining concentrations in brown trout in Lake Mjøsa. We also observe lower concentrations in the pelagic biota for phthalates and UVcompounds, compared to in 2023 when last pelagic biota was included in the program. Out of the 14 car tyre compounds included in the analysis of pelagic biota in 2025, only DPG and 6PPD Q were detected at low levels in zooplankton and Mysis.

Norsk institutt for vannforskning (NIVA)

2026

Monitoring of the atmospheric ozone layer and natural ultraviolet radiation. Annual report 2025

Svendby, Tove Marit; Schulze, Dorothea; Bäcklund, Are; Vorobeva, Ekaterina; Johnsen, Bjørn

This report summarizes the results from the Norwegian monitoring programme on stratospheric ozone and UV radiation measurements. The ozone layer has been measured at three locations since 1979: In Oslo/Kjeller, Tromsø/Andøya and Ny-Ålesund. The UV measurements started in 1995. The results show that there was a significant decrease in stratospheric ozone above Norway between 1979 and 1997. After that, the ozone layer stabilized at a level ~2% below pre-1980 level. The year 2025 was characterized by low total ozone values most of the year, especially at Kjeller and Andøya, which contributed to high annual UV doses at these stations

NILU

2026

Data Report 2024. Particulate matter, carbonaceous and inorganic compounds

Hjellbrekke, Anne-Gunn

This report presents an overview of annual statistical summaries and methods for sampling and analysis of particulate matter, carbonaceous and inorganic compounds measured under the EMEP monitoring programme in 2024.

NILU

2026

Transboundary pollution by heavy metals and POPs

Travnikov, Oleg; Aravelo, Isabel Garcia; Gačnik, Jan; Gholizadeh, Reza; Kleimenov, Mikhail; Koncz, Viktória; Poupa, Stephan; Wankmüller, Robert; Schindlbacher, Sabine; Aas, Wenche; Eckhardt, Sabine; Halvorsen, Helene Lunder; Pfaffhuber, Katrine Aspmo

Meteorological Synthesizing Centre – East (MSC-E)

2026

VOC measurements 2024

Hamer, Paul David; Solberg, Sverre; Claude, Anja; Reimann, Stefan

This report documents the EMEP VOC monitoring carried out in 2024. The levels of the measured species in 2024 are presented as well as the 2024-status and history of the VOC programme. The geographical pattern of the species in Europe is discussed as well as the long-term trend during the last 20 years.

NILU

2026

The dietary footprints and transition priorities of over 12 000 urban centers

Cai, Hongyi; Jain, Shruti; Moran, Daniel; Taherzadeh, Oliver

Urban consumption plays a central role in driving global carbon emissions and is associated with a wide range of environmental pressures, including deforestation, water use, and biodiversity loss. As cities and networks of cities work to define and achieve quantitative sustainability goals, the lack of insight into their unique food footprints, shaped by each city’s specific dietary patterns and demographic composition, remains a significant obstacle. Here we combine demographic, group-specific diet, and supply-chain environmental footprint data to estimate the dietary footprints in 12 228 urban centers across 159 countries. We show that diet-related greenhouse gas emissions (GHGE) are highly concentrated in a small number of cities: The 200 urban centers with the largest footprints account for 39.8% of global urban population and 45.6% of total global urban dietary emissions. Overall, adoption of the EAT-Lancet 2.0 diet across all studied centers delivers a modest net reduction in total footprints (≈5%–16%). However, this aggregate outcome masks substantial variability: high-income centers achieve considerable reductions through lower meat and dairy consumption, while lower-income centers presently consuming below EAT-Lancet recommended levels experience footprint increases, partially offsetting global gains. Within transnational city networks (C40 Cities, Eurocities, and Milan Urban Food Policy Pact members), where member centers are predominantly high-income, EAT-Lancet 2.0 adoption delivers substantially larger reductions of 22%–50% in GHGE, underscoring the policy relevance of targeted urban-level dietary interventions. Complementary supply-side interventions, including decarbonization of agricultural production, processing, and distribution, offer additional reductions, indicating that dietary and supply-side levers must be deployed jointly. Our results highlight the need for context-specific urban dietary strategies. The resulting database, MATILDA-City, provides a globally harmonized evidence base to benchmark, rank, and monitor urban-level dietary footprints, supporting municipalities to coordinate actions toward sustainable food systems.

2026

A machine learning method for estimating atmospheric trace gas concentration baselines

Gerrand, Kirstin; Fillola, Elena; Manning, Alistair J.; Arduini, Jgor; Krummel, Paul B.; Lunder, Chris Rene; Mühle, Jens; O'Doherty, Simon; Park, Sunyoung; Prinn, Ronald G.; Reimann, Stefan; Young, Dickon; Rigby, Matthew

Estimates of trace gas baseline mole fractions in high-frequency atmospheric measurement records are crucial for analysing long-term changes in atmospheric composition. Baseline mole fractions are those that would be observed far from emission sources (and hence are representative of background conditions). Previous methods for inferring baseline mole fractions have used statistical or meteorological approaches, or, if available, co-measured tracer species thought only to be emitted from non-baseline wind sectors. Combinations of these techniques have also been employed in some applications. Statistical methods typically fit a baseline to the observations themselves, while meteorological methods use atmospheric models of varying complexity to categorise air mass origins. In this paper, we present a novel machine learning method for estimating trace gas baseline mole fractions, which benefits from the physical basis of model-based filtering without the need for running an expensive simulator. Our approach offers the accessibility and computational cost-effectiveness of statistical models, without the associated smoothing or difficulty in identifying rapid baseline variations. By training on historical Lagrangian particle dispersion model outputs, our model learns to predict baseline mole fractions directly from meteorological fields. This advancement opens new avenues for low-latency trace gas time series data analysis, reconstruction of historical baseline trends, and improved utilisation of tracer measurement air mass classification methods.

2026

On the reliability of seasonal snow forecasts

Vorobeva, Ekaterina; Orsolini, Yvan; Rosnay, Patricia de; Day, Jonathan; Senan, Retish; Decremer, Damien; Vitart, Frederic

Reliable information on seasonal snow conditions is important for long-range weather forecasting and climate modeling. The reliability of winter-mean hindcasts of snow water equivalent (SWE) produced by the ECMWF for the period 1993–2022 within the CopERnIcus climate change Service Evolution (CERISE) project is evaluated in this study. In probabilistic forecasting, reliability is defined as the consistency between forecast probabilities and observed frequencies for a binary event. Here, reliability is assessed using two independent SWE datasets (ERA5-Land and ESA Snow-CCI v4) across eight land regions in the Northern Hemisphere non-mountainous regions. The reliability assessment is performed for two tercile-based binary events representing low- and high snow accumulation winters. Reliability is quantified using a weighted linear regression applied to reliability diagrams and is grouped into five categories from perfect to dangerous. The results show that the ECMWF seasonal snow hindcasts consistently yield marginally useful to perfect reliability categories for both low- and high-snow conditions independently to the chosen benchmark. The assessment shows sensitivity to the choice of verification dataset, with ERA5-Land yielding higher reliability categories than ESA Snow-CCI, typically 1 to 2 categories higher. It is found that differences in hindcasts reliability between regions and between verification datasets may be linked to snow variability, model representation, and observational uncertainty.

2026

EarthCARE MSI/ATLID aerosol products, development and validation: a step forward

Sogacheva, Larisa; Stebel, Kerstin; Docter, Nicole; Madenach, Nils

2026

Fra renere luft til grønnere vekst: Satellittbasert overvåking av NO₂ i byer og frakobling fra fossile brensler

Hassani, Amirhossein; Moran, Daniel; Kummu, Matti; Walker, Sam-Erik; Stebel, Kerstin; Sayyar, Sina Masoumzadeh; Schneider, Philipp

2026

Environmental Contaminants in an Urban Fjord, 2025

Ruus, Anders; Grung, Merete; Bæk, Kine; Rundberget, Thomas; Beylich, Bjørnar; Hanssen, Linda; Enge, Ellen Katrin; Helberg, Morten

This report presents data from the last year of a 5-year period of the Urban Fjord programme. The programme started in 2013 and has since been altered/advanced. In 2025 the programme covers sampling and analyses of sediment, polychaetes, krill, shrimps, blue mussels, herring, cod, eider, and herring gull from the Inner Oslofjord. A total of 230 single compounds/isomers were analysed, and frequent detection was found of specific PFAS compounds (e.g. PFOS) in most matrices, certain QACs in several matrices (ATAC-C22 in all
matrices), specific benzothiazoles in eider blood, LCCPs in certain matrices, certain siloxanes in most matrices, metals in all matrices and PCBs in all matrices. Biomagnification was observed for 24 PCB congeners, LCCPs and D4 (siloxane; lipid wt. basis). Furthermore, biomagnification was observed for PFOSA, ATAC-C20 and ATAC-C22, as well as for the metals As and Hg (wet wt. basis).

Norsk institutt for vannforskning (NIVA)

2026

Nanoplastic detection and quantification in high-altitude glacial snow samples from Italy, Switzerland and France

Latz, Milena; Gill, Alasdair J.; Evangeliou, Nikolaos; Eckhardt, Sabine; Milner, Robin; Reemtsma, Thorsten; Materić, Dušan

Plastic pollution is an ever-growing concern around the globe, with current research portraying the presence of contaminants even in previously pristine regions. Especially small particles, micro- and nanoplastics, can be dispersed over long stretches by atmospheric transport, reaching even the most remote areas of the planet. This study aims to portray current levels of nanoplastic contamination (< 1 μm) by analyzing snow samples from high-altitude glaciers in the European Alps (2300–3800 m) via TD-PTR-MS. We were able to detect six common plastic pollutants, with PE and PP contributing over 60% of the total mass concentration measured across all sites. On average, nanoplastic concentrations of 85 ng mL − 1 (range: 3.6 ± 12 ng mL − 1 – 470 ± 76 ng mL − 1 ) were detected at sampled glacier surfaces. Access to these remote regions was enabled through a citizen-science initiative, involving trained mountaineers for sample collection. The results were applied to atmospheric modelling, highlighting possible point sources of contamination. While agriculture and local plastic factories were revealed as potential sources of nanoplastics, spatial and temporal limitations complicated comparison inside the sample cluster.

2026

Framtids-Norge: trygt, bærekraftig og sirkulært

Guerreiro, Cristina; Bohlin-Nizzetto, Pernilla; Solbakken, Christine Forsetlund

2026

Bruk av Copernicus Sentinel-3 NRT FRP-produkter til skogbrannovervåking i GFAS

Kaiser, Johannes; Sollum, Espen; Stebel, Kerstin; Eckhardt, Sabine; Tarrasón, Leonor; Soares, Joana; Cao, Tuan-Vu; Solbakken, Christine Forsetlund; Tomaso, Enza di; Chimot, Julien; Martin, Edouard

2026

Recent increases in solar UV radiation across Europe: a 40-location study to identify trend boundaries

Schmalwieser, Alois W.; Lorenz, Sebastian; Klyshkina, Dariia; Klotz, Barbara; Schwarzmann, Michael; Simic, Stana; Mangold, Alexander; Pezzetti, Natacha; Láska, Kamil; Novotná, Marie; Stráník, Martin; Køster, Brian; Aun, Margit; Lakkala, Kaisa; Auriol, Frederique; Bourrianne, Eric; Filippi, Romain De; Henriot, Nicolas; Minvielle, Fanny; Trentmann, Jörg; Weiskopf, Daniela; Bais, Alkiviadis; Garane, Katerina; Fekete, Dénes; Bellini, Annachiara; Sarra, Alcide Giorgio di; Diémoz, Henri; Fibbi, Luca; Frasca, Francesca; Grifoni, Daniele; Meloni, Daniela; Siani, Anna Maria; Outer, Peter den; Geffen, Jos van; Putten, Edith van; Johnsen, Bjørn; Svendby, Tove Marit; Czerwińska, Agnieszka; Krzyścin, Janusz; Chubarova, Natalia; Malinović-Milićević, Slavica; Nađ, Zoltan; Podrascanin, Zorica; Pribullova, Anna; Pacheco, Juana Arolo; Rodriguez, Ana Díaz; González, Carmen; Vilaplana, José Manuel; Gröbner, Julian; Hülsen, Gregor; Higlett, Michael; Lyachev, Andrey; Rendell, Rebecca; Smedley, Andrew R. D.; Webb, Ann

Abstract Significant trends of ultraviolet radiation (UVR) have been reported at limited European sites due to changing atmospheric conditions, such as cloudiness. Whether these findings are applicable to larger areas or even the entire continent remains unclear. In a unique comparison, we analyzed measurements of erythemally weighted daily ambient radiant exposure from 40 European locations, covering the period from 2013 to 2022. At 26 locations annual means increases statistically significantly with a median of + 1.2%/yr. At 38 sites at least monthly means increases with medians between + 2%/yr and + 4%/yr. Increases were seen in satellite products of UVR, global solar radiation, and sunshine duration, too. Analysis at six stations, with data extending back to the mid-1990s, indicates that the period of statistically significant increases generally began between 2010 and 2013. Comparison of UVR data from 40 stations with a high-resolution global solar radiation trend map reveals complementary patterns, highlighting widespread but not uniform UVR changes across Europe. This combination enables figuring out the regional extent of trends. Thus, ground-based UVR measurements remain essential for quantifying changes, highlighting the need for continued monitoring with sufficiently dense measurement networks. This is also essential for understanding and mitigating the impacts of changing UVR on human health, particularly by assessing its potential for increased UVR-related skin cancer incidence and development of preventive measures. Moreover, detailed regional UVR data is essential for achieving the UN’s Sustainable Development Goals, specifically in human health, sustainable cities, climate action, and environmental conservation.

2026

Requirements and scientific needs for coordinated organic pollutant monitoring in both polar regions

Kallenborn, Roland Peter; Bengtson-Nash, Susan; Rødven, Rolf; Vorkamp, Katrin; Muir, Derek C. G.; Bohlin-Nizzetto, Pernilla

2026

Sustained Observations from Dronning Maud Land: The TONe Infrastructure

Pedersen, Christina Alsvik; Njåstad, Birgit; Aas, Wenche; Darelius, Elin Maria K.; Descamps, Sebastien; Flått, Stig; Hattermann, Tore; Hudson, Stephen; Miloch, Wojciech Jacek; Schweitzer, Johannes; Storvold, Rune; Tronstad, Stein

2026

Chemical Monitoring in Antarctic Seawater using Targeted Mass Spectrometric Analysis

Lerch, Michaela; Wang, Xianyu; Froment, Jean Francois; Bohlin-Nizzetto, Pernilla; Rostkowski, Pawel; Muir, Derek C. G.; Nash, Susan Bengtson

2026

A 16-year record of greenhouse gases and footprint attribution using the FLEXPART model at Trollhaugen Observatory, Antarctica

Walmsley, Thomas; Aas, Wenche; Eckhardt, Sabine; Evangeliou, Nikolaos; Hermansen, Ove; Lunder, Chris Rene; Platt, Stephen Matthew; Schmidbauer, Norbert; Svendby, Tove Marit; Yttri, Karl Espen; Holme, Jonathan Elias

2026

Uncovering Priority Chemical Threats at Antarctic Research Stations by Mass Spectrometric Non-Targeted Analysis and Suspect Screening

Lerch, Michaela; Froment, Jean Francois; Rostkowski, Pawel; Bohlin-Nizzetto, Pernilla; Wang, Xianyu; Muir, Derek C. G.; Nash, Susan Bengtson

2026

The Trollhaugen Observatory: Long-Term, Year-Round Atmospheric Observations in Antarctica

Aas, Wenche; Bäcklund, Are; Duflot, Valentin; Eckhardt, Sabine; Evangeliou, Nikolaos; Halvorsen, Helene Lunder; Fiebig, Markus; Hermansen, Ove; Pfaffhuber, Katrine Aspmo; Platt, Stephen Matthew; Schmidbauer, Norbert; Stebel, Kerstin; Svendby, Tove Marit; Walmsley, Thomas; Yttri, Karl Espen

2026

Atmospheric Data Infrastructure for the Polar Community: Services, Interoperability and the Road to the Next IPY

Jawak, Shridhar Digambar; Myhre, Cathrine Lund; Fiebig, Markus; Fjæraa, Ann Mari; Murberg, Lise Eder; Lin, Yong; Hjellbrekke, Anne-Gunn; Føyen, Maria Leseth; Holme, Jonathan Elias; Låte, Jan Øyvind; Rud, Richard Olav

2026

FAIR atmospheric data services as a foundation for a Polar observing system

Myhre, Cathrine Lund; Fiebig, Markus; Fjæraa, Ann Mari; Føyen, Maria Leseth; Hjellbrekke, Anne-Gunn; Holme, Jonathan Elias; Jawak, Shridhar Digambar; Låte, Jan Øyvind; Lin, Yong; Murberg, Lise Eder; Rud, Richard Olav

2026

The Arctic

Moon, Twila A.; Druckenmiller, Matthew L.; Thoman, Richard L.; Andreassen, Liss Marie; Askjaer, Thomas G.; Ballinger, Thomas J.; Berner, Logan T.; Bernhard, Germar H.; Bhatt, Uma S.; Bigalke, Siiri; Bjerke, Jarle W.; Bliss, Angela; Box, Jason E.; Brettschneider, Brian; Burgess, D.; Butler, Amy H.; Christiansen, Hanne H.; Crawford, Alex; Decharme, Bertrand; Derksen, Chris; Divine, Dmitry V; Elias, Chereque; Epstein, Howard E.; Farrell, Sinead; Fausto, Robert S.; Fettweis, Xavier; Fioletov, Vitali E.; Florentine, Caitlyn; Forbes, Bruce C.; Frost, Gerald V. (JJ); Gerland, Sebastian; Grooß, Jens-Uwe; Hanna, Edward; Hendricks, Stefan; Ialongo, Iolanda; Isaksen, Ketil; Jia, Gensuo; Johnsen, Bjørn; Kaleschke, Lars; Kim, Seong-Joong; Kohler, Jack; Labe, Zachary M.; Lader, Rick; Lakkala, Kaisa; Lara, Mark J.; Lee, Simon H.; Loomis, Bryant D.; Luks, B.; Luojus, Kari; López-Blanco, E.; Macander, Matthew J.; Magnússon, Rúna Í.; Mankoff, Ken D.; Medley, Brooke; Meier, Walter N.; Montesano, Paul M.; Mote, Thomas L.; Gjelten, Herdis Motrøen; Mudryk, Lawrence; Müller, Rolf; Natali, S. M.; Neigh, Christopher S. R.; Nyland, Kelsey E.; Orndahl, K. M.; Overland, James E.; Perovich, Donald K.; Petty, Alek; Phoenix, Gareth K.; Poinar, Kristin; Pálsson, F.; Ricker, Robert; Romanovsky, Vladimir E.; Sass, L.; Schuur, E. A. G.; Serreze, Mark C.; Smith, Benjamin E.; Smith, Sharon L.; Streletskiy, Dmitry A.; Svendby, Tove Marit; Thomson, L.; Thorsteinsson, T.; Tian-Kunze, Xiangshan; Timmermans, Mary-Louise; Tømmervik, Hans; Waigl, Christine F.; Walker, Donald (Skip) A.; Walsh, John E.; Wang, Muyin; Webster, Melinda; Wolken, G.; Wouters, B.; Yang, Dedi

2026

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