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Fant 10469 publikasjoner. Viser side 172 av 419:

Publikasjon  
År  
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High levels of emerging and legacy contaminants in whales from Norway

Andvik, Clare Margaret; Jourdain, Eve Marie; Lyche, Jan Ludvig; Enge, Ellen Katrin; Harju, Mikael; Haug, Tore; Karoliussen, Richard; Borgå, Katrine

2022

High levels of ultraviolet radiation observed by ground-based instruments below the 2011 Arctic ozone hole.

Bernhard, G.; Dahlback, A.; Fioletov, V.; Heikkilä, A.; Johnsen, B.; Koskela, T.; Lakkala, K.; Svendby, T.

2013

High resolution economic modelling for climate risk assessments: An application to coastal storm surges in Norway

Barre, Francis Isidore; Bouman, Evert Alwin; Hertwich, Edgar; Moran, Daniel Dean

2025

High resolution GDP modelling for climate risk assessments with an application to coastal flooding in Norway

Barre, Francis Isidore; Bouman, Evert Alwin; Simpson, Matthew James Ross; Borck, Hilde Sande; Hertwich, Edgar; Moran, Daniel Dean

An important prerequisite for accurately characterizing economic exposure from climate change at the national scale is a spatial inventory of economic activity and value creation. Current options for such inventories are limited, being either spatially precise but economically bounded sector-specific or owner-specific datasets, or gridded gross domestic product (GDP) products with coarse spatial resolution and inadequate sectoral resolution. To address these limitations, we develop a map of national GDP with high spatial and sectoral resolution. We stress this with meter-scale flood hazard maps to characterize GDP at risk from flooding. We further couple this to a macroeconomic input–output analysis to use the new sectoral resolution to estimate the scope of indirect economic exposure to flood at a national scale.

2025

High resolution mass spectrometry-based non-target screening can support regulatory environmental monitoring and chemicals management

Hollender, Juliane; Bavel, Bert van; Dulio, Valeria; Farmen, Eivind; Furtmann, Klaus; Koschorreck, Jan; Kunkel, Uwe; Krauss, Martin; Munthe, John; Schlabach, Martin; Slobodnik, Jaroslav; Stroomberg, Gerard; Ternes, Thomas; Thomaidis, Nikolaos S; Togola, Anne; Tornero, Victoria

Non-target screening (NTS) including suspect screening with high resolution mass spectrometry has already shown its feasibility in detecting and identifying emerging contaminants, which subsequently triggered exposure mitigating measures. NTS has a large potential for tasks such as effective evaluation of regulations for safe marketing of substances and products, prioritization of substances for monitoring programmes and assessment of environmental quality. To achieve this, a further development of NTS methodology is required, including: (i) harmonized protocols and quality requirements, (ii) infrastructures for efficient data management, data evaluation and data sharing and (iii) sufficient resources and appropriately trained personnel in the research and regulatory communities in Europe. Recommendations for achieving these three requirements are outlined in the following discussion paper. In particular, in order to facilitate compound identification it is recommended that the relevant information for interpretation of mass spectra, as well as about the compounds usage and production tonnages, should be made accessible to the scientific community (via open-access databases). For many purposes, NTS should be implemented in combination with effect-based methods to focus on toxic chemicals.

2019

High spatial and spectral thermal infrared remote sensing at the Jet Propulsion Laboratory. NILU F

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

2012

High throughput comet assay to study genotoxicity of nanomaterials.

El Yamani, N.; Rundén-Pran, E.; Fjellsbø, L.; Collins, A.R.; Dusinska, M.

2015

High throughput comet assay: applications in genotoxicity testing of nanomaterials.

El Yamani, N.; Collins, A. R.; Rundén-Pran, E.; Fjellsbø, L.; Shaposhnikov, S.; Dusinska, M.

2016

High throughput genotoxicity testing of nanomaterials.

Collins, A.; Dusinska, M.; Shaposhnikov, S.; El Yamani, N.

2017

High throughput genotoxicity testing of nanomaterials.

Collins, A.; El Yamani, N.; Shaposhnikov, S.; Rundén-Pran, E.; Dusinska, M.

2016

High throughput toxicity screening and intracellular detection of nanomaterials.

Collins, A. R.; Annangi, B.; Rubio, L.; Marcos, R.; Dorn, M.; Merker, C.; Estrela-Lopis, I.; Cimpan, M. R.; Ibrahim, M.; Cimpan, E.; Ostermann, M.; Sauter, A.; El Yamani, N.; Shaposhnikov, S.; Chevillard, S.; Paget, V.; Grall, R.; Delic, J.; de-Cerio, F. G.-.; Suarez-Merino, B.; Fessard, V.; Hogeveen, K. N.; Fjellsbø, L. M.; Rundén-Pran, E.; Brzicova, T.; Topinka, J.; Silva, M. J.; Leite, P. E.; Ribeiro, A. R.; Granjeiro, J. M.; Grafström, R.; Prina-Mello, A.; Dusinska, M.

2017

High wind > 15 m/s.

Grøntoft, T.; Svenningsen, G.

2010

High-Latitude Wildfires as an Arctic Aerosol Sources

Eckhardt, Sabine; Evangeliou, Nikolaos; Stebel, Kerstin; Kaiser, Johannes; Karlsen, Irene

2026

High-Resolution Emissions from Wood Burning in Norway—The Effect of Cabin Emissions

Lopez-Aparicio, Susana; Grythe, Henrik; Markelj, Miha

Emissions from wood burning for heating in secondary homes or cabins is an important part in the development of high-resolution emissions in specific areas. Norway is used as case study as 20% of the national wood consumption for heating occurs in cabins. Our study first shows a method to estimate emissions from cabins based on traffic data to derive cabin occupancy, which combined with heating need allows for the spatial and temporal distribution of emissions. The combination of residential (RWC) and cabin wood combustion (CWC) emissions shows large spatial and temporal differences, and a temporally “cabin population” can in areas be orders of magnitude larger than the registered population. While RWC emissions have been steadily reduced, CWC have kept relatively constant or even increased, which results in an increase in the cabin share to total heating emissions up to 25–35%. When comparing with regional emission inventories, our study shows that the gradient between rural and urban areas is not well-represented in regional inventories, which resembles a population-based distribution and does not allocate emissions in cabin municipalities. CWC emissions may become an increasing environmental concern as higher densification trends in mountain areas are observed.

2022

High-Resolution Inversion Modeling of Carbon Dioxide and Methane Emissions in Europe: Assessing Accuracy and  Dynamics

Mengistu, Anteneh Getachew; Tsuruta, Aki; Tenkanen, Maria; Markkanen, Tiina; Raivonen, Maarit; Leppänen, Antti; Berchet, Antoine; Thompson, Rona Louise; Lindqvist, Hannakaisa; Aalto, Tuula

2024

High-resolution Mapping of Blue Ice on the White Continent

Jawak, Shridhar Digambar; Luis, Alvarinho J.; Pandit, Prashant H.; Wankhede, Sagar F.; Convey, Peter; Fretwell, Peter

2024

High-resolution mapping of urban air quality using low-cost sensors.

Schneider, P.; Castell, N.; Van den Bossche, J.; Lahoz, W.

2015

High-Resolution Mass Spectrometry for Human Exposomics: Expanding Chemical Space Coverage

Lai, Yunjia; Koelmel, Jeremy P.; Walker, Douglas I; Price, Elliott J.; Papazian, Stefano; Manz, Katherine E.; Castilla-Fernández, Delia; Bowden, John A.; Nikiforov, Vladimir; David, Arthur; Bessonneau, Vincent; Amer, Bashar; Seethapathy, Suresch; Hu, Xin; Lin, Elizabeth Z.; Jbebli, Akrem; McNeil, Brooklynn R.; Barupal, Dinesh Kumar; Cerasa, Marina; Xie, Hongyu; Kalia, Vrinda; Nandakumar, Renu; Singh, Randolph R.; Tian, Zhenyu; Gao, Peng; Zhao, Yujia; Froment, Jean Francois; Rostkowski, Pawel; Dubey, Saurabh; Coufalíková, Kateřina; Seličová, Hana; Hecht, Helge; Liu, Sheng; Udhani, Hanisha H.; Restituito, Sophie; Tchou-Wong, Kam-Meng; Lu, Kun; Martin, Jonathan W.; Warth, Benedikt; Pollitt, Krystal J. Godri; Klánová, Jana; Fiehn, Oliver; Metz, Thomas O.; Pennell, Kurt D.; Jones, Dean P.

In the modern “omics” era, measurement of the human exposome is a critical missing link between genetic drivers and disease outcomes. High-resolution mass spectrometry (HRMS), routinely used in proteomics and metabolomics, has emerged as a leading technology to broadly profile chemical exposure agents and related biomolecules for accurate mass measurement, high sensitivity, rapid data acquisition, and increased resolution of chemical space. Non-targeted approaches are increasingly accessible, supporting a shift from conventional hypothesis-driven, quantitation-centric targeted analyses toward data-driven, hypothesis-generating chemical exposome-wide profiling. However, HRMS-based exposomics encounters unique challenges. New analytical and computational infrastructures are needed to expand the analysis coverage through streamlined, scalable, and harmonized workflows and data pipelines that permit longitudinal chemical exposome tracking, retrospective validation, and multi-omics integration for meaningful health-oriented inferences. In this article, we survey the literature on state-of-the-art HRMS-based technologies, review current analytical workflows and informatic pipelines, and provide an up-to-date reference on exposomic approaches for chemists, toxicologists, epidemiologists, care providers, and stakeholders in health sciences and medicine. We propose efforts to benchmark fit-for-purpose platforms for expanding coverage of chemical space, including gas/liquid chromatography–HRMS (GC-HRMS and LC-HRMS), and discuss opportunities, challenges, and strategies to advance the burgeoning field of the exposome.

2024

High-resolution modelling of organic aerosol over Europe: exploring spatial and temporal variability and drivers

Banos, Daniel Trejo; Upadhyay, Abhishek; Cheng, Yun; Jiang, Jianhui; Vasilakos, Petros; Nava, Andrea; Ševera, Pavol; Flueckiger, Benjamin; Bougiatioti, Aikaterini; Verdona, Ana Maria Sanchez De La Campa; Schemmel, Andrea; Alastuey, Andrés; Vasanits, Anikó; Font, Anna; Tobler, Anna; Bourin, Aude; Machon, Attila; Chazeau, Benjamin; Bergmans, Benjamin; Alves, Célia A.; Voiron, Céline; Hueglin, Christoph; Lin, Chunshui; Belis, Claudio A.; Colombi, Cristina; Reche, Cristina; Navarro, Daniel Alejandro Sanchezrodas; Massabò, Dario; Green, David C.; Cuccia, Eleonora; Freney, Evelyn; Giardi, Fabio; Canonaco, Francesco; Uzu, Gaëlle; Chen, Gang I.; Keernik, Hannes; Flentje, Harald; Herrmann, Hartmut; Chebaicheb, Hasna; Timonen, Hilkka; Gon, Hugo Denier van der; Stavroulas, Iasonas; Salma, Imre; Schwarz, Jaroslav; Necki, Jaroslaw; Sciare, Jean; Petit, Jean-Eudes; Jaffrezo, Jean-Luc; Vasilescu, Jeni; Rosa, Jesús D. De La; Pauraite, Julija; Ovadnevaite, Jurgita; Yttri, Karl Espen; Eleftheriadis, Konstantinos; Poulain, Laurent; Belegante, Livio; Alados-Arboledas, Lucas; Manousakas, Manousos-Ioannis; Paglione, Marco; Maasikmets, Marek; Minguillón, María Cruz; Gini, Maria I.; Rinaldi, Matteo; Pikridas, Michael; Aurela, Minna; Marchand, Nicolas; Zografou, Olga; Favez, Olivier; Vodička, Petr; Pokorná, Petra; Lhotka, Radek; Atabakhsh, Samira; Conil, Sébastien; Castillo, Sonia; Gilardoni, Stefania; Platt, Stephen Matthew; Grange, Stuart K.; Poluzzi, Vanes; Kumar, Varun; Riffault, Véronique; Aas, Wenche; Querol, Xavier; Sosedova, Yulia; Probst-Hensch, Nicole; Vienneau, Danielle; Prévôt, André S.H.; Hoogh, Kees de; Daellenbach, Kaspar R.; Krymova, Ekaterina; Haddad, Imad El

Organic aerosol (OA) is a major component of atmospheric particulate matter (PM), affecting both human health and climate. However, high-resolution estimates of OA exposure needed for exposure analysis remain scarce. Here, we integrate a chemical transport model (CAMx) with a random forest (RF) machine learning approach to bias-correct and downscale daily OA concentrations across Europe. CAMx OA simulations at ∼15 km resolution show moderate agreement with observations (r = 0.55). By combining these outputs with high-resolution land-use data and training the RF model on ∼48,000 daily OA measurements from 137 sites, prediction accuracy improved (r = 0.65), with ∼l5% reduction in root mean square error. The resulting maps provide European daily OA concentrations at ∼250 m resolution for alternate years from 2011 to 2019. The model captures key spatial features, including elevated OA in the Po Valley, Southeastern, and Central Europe, as well as intracity variations due to local hotspots. Seasonal analysis reveals higher concentrations in winter, while long-term trends indicate a general decline in OA levels. Exposure estimates show that half of the European population experiences OA levels above 3 µg/m3, and ∼50 million people are exposed to more than 5 µg/m3, which is the current guideline level recommended by the world health organization for total PM2.5. These high-resolution OA maps offer vital critical support for epidemiological research and air quality policy.

2026

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