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Fant 9759 publikasjoner. Viser side 91 av 391:

Publikasjon  
År  
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Romanian atmospheric research 3D observatory: synergy of instruments.

Nicolae, D.; Vasilescu, J.; Carstea, E.; Stebel, K.; Prata, F.

2010

Role of resolution in estimating the population weighted concentrations and exposure.

Karppinen, A.; Kangas, L.; Soares, J.; Riikonen, K.; Denby, B.; Kukkonen, J.; Finardi, S.; Cassiani, M.; Radice, P.

2012

Role of human exposure assessment in air quality management. Report on the Joint Workshop of World Health Organization ... EUR 21052 EN

Krzyzanowski, M.; Jantunen, M.; Bartonova, A.; Oglesby, L.; Kephalopoulos, S, Kotzias, D. (eds.)

2004

Bok

Role of autumn Arctic Sea ice in the subsequent summer precipitation variability over East Asia

Liu, Yang; Zhu, Yali; Wang, Huijun; Gao, Yongqi; Sun, Jianqi; Wang, Tao; Ma, Jiehua; Yurova, Alla; Li, Fei

2019

Robust evidence for reversal of the trend in aerosol effective climate forcing

Quaas, Johannes; Jia, Hailing; Smith, Chris; Albright, Anna Lea; Aas, Wenche; Bellouin, Nicolas; Boucher, Olivier; Doutriaux-Boucher, Marie; Forster, Piers M.; Grosvenor, Daniel; Jenkins, Stuart; Klimont, Zbigniew; Loeb, Norman G.; Ma, Xiaoyan; Naik, Vaishali; Paulot, Fabien; Stier, Philip; Wild, Martin; Myhre, Gunnar; Schulz, Michael

Anthropogenic aerosols exert a cooling influence that offsets part of the greenhouse gas warming. Due to their short tropospheric lifetime of only several days, the aerosol forcing responds quickly to emissions. Here, we present and discuss the evolution of the aerosol forcing since 2000. There are multiple lines of evidence that allow us to robustly conclude that the anthropogenic aerosol effective radiative forcing (ERF) – both aerosol–radiation interactions (ERFari) and aerosol–cloud interactions (ERFaci) – has become less negative globally, i.e. the trend in aerosol effective radiative forcing changed sign from negative to positive. Bottom-up inventories show that anthropogenic primary aerosol and aerosol precursor emissions declined in most regions of the world; observations related to aerosol burden show declining trends, in particular of the fine-mode particles that make up most of the anthropogenic aerosols; satellite retrievals of cloud droplet numbers show trends in regions with aerosol declines that are consistent with these in sign, as do observations of top-of-atmosphere radiation. Climate model results, including a revised set that is constrained by observations of the ocean heat content evolution show a consistent sign and magnitude for a positive forcing relative to the year 2000 due to reduced aerosol effects. This reduction leads to an acceleration of the forcing of climate change, i.e. an increase in forcing by 0.1 to 0.3 W m−2, up to 12 % of the total climate forcing in 2019 compared to 1750 according to the Intergovernmental Panel on Climate Change (IPCC).

2022

Roadmap towards EarthCARE and Sentinel-5 precursor. A strategy preparing for operational application of planned European atmospheric chemistry and cloud/aerosol missions in Norway. NILU OR

Vik, A.F.; Myhre, C.L.; Stebel, K.; Fjæraa, A.M.; Svendby, T.; Schyberg, H.; Gauss, M.; Tsyro, S.; Schulz, M.; Valdebenito, A.; Kirkevåg, A.; Seland, Ø.; Griesfeller, J.

A strategy for how Norwegian applied organizations should prepare for the upcoming EarthCARE and Sentinel 5 precursor satellite missions is discussed, and long- and short-term plans are provided. The satellites and their potential products are discussed in terms of possible applications by NILU and met.no and data are considered for operational use in (a) reporting of climate gases, aerosols, ozone and UV to Klif, (b) EMEP reporting on aerosol and acidification/eutrophication, (c) chemical weather forecasting, (d) numerical weather forecasting and (e) research on Cloud-Aerosol-Radiation interaction.

2011

Roadmap for action for advancing aggregate exposure to chemicals in the EU

Lamon, L.; Doyle, J.; Paini, A.; Moeller, R.; Viegas, S.; Cubadda, F.; Hoet, P.; van Nieuwenhuyse, A.; Louro, H.; Dusinska, Maria; Galea, K. S.; Canham, R.; Martins, C.; Gama, A.; Teófilo, V.; Diniz-da-Costa, M.; João Silva, M.; Ventura, C.; Alvito, P.; El Yamani, Naouale; Ghosh, M.; Duca, R. C.; Siccardi, M.; Rundén-Pran, Elise; McNamara, C.; Price, P.

The European Food Safety Authority (EFSA) has a goal to efficiently conduct aggregate exposure assessments (AEAs) for chemicals using both exposure models and human biomonitoring (HBM) data by 2030. To achieve EFSA's vision, a roadmap for action for advancing aggregate exposure (AE) in the EU was developed. This roadmap was created by performing a series of engagement and data collection activities to map the currently available methods, data, and tools for assessing AE of chemicals, against the needs and priorities of EFSA. This allowed for the creation of a AEA framework, identification of data and knowledge gaps in our current capabilities, and identification of the challenges and blockers that would hinder efforts to fill the gaps. The roadmap identifies interdependent working areas (WAs) where additional research and development are required to achieve EFSA's goal. It also proposes future collaboration opportunities and recommends several project proposals to meet EFSA's goals. Eight proposal projects supported by SWOT analysis are presented for EFSA's consideration. The project proposals inform high-level recommendations for multi-annual and multi-partner projects. Recommendations to improve stakeholder engagement and communication of EFSA's work on AEA were gathered by surveying stakeholders on specific actions to improve EFSA's communication on AE, including webinars, virtual training, social media channels, and newsletters.

2024

Road-induced microplastics are transported to remote regions

Evangeliou, Nikolaos; Grythe, Henrik; Klimont, Zbigniew; Heyes, Chris; Eckhardt, Sabine; Lopez-Aparicio, Susana; Stohl, Andreas

2020

Road traffic's contribution to air quality in European cities. ETC/ACM Technical Paper, 2012/14

Sundvor, I.; Castell Balaguer, N.; Viana, M.; Querol, X.; Reche, C.; Amato, F.; Mellios, G.; Guerreiro, C.

2013

Road Traffic Microplastics Flooding World's Oceans: Study

Evangeliou, Nikolaos (intervjuobjekt); Galey, Patrick (journalist)

2020

Road salt emissions: A comparison of measurements and modelling using the NORTRIP road dust emission model.

Denby, B.R.; Ketzel, M.; Ellermann, T.; Stojiljkovic, A.; Kupiainen, K.; Niemi, J.V.; Norman, M.; Johansson, C.; Gustafsson, M.; Blomqvist, G.; Janhäll, S.; Sundvor, I.

2016

Road dust modeling for air quality forecasting in Norway.

Sundvor, I.; Denby, B.R.; Vallejo, I.; Süld, J.K.; Sousa Santos, G.

2016

Road dust and PM10 in the Nordic countries. Measures to reduce road dust emissions from traffic.

Kupiainen, K.; Denby, B. R.; Gustafsson, M.; Johansson, C.; Ketzel, M.; Kukkonen, J.; Norman, M.; Pirjola, L.; Sundvor, I.; Bennett, C.; Blomqvist, G.; Janhäll, S.; Karppinen, A.; Kauhaniemi, M.; Malinen, A.; Stojijkovic, A.

Nordic countries suffer from periodic worsening of the air quality during spring with high peak PM10 concentrations (airborne particulate matter with diameter less than 10 µm or 0.01 mm). Characteristic for the high springtime PM10 concentrations are high shares of coarse particles (with diameters between 2.5 and 10µm), a signature of non-exhaust traffic dust formed via abrasion and wear of pavement, traction control materials, vehicle brakes and tyres. This Policy Brief summarizes the current understanding of the road dust system and presents the mitigation measures and policies currently in place in the Nordic countries. It has been compiled as part of the NORTRIP project funded by the Climate and air pollution working group of the Nordic Council of Ministers by researchers from 11 Nordic institutes studying different aspects of traffic non-exhaust emissions and road dust.

2017

RISKGONE - Science-based risk governance of nano-technology

Moschini, Elisa; Isigonis, Panagiotis; Bouman, Evert Alwin; Doak, Shareen H.; Longhin, Eleonora Marta; Lynch, Iseult; Malsch, Ineke; Serchi, Tommaso; Steinbach, Christoph; Gutleb, Arno; Dusinska, Maria

2023

Risk-benefit assessment of sunscreen: Opinion of the Panel on Food Additives, Flavourings, Processing Aids, Materials in Contact with Food, and Cosmetics of the Norwegian Scientific Committee for Food and Environment

Bruzell, Ellen Merete; Carlsen, Monica Hauger; Caspersen, Ida Henriette; Denison, Eva Marie-Louise; Devold, Tove Gulbrandsen; Granum, Berit; Mathisen, Gro Haarklou; Rundén-Pran, Elise; Rasinger, Josef; Rohloff, Jens; Svendsen, Camilla; Husøy, Trine

2022

Risk-benefit assessment of sunscreen - Opinion of the Panel on Food Additives, Flavourings, Processing Aids, Materials in Contact with Food, and Cosmetics of the Norwegian Scientific Committee for Food and Environment

Bruzell, Ellen Merete; Carlsen, Monica Hauger; Caspersen, Ida Henriette; Denison, Eva Marie-Louise; Devold, Tove Gulbrandsen; Granum, Berit Brunstad; Mathisen, Gro Haarklou; Rundén-Pran, Elise; Rasinger, Josef; Rohloff, Jens; Svendsen, Camilla; Husøy, Trine

VKM has performed a risk-benefit assessment of sunscreen use and six UV filters. This task
was undertaken on the initiative of a VKM Panel in response to the apparent paradox
between the need for protective measures, such as use of sunscreens, to reduce Norway’s
high incidence and mortality of skin cancer and a consumer concern for the safety of
sunscreens. Concerns include safety of ingredients and sunscreens’ effect on vitamin D
synthesis. Sunscreen products are legally regulated as cosmetic products in the EU, and only
approved UV filters up to a maximum determined concentration are allowed in the ready-foruse preparation.
VKM used a systematic approach to assess risks and benefits of sunscreen use and risks of
six selected UV filters: bis-ethyl-hexyloxyphenol methoxyphenyl triazine (BEMT), butyl
methoxydibenzoyl methane (BMDBM), 2-ethylhexyl salicylate (EHS), ethylhexyl triazone
(EHT), octocrylene (OC), and titanium dioxide in nanoform (NP-TiO2). These UV filters are
among the most frequently used in sunscreens on the Norwegian market. Sunscreen sprays
and lip products were not included. Scientific publications and reports up to 2020 were
retrieved to assess adverse and protective effects of sunscreen and adverse effects of UV
filters. We assessed risk of bias in the studies and evidence for health outcomes with the aid
of validity tools, and estimated exposure to each UV filter using probabilistic methods.
The evidence showed that sunscreens were beneficial in protecting against certain skin
cancers. Insufficient evidence precluded determination of the hazard associated with
sunscreen use.
The UV filters occurred in concentrations similar to or below the limits set in the EU
cosmetics regulative. VKM considered that little to no hazard was associated with use of the
six evaluated UV filters.
VKM concludes that the risks related to use of the six evaluated UV filters are negligible since
the real-life use of these UV filters is several-fold lower than the amounts that may cause
any adverse health effect. The evidence for harmful health effects of sunscreens is
insufficient to determine risk. Sunscreen use protects against certain skin cancers and is
beneficial for the general Norwegian population.

2022

Risk of air pollution in relation to cancer in the Nordic countries. TemaNord, 2016:533

Fauser, P.; Ketzel, M.; Becker, T.; Plejdrup, M.; Brandt, J.; Gidhagen, L.; Omstedt, G.; Skårman, T.; Bartonova, A.; Schwarze, P.; Karvosenoja, N.; Paunu, V-V.; Kukkonen, J.; Karppinen, A.

2016

Risk governance of emerging technologies demonstrated in terms of its applicability to nanomaterials

Isigonis, Panagiotis; Afantitis, Antreas; Antunes, Dalila; Bartonova, Alena; Beitollahi, Ali; Bohmer, Nils; Bouman, Evert; Chaudhry, Qasim; Cimpan, Mihaela Roxana; Cimpan, Emil; Doak, Shareen; Dupin, Damien; Fredrigo, Doreen; Fessard, Valérie; Gromelski, Maciej; Gutleb, Arno C.; Halappanavar, Sabina; Hoet, Peter; Jeliazkova, Nina; Jomini, Stephane; Lindner, Sabine; Linkov, Igor; Longhin, Eleonora Marte; Lynch, Iseult; Malsch, Ineke; Marcomini, Antonio; Mariussen, Espen; de la Fuente, Jesus M.; Melagraki, Georgia; Murphy, Finbarr; Neaves, Michael; Packroff, Rolf; Pfuhler, Stefan; Puzyn, Tomasz; Rahman, Qamar; Rundén-Pran, Elise; Semenzin, Elena; Serchi, Tommaso; Steinbach, Christoph; Trump, Benjamin; Vrcek, Ivana Vinkovic; Warheit, David; Wiesner, Mark R,; Willighagen, Egon; Dusinska, Maria

2020

Risk Governance council (NMBP-13)

Groenewold, Monique; Dusinska, Maria; Scott-Fordsmand, Janeck J

2021

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