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Found 9763 publications. Showing page 67 of 391:

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Finnfjord AS. Spredningsberegninger av utslipp til luft.

Berglen, Tore Flatlandsmo; Svendby, Tove Marit; Vo, Dam Thanh; Tønnesen, Dag

NILU

2021

Transport Non-exhaust PM-emissions. An overview of emission estimates, relevance, trends and policies.

Vanherle, Kris; Lopez-Aparicio, Susana; Grythe, Henrik; Lükewille, Anke; Unterstaller, Andreas; Mayeres, Inge

The report holds a comprehensive literature review on the non-exhaust PM emission from transport. All types of wear particles are considered (brake, tyre, road surface) and all modes (road, rail, aviation), with strong emphasis on road. The report serves as an input to review current emission inventories, summarizing the current emission estimates, the estimation methodologies, uncertainties and future trends, briefly zooming in on the relevance of electric vehicles. The report considers both air quality as well as the relevance of non-exhaust emission as a source of microplastics. To conclude, the report includes a brief overview of technological and policy options to reduce the environmental impact.

ETC/ATNI

2021

European air quality maps for 2018. PM10, PM2.5, Ozone, NO2 and NOx Spatial estimates and their uncertainties.

Horálek, Jan; Schreiberova, Marketa; Vlasakova, Leona; Markova, Jana; Tognet, Frédéric; Schneider, Philipp; Kurfürst, Pavel; Schovánková, Jana

The report provides the annual update of the European air quality concentration maps and population exposure estimates for human health related indicators of pollutants PM10 (annual average, 90.4 percentile of daily means), PM2.5 (annual average), ozone (93.2 percentile of maximum daily 8-hour means, SOMO35, SOMO10) and NO2 (annual average), and vegetation related ozone indicators (AOT40 for vegetation and for forests) for the year 2018. The report contains also Phytotoxic ozone dose (POD) for wheat and potato maps and NOx annual average maps for 2018. The POD maps are presented for the first time in this regular mapping report. The trends in exposure estimates in the period 2005-2018 are summarized. The analysis is based on interpolation of annual statistics of the 2018 observational data reported by the EEA member and cooperating countries and other voluntary reporting countries and stored in the Air Quality e-reporting database. The mapping method is the Regression – Interpolation – Merging Mapping. It combines monitoring data, chemical transport model results and other supplementary data using linear regression model followed by kriging of its residuals (residual kriging). The paper presents the mapping results and gives an uncertainty analysis of the interpolated maps.

ETC/ATNI

2021

SIOS’s Earth Observation (EO), Remote Sensing (RS), and operational activities in response to COVID-19

Jawak, Shridhar D.; Andersen, Bo Nyborg; Pohjola, Veijo A; Godøy, Øystein ; Hübner, Christiane; Jennings, Inger; Ignatiuk, Dariusz; Holmen, Kim; Sivertsen, Agnar ; Hann, Richard; Tømmervik, Hans; Kääb, Andreas; Błaszczyk, Małgorzata; Salzano, Roberto; Luks, Bartłomiej ; Høgda, Kjell Arild; Storvold, Rune; Nilsen, Lennart; Salvatori, Rosamaria; Krishnan, Kottekkatu Padinchati; Chatterjee, Sourav; Lorentzen, Dag A; Erlandsson, Rasmus; Lauknes, Tom Rune; Malnes, Eirik; Karlsen, Stein Rune; Enomoto, Hiroyuki; Fjæraa, Ann Mari; Zhang, Jie; Marty, Sabine; Nygård, Knut; Lihavainen, Heikki

MDPI

2021

Appropriate Assimilation Methods for Air Quality Prediction and Pollutant Emission Inversion. An Urban Data Assimilation Systems Report.

Hamer, Paul David; Walker, Sam-Erik; Schneider, Philipp

Rapporten presenterer en oversikt over dataassimilasjonsmetoder som kan anvendes for luftkvalitetsmodellering. Innledningsvis beskrives kort historisk bakgrunn for bruk av dataassimilasjon i numerisk værvarsling, der vi legger vekt på forskjellene mellom anvendelse av assimilasjon i meteorologiske varslingsmodeller og i spredningsmodeller for luftkvalitet. Basert på disse forskjellene beskrives så ønskede egenskaper til assimilasjonsmetoder for luftkvalitetsmodellering. Deretter gis en oversikt over tilgjengelige assimilasjonsmetoder, der vi søker å identifisere de mest aktuelle for vårt bruk som grunnlag for videre anvendelser i prosjektet.

NILU

2021

Climatological Westward‐Propagating Semidiurnal Tides and Their Composite Response to Sudden Stratospheric Warmings in SuperDARN and SD‐WACCM‐X

Zhang, J.; Limpasuvan, Varavut; Orsolini, Yvan J.; Espy, Patrick Joseph; Hibbins, Robert

American Geophysical Union (AGU)

2021

EE-avfall under lupen

Abbasi, Golnoush; Uggerud, Hilde Thelle (interview subjects); Eide, Lise H. (journalist)

2021

Trenger du egentlig en inneklimasensor?

Castell, Nuria (interview subject); Åserud, Rikke (journalist)

2021

Characterization of inhalation exposure to gaseous elemental mercury during artisanal gold mining and e-waste recycling through combined stationary and personal passive sampling

Snow, Melanie A.; Darko, Godfred; Gyamfi, Opoku; Ansah, Eugene; Breivik, Knut; Hoang, Christopher; Lei, Ying Duan; Wania, Frank

Royal Society of Chemistry (RSC)

2021

Miljøovervåkingsprogram for Nyhamna landanlegg – Nyhamna, Gossa. Overvåking av vegetasjon og jord – endringer i kjemiske parametere fra 2008 til 2020

Jokerud, Mari; Bargmann, Tessa; Vassvik, Linn; Bakkestuen, Vegar; Kyrkjeeide, Magni Olsen; Uggerud, Hilde Thelle

Norsk institutt for naturforskning (NINA)

2021

Method for high resolution emission estimations from construction sites. Phase I: Mapping input data

Lopez-Aparicio, Susana; Grythe, Henrik

Denne rapporten presenterer resultatene fra analyse av tilgjengelige inngangsdata for å utvikle en modell for estimering av luftforurensende stoffer og klimagassutslipp basert på en «bottom-up»-tilnærming, inkludert både eksos- og ikke-eksosutslipp. Tilgjengeligheten av pålitelige inngangsdata er den begrensende faktoren og den mest kritiske delen av utformingen av en slik «bottom-up»-tilnærming. I denne studien har vi fokusert på å vurdere inngangsdata som gjør det mulig å definere; i) den nøyaktige plasseringen og området som påvirkes under bygging og konstruksjon, ii) start- og sluttdatoer; iii) typen byggeaktivitet; iv) aktiviteter med ikke-veigående mobile maskiner (NRMM) innen bygg og anlegg; v) veier i nærheten av byggeplasser.

NILU

2021

Evaluation and optimization of ICOS atmosphere station data as part of the labeling process

Yver-Kwok, Camille; Philippon, Camille; Bergamaschi, Peter; Biermann, Tobias; Calzolari, Francescopiero; Chen, Huilin; Conil, Sébastien; Cristofanelli, Paolo; Delmotte, Marc; Hatakka, Juha; Heliasz, Michal; Hermansen, Ove; Kominkova, Katerina; Kubistin, Dagmar; Kumps, Nicolas; Laurent, Olivier; Laurila, Tuomas; Lehner, Irene; Levula, Janne; Lindauer, Matthias; Lopez, Morgan; Mammarella, Ivan; Manca, Giovanni; Marklund, Per; Metzger, Jean-Marc; Mölder, Meelis; Platt, Stephen Matthew; Ramonet, Michel; Rivier, Leonard; Scheeren, Bert; Sha, Mahesh Kumar; Smith, Paul; Steinbacher, Martin; Vitkova, Gabriela; Wyss, Simon

2021

Quantifying the Impact of the Covid-19 Lockdown Measures on Nitrogen Dioxide Levels throughout Europe

Solberg, Sverre; Walker, Sam-Erik; Schneider, Philipp; Guerreiro, Cristina

MDPI

2021

Microfluidic In Vitro Platform for (Nano)Safety and (Nano)Drug Efficiency Screening

Kohl, Yvonne; Biehl, Margit; Spring, Sarah; Hesler, Michelle; Ogourtsov, Vladimir; Todorovic, Miomir; Owen, Joshua; Elje, Elisabeth; Kopecka, Kristina; Moriones, Oscar Hernando; Bastus, Neus G.; Simon, Peter; Dubaj, Tibor; Rundén-Pran, Elise; Puntes, Victor; William, Nicola; von Briesen, Hagen; Wagner, Sylvia; Kapur, Nikil; Mariussen, Espen; Nelson, Andrew; Gabelova, A; Dusinska, Maria; Velten, Thomas; Knoll, Thorsten

2021

Fluorescent Nanocomposites: Hollow Silica Microspheres with Embedded Carbon Dots

Delic, Asmira; Mariussen, Espen; Roede, Erik Dobloug; Krivokapic, Alexander; Erbe, Andreas; Lindgren, Mikael; Benelmekki, Maria; Einarsrud, Mari-Ann

Wiley-VCH

2021

Toxic effects of gunshot fumes from different ammunitions for small arms on lung cells exposed at the air liquid interface

Mariussen, Espen; Fjellbø, Lise Marie; Frømyr, Tomas Roll; Johnsen, Ida Vaa; Karsrud, Tove Engen; Voie, Øyvind Albert

Elsevier

2021

Editorial for the Special Issue From Nanoinformatics to Nanomaterials Risk Assessment and Governance

Lynch, Iseult; Afantitis, Antreas; Greco, Dario; Dusinska, Maria; Banares, Miguel A.; Melagraki, Georgia

MDPI

2021

Ren luft for alle. ExtraStiftelsen project 2019/HE1-263918.

Castell, Nuria; Grossberndt, Sonja; Gray, Laura; Fredriksen, Mirjam; Høiskar, Britt Ann Kåstad

In 2019, in the framework of Oslo being European Green Capital, NILU invited students from elementary schools to
measure air pollution in their neighbourhood, using simple and affordable measuring methods based on paper and
Vaseline. The students prepared the measuring devices and selected the places where they wanted to monitor. After one
week, they retrieved the devices and used a scale to compare the amount of dust fastened to the Vaseline. All of the data
gathered by the students was uploaded by the teachers to a website (https://luftaforalle.nilu.no/), where a map showed all the results from the participating schools. The school campaign has helped researchers to get data on particulate matter from many places where data was not available, and has increased awareness among the children about the sustainability challenges cities are facing.

NILU

2021

Synergistic and Competing Influences of Air Pollutants on Air Quality and Arctic Climate

von Salzen, Knut; Anenberg, Susan C.; Arnold, Steve; Eckhardt, Sabine; Ekman, Annica; Flanner, Mark G.; Gauss, Michael; Im, Ulas; Klimont, Zbigniew; Krishnan, Srinath; Kupiainen, Kaarle; Mahmood, Rashed; Oliviè, Dirk Jan Leo; Oshima, Naga; Pozzoli, Luca; Rao, Shilpa; Sand, Maria; Sigmond, Michael; Tsigaridis, Kostas; Tsyro, Svetlana; Turnock, Steven T; Van Dingenen, Rita; Whaley, Cynthia; Winter, Barbara

2021

Expression of DNA repair genes in arctic char (Salvelinus alpinus) from Bjørnøya in the Norwegian Arctic

Inderberg, Helene; Neerland, Eirik D.; Mcpartland, Molly; Sparstad, Torfinn; Bytingsvik, Jenny; Nikiforov, Vladimir; Evenset, Anita; Krøkje, Åse

Academic Press

2021

Citizen science platforms

Liu, Hai-Ying; Dörler, Daniel; Heigl, Florian; Grossberndt, Sonja

2021

AeroCom phase III multi-model evaluation of the aerosol life cycle and optical properties using ground- and space-based remote sensing as well as surface in situ observations

Gliss, Jonas; Mortier, Augustin; Schulz, Michael; Andrews, Elisabeth; Balkanski, Yves; Bauer, Susanne E.; Benedictow, Anna Maria Katarina; Bian, Huisheng; Checa-Garcia, Ramiro; Chin, Mian; Ginoux, Paul; Griesfeller, Jan; Heckel, Andreas; Kipling, Zak; Kirkevåg, Alf; Kokkola, Harri; Laj, Paolo G.; Sager, Philippe Le; Lund, Marianne Tronstad; Myhre, Cathrine Lund; Matsui, Hitoshi; Myhre, Gunnar; Neubauer, David; Noije, Twan van; North, Peter; Oliviè, Dirk Jan Leo; Remy, Samuel; Sogacheva, Larisa; Takemura, Toshihiko; Tsigaridis, Kostas; Tsyro, Svetlana

Within the framework of the AeroCom (Aerosol Comparisons between Observations and Models) initiative, the state-of-the-art modelling of aerosol optical properties is assessed from 14 global models participating in the phase III control experiment (AP3). The models are similar to CMIP6/AerChemMIP Earth System Models (ESMs) and provide a robust multi-model ensemble. Inter-model spread of aerosol species lifetimes and emissions appears to be similar to that of mass extinction coefficients (MECs), suggesting that aerosol optical depth (AOD) uncertainties are associated with a broad spectrum of parameterised aerosol processes.
Total AOD is approximately the same as in AeroCom phase I (AP1) simulations. However, we find a 50 % decrease in the optical depth (OD) of black carbon (BC), attributable to a combination of decreased emissions and lifetimes. Relative contributions from sea salt (SS) and dust (DU) have shifted from being approximately equal in AP1 to SS contributing about 2∕3 of the natural AOD in AP3. This shift is linked with a decrease in DU mass burden, a lower DU MEC, and a slight decrease in DU lifetime, suggesting coarser DU particle sizes in AP3 compared to AP1.
Relative to observations, the AP3 ensemble median and most of the participating models underestimate all aerosol optical properties investigated, that is, total AOD as well as fine and coarse AOD (AODf, AODc), Ångström exponent (AE), dry surface scattering (SCdry), and absorption (ACdry) coefficients. Compared to AERONET, the models underestimate total AOD by ca. 21 % ± 20 % (as inferred from the ensemble median and interquartile range). Against satellite data, the ensemble AOD biases range from −37 % (MODIS-Terra) to −16 % (MERGED-FMI, a multi-satellite AOD product), which we explain by differences between individual satellites and AERONET measurements themselves. Correlation coefficients (R) between model and observation AOD records are generally high (R>0.75), suggesting that the models are capable of capturing spatio-temporal variations in AOD. We find a much larger underestimate in coarse AODc (∼ −45 % ± 25 %) than in fine AODf (∼ −15 % ± 25 %) with slightly increased inter-model spread compared to total AOD. These results indicate problems in the modelling of DU and SS. The AODc bias is likely due to missing DU over continental land masses (particularly over the United States, SE Asia, and S. America), while marine AERONET sites and the AATSR SU satellite data suggest more moderate oceanic biases in AODc.
Column AEs are underestimated by about 10 % ± 16 %. For situations in which measurements show AE > 2, models underestimate AERONET AE by ca. 35 %. In contrast, all models (but one) exhibit large overestimates in AE when coarse aerosol dominates (bias ca. +140 % if observed AE < 0.5). Simulated AE does not span the observed AE variability. These results indicate that models overestimate particle size (or underestimate the fine-mode fraction) for fine-dominated aerosol and underestimate size (or overestimate the fine-mode fraction) for coarse-dominated aerosol. This must have implications for lifetime, water uptake, scattering enhancement, and the aerosol radiative effect, which we can not quantify at this moment.
Comparison against Global Atmosphere Watch (GAW) in situ data results in mean bias and inter-model variations of −35 % ± 25 % and −20 % ± 18 % for SCdry and ACdry, respectively. The larger underestimate of SCdry than ACdry suggests the models will simulate an aerosol single scattering albedo that is too low. The larger underestimate of SCdry than ambient air AOD is consistent with recent findings that models overestimate scattering enhancement due to hygroscopic growth. The broadly consistent negative bias in AOD and surface scattering suggests an underestimate of aerosol radiative effects in current global aerosol models.
Considerable ...

2021

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