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Fant 9758 publikasjoner. Viser side 335 av 391:

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Bird feathers as a biomonitor for environmental pollutants: Prospects and pitfalls

Jaspers, Veerle; Covaci, Adrian; Herzke, Dorte; Eulaers, Igor; Eens, Marcel

2019

Biotransformation of PCBs in Arctic seabirds: Characterization of phase I and II pathways at transcriptional, translational and activity levels.

Helgason, L.B.; Arukwe, A.; Gabrielsen, G.W.; Harju, M.; Hegseth, M.N.; Heimstad, E.S.; Jørgensen, E.H.; Mortensen, A.S.; Wolkers, J.

2010

Biotic and abiotic transformation pathways of synthetic musks in the aquatic environment. Handbook of environmental chemistry, Vol. 3X, Anthropogenic compounds

Biselli, S.; Gatermann, R.; Kallenborn, R.; Sydnes, L.K.; Hühnerfuss, H.

2004

Biophotovoltaics: oxygenic photosynthetic organisms in the world of bioelectrochemical systems.

McCormick, A.J.; Bombelli, P.; Bradley, R.W.; Thorne, R.; Wenzel, T.; Howe, C.J.

2015

Biomass-burning and anthropogenic impacts on Arctic tropospheric chemistry assessed using measurements at Summit, Greenland.

Kramer, L.J.; Honrath, R.E.; Dziobak, M.P.; Helmig, D.; Hueber, J.; Goodwin, S.; Oltmans, S.J.; Schnell, R.C.; Burkhart, J.F.; Stohl, A.

2008

Biomass burning in eastern Europe during spring 2006 caused high deposition of ammonium in northern Fennoscandia.

Karlsson, P.E.; Ferm, M.; Tømmervik, H.; Hole, L.R.; Karlsson, G.P.; Ruoho-Airola, T.; Aas, W.; Hellsten, S.; Akselsson, C.; Mikkelsen, T.N.; Nihlgård, B.

2013

Biomass burning emission analysis based on MODIS aerosol optical depth and AeroCom multi-model simulations: Implications for model constraints and emission inventories

Petrenko, Mariya; Kahn, Ralph; Chin, Mian; Bauer, Susanne; Bergman, Tommi; Bian, Huisheng; Curci, Gabriele; Johnson, Ben; Kaiser, Johannes; Kipling, Zak; Kokkola, Harri; Liu, Xiaohong; Mezuman, Keren; Mielonen, Tero; Myhre, Gunnar; Pan, Xiaohua; Protonotariou, Anna; Remy, Samuel; Skeie, Ragnhild Bieltvedt; Stier, Philip; Toshihiko, Takemura; Tsigaridis, Kostas; Wang, Hailong; Watson-Parris, Duncan; Zhang, Kai

We assessed the biomass burning (BB) smoke aerosol optical depth (AOD) simulations of 11 global models that participated in the AeroCom phase III BB emission experiment. By comparing multi-model simulations and satellite observations in the vicinity of fires over 13 regions globally, we (1) assess model-simulated BB AOD performance as an indication of smoke source–strength, (2) identify regions where the common emission dataset used by the models might underestimate or overestimate smoke sources, and (3) assess model diversity and identify underlying causes as much as possible. Using satellite-derived AOD snapshots to constrain source strength works best where BB smoke from active sources dominates background non-BB aerosol, such as in boreal forest regions and over South America and southern hemispheric Africa. The comparison is inconclusive where the total AOD is low, as in many agricultural burning areas, and where the background is high, such as parts of India and China. Many inter-model BB AOD differences can be traced to differences in values for the mass ratio of organic aerosol to organic carbon, the BB aerosol mass extinction efficiency, and the aerosol loss rate from each model. The results point to a need for increased numbers of available BB cases for study in some regions and especially to a need for more extensive regional-to-global-scale measurements of aerosol loss rates and of detailed particle microphysical and optical properties; this would both better constrain models and help distinguish BB from other aerosol types in satellite retrievals. More generally, there is the need for additional efforts at constraining aerosol source strength and other model attributes with multi-platform observations.

2025

Biomass burning and anthropogenic sources of CO over New England in the summer of 2004.

Warneke, C.; de Gouw, J.A.; Stohl, A.; Cooper, O.R.; Golden, P.D.; Kuster, W.; Kato, S.; Holloway, J.S.; Williams, E.J.; Lerner, B.; McKeen, S.A.; Trainer, M.; Fehsenfeld, F.C.; Atlas, E.L.; Donelly, S.G.

2005

Biomass burning and anthropogenic sources of CO over New England in the summer 2004.

Warneke, C.; de Gouw, J.A.; Stohl, A.; Cooper, O.R.; Goldan, P.D.; Kuster, W.C.; Holloway, J.S.; Williams, E.J.; Lerner, B.M.; McKeen, S.A.; Trainer, M.; Fehsenfeld, F.C.; Atlas, E.L.; Donnelly, S.G.; Stroud, V.; Lueb, A.; Kato, S.

2006

Biomagnification of PFAS in the Antarctic breeding south polar skua

Garcia, Laura Andrea Alfaro; Descamps, Sebastien; Herzke, Dorte; Eckbo, Norith; Chastel, O.; Carravieri, Alice; Cherel, Yves; Labadie, P.; Budzinski, H.; Gabrielsen, Geir W.; Bustnes, Jan Ove; Borgå, Katrine

2019

Biological Uptake of Organic Contaminants from Car Tire Particles

Halsband, Claudia; Hägg, Fanny; Galtung, Kristin; Herzke, Dorte; Booth, Andrew Michael; Nikiforov, Vladimir

2023

Biological impact assessment of nanomaterial used in nanomedicine. Introduction to the NanoTEST project.

Juillerat, L.; Fjellsbø, L.M.; Dusinska, M.; Collins, A.R.; Handy, R.; Riediker, M.; the NanoTEST Consortium.

2015

Biological activity of plant extract isolated from Papaver rhoeas on human lymfoblastoid cell line.

Hasplova, K.; Hudecova, A.; Miadokova, E.; Magdolenova, Z.; Galova, E.; Vaculcikova, L.; Gregan, F.; Dusinska, M.

2011

Bioindication and modelling of atmospheric deposition in forests enable exposure and effect monitoring at high spatial density across scales.

Schröder, W.; Nickel, S.; Schönrock, S.; Schmalfuß, R.; Wosniok, W.; Meyer, M.; Harmens, H.; Frontasyeva, M. V.; Alber, R.; Aleksiayenak, J.; Barandovski, L.; Blum, O.; Carballeira, A.; Dam, M.; Danielsson, H.; De Temmermann, L.; Dunaev, A. M.; Godzik, B.; Hoydal, K.; Jeran, Z.; Karlsson, G. P.; Lazo, P.; Leblond, S.; Lindroos, J.; Liiv, S.; Magnússon, S. H.; Mankovska, B.; Núñez-Olivera, E.; Piispanen, J.; Poikolainen, J.; Popescu, I. V.; Qarri, F.; Santamaria, J. M.; Skudnik, M.; Špiric, Z.; Stafilov, T.; Steinnes, E.; Stihi, C.; Suchara, I.; Thöni, L.; Uggerud, H. T.; Zechmeister, H. G.

2017

Bioakkumulering, økotoksikologi og biomarkørresponser i marine næringskjeder. NILU F

Nygård, T.; Berge, J.A.; Berger, U.; Brevik, E.; Herzke, D.; Melbøe, A.; Jenssen, B.M.; Kallenborn, R.; Røv, N.; Schlabach, M.; Vetter, W.; Aarnes, J.B.

2005

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