Zobrazeno 1 - 10
of 47
pro vyhledávání: '"Anders J. Olsen"'
Autor:
Trond Nordtug, Anders J. Olsen, Per-Arvid Wold, Iurgi Salaberria, Ida Beathe Øverjordet, Dag Altin, Elin Kjørsvik, Bjørn Henrik Hansen
Publikováno v:
Ecotoxicology and Environmental Safety, Vol 229, Iss , Pp 113100- (2022)
During sub-sea oil spills to the marine environment, oil droplets will rise towards the sea surface at a rate determined by their density and diameter as well as the vertical turbulence in the water. Micro-droplets (< 50 µm) are expected to have pro
Externí odkaz:
https://doaj.org/article/9f540c1eda3d47c1aa3d28ab04d6b5a8
Autor:
Adam Sokołowski, Daniel Franklin Krause, Anna Hallmann, Iurgi Salaberria, Ida Beathe Øverjordet, Katarzyna Smolarz, Justyna Świeżak, Marcelina Ziółkowska, Trond Nordtug, Anders J. Olsen, Dag Altin
Publikováno v:
Science of the Total Environment
Understanding of biological responses of marine fauna to seawater acidification due to potential CO2 leakage from sub-seabed storage sites has improved recently, providing support to CCS environmental risk assessment. Physiological responses of benth
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::a587b27306f269b8d2cbb5794c47701e
https://hdl.handle.net/11250/2767356
https://hdl.handle.net/11250/2767356
Autor:
Trond Nordtug, Anders J. Olsen, Per-Arvid Wold, Iurgi Salaberria, Ida Beathe Øverjordet, Dag Altin, Elin Kjørsvik, Bjørn Henrik Hansen
Publikováno v:
Ecotoxicology and Environmental Safety, Vol 229, Iss, Pp 113100-(2022)
Ecotoxicology and Environmental Safety
Ecotoxicology and Environmental Safety
During sub-sea oil spills to the marine environment, oil droplets will rise towards the sea surface at a rate determined by their density and diameter as well as the vertical turbulence in the water. Micro-droplets (< 50 µm) are expected to have pro
Autor:
Adam, Sokołowski, Justyna, Świeżak, Anna, Hallmann, Anders J, Olsen, Marcelina, Ziółkowska, Ida Beathe, Øverjordet, Trond, Nordtug, Dag, Altin, Daniel Franklin, Krause, Iurgi, Salaberria, Katarzyna, Smolarz
Publikováno v:
The Science of the total environment. 794
Understanding of biological responses of marine fauna to seawater acidification due to potential CO
Autor:
Julia Farkas, Bjørn Henrik Hansen, Tomasz Maciej Ciesielski, Julian Moger, Bjørn Munro Jenssen, Wilfried Posch, Michael Blatzer, Dag Altin, Rhys M. Goodhead, Doris Wilflingseder, Anders J. Olsen, V. Cappadona, Andy M. Booth
Publikováno v:
Aquatic Toxicology
While it is likely that ENPs may occur together with other contaminants in nature, the combined effects of exposure to both ENPs and environmental contaminants are not studied sufficiently. In this study, we investigated the acute and sublethal toxic
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::4e89b23821d5ae8641050b2b4c5bce79
https://hdl.handle.net/11250/2675584
https://hdl.handle.net/11250/2675584
Publikováno v:
Marine Pollution Bulletin. 136:201-211
Carbon capture and storage technology was developed as a tool to mitigate the increased emissions of carbon dioxide by capture, transportation, injection and storage of CO2 into subterranean reservoirs. There is, however, a risk of future CO2 leakage
Autor:
Trond Peder Flaten, Julia Farkas, Tomasz Maciej Ciesielski, Iurgi Salaberria, Bjarne Styrishave, Bjørn Munro Jenssen, Åse Krøkje, Radka Staňková, Wilfried Posch, Willi Salvenmoser, Anders J. Olsen
Publikováno v:
Environmental Pollution. 220:328-336
Combined exposure to engineered nanoparticles (ENPs) and anthropogenic contaminants can lead to changes in bioavailability, uptake and thus effects of both groups of contaminants. In this study we investigated effects of single and combined exposures
Autor:
M Dolores, Basallote, Ana R, Borrero-Santiago, Carlos R, Cánovas, Karen M, Hammer, Anders J, Olsen, Murat V, Ardelan
Publikováno v:
The Science of the total environment. 700
Carbon capture and storage (CCS) is the third contributor to cumulative carbon emission reductions required by the second half of this century. Although this is a promising technology for reducing atmospheric CO
Autor:
Marvin Choquet, Rolf Erik Olsen, Bjørn Munro Jenssen, Elise Skottene, Mari-Ann Østensen, Dag Altin, Anders J. Olsen, Bjørn Henrik Hansen, Ann M. Tarrant
Publikováno v:
Scientific Reports
Scientific Reports, Vol 9, Iss 1, Pp 1-13 (2019)
Scientific Reports, Vol 9, Iss 1, Pp 1-13 (2019)
Calanus copepods are keystone species in marine ecosystems, mainly due to their high lipid content, which is a nutritious food source for e.g. juvenile fish. Accumulated lipids are catabolized to meet energy requirements during dormancy (diapause), w
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::0276b63eec688219aa21d4a8391b5095
https://hdl.handle.net/11250/2654644
https://hdl.handle.net/11250/2654644
Autor:
Bjørn Henrik Hansen, Marvin Choquet, Anders J. Olsen, Bjørn Munro Jenssen, Elise Skottene, Ann M. Tarrant, Rolf Erik Olsen, Dag Altin
Calanus finmarchicus and Calanus glacialis are keystone zooplankton species in North Atlantic and Arctic marine ecosystems because they form a link in the trophic transfer of nutritious lipids from phytoplankton to predators on higher trophic levels.
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::89d9e5df648b04181e5d2438d1d51bd5
http://hdl.handle.net/11250/2622594
http://hdl.handle.net/11250/2622594