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Found 9884 publications. Showing page 319 of 396:

Publication  
Year  
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Coastal lagoons: Environmental variability, ecosystem complexity, and goods and services uniformity

Perez-Ruzafa, Angel; Perez-Ruzafa, Isabel M.; Newton, Alice; Marcos, Concepción

2019

Coastal ecosystem greenhouse gas budget. NILU F

Pacyna, J.M.; Manø, S.; Bange, H.W.; Borges, A.; Frankignoulle, M.; Upstill-Goddard, R.C.; Uher, G.; Hov, Ø.

2004

CO2-rensing Klemetsrud. Beregning av nitros- og nitraminer.

Tønnesen, Dag

Beregning av spredning og dannelse av nitros- og nitramin er gjennomført for et potensielt aminbasert CO2-fangst-anlegg på Klemetsrud. Det er utført beregninger for tre ulike aminer. Beregningene viser makismal utslippskonsentrasjon for de ulike aminene for å sikre overholdelse av anbefalte grenseverdier for nitros- og nitraminer i luft og vann. Høyeste utslippskonsentrasjon som ikke gir overskridelser av grenseverdiene, er mellom 1,1 ppmV og 11 ppmV avhengig av hvilket amin som benyttes.

NILU

2018

CO2 Technology Centre Mongstad - updated air dispersion calculations. Update of OR 12/2008. NILU OR

Berglen, T.F.; Tønnesen, D.; Dye, C.; Karl, M.; Knudsen, S.; Tarrasón, L.

2010

CO2 on the way to school. NILU PP

Randall, S.

2008

CO2 capture by sodiumcarbonate. NILU OR

Schmidbauer, N.; Knudsen, S.

2014

Co-ordinated observations of ozone, PSCs and stratospheric trace gases at ALOMAR, Norway. NILU F

Hansen, G.H.; Arlander, W.; Edvardsen, K.; Tørnkvist, K.; Fiedler, J.; von Cossart, G.; Sarcissian, A.

2000

Co-Constructing City Futures: Enabling Participation in Urban Planning Processes with ICTs

Smørdal, Ole; Hennissen, Grete Kristin; Hoelscher, Kristian; Wensaas, Kristina ebbing; Lopez-Aparicio, Susana; Pettersen, Ida Nilstad; Wilson, Alexander; Kahlia, Maarit

2019

Cloud-scale modelling of the impact of deep convection on the fate of oceanic bromoform in the troposphere: a case study over the west coast of Borneo

Hamer, Paul David; Marécal, Virginie; Hossaini, Ryan; Pirre, Michel; Krysztofiak, Gisele; Ziska, Franziska; Engel, Andreas; Sala, Stephan; Keber, Timo; Bönisch, Harald; Atlas, Elliot; Krüger, Kirstin; Chipperfield, Martyn; Catoire, Valery; Samah, Azizan A.; Dorf, Marcel; Moi, Phang Siew; Schlager, Hans; Pfeilsticker, Klaus

This paper presents a modelling study on the fate of CHBr3 and its product gases in the troposphere within the context of tropical deep convection. A cloud-scale case study was conducted along the west coast of Borneo, where several deep convective systems were triggered on the afternoon and early evening of 19 November 2011. These systems were sampled by the Falcon aircraft during the field campaign of the SHIVA project and analysed using a simulation with the cloud-resolving meteorological model C-CATT-BRAMS at 2×2 km resolution that represents the emissions, transport by large-scale flow, convection, photochemistry, and washout of CHBr3 and its product gases (PGs). We find that simulated CHBr3 mixing ratios and the observed values in the boundary layer and the outflow of the convective systems agree. However, the model underestimates the background CHBr3 mixing ratios in the upper troposphere, which suggests a missing source at the regional scale. An analysis of the simulated chemical speciation of bromine within and around each simulated convective system during the mature convective stage reveals that >85 % of the bromine derived from CHBr3 and its PGs is transported vertically to the point of convective detrainment in the form of CHBr3 and that the remaining small fraction is in the form of organic PGs, principally insoluble brominated carbonyls produced from the photo-oxidation of CHBr3. The model simulates that within the boundary layer and free troposphere, the inorganic PGs are only present in soluble forms, i.e. HBr, HOBr, and BrONO2, and, consequently, within the convective clouds, the inorganic PGs are almost entirely removed by wet scavenging. We find that HBr is the most abundant PG in background lower-tropospheric air and that this prevalence of HBr is a result of the relatively low background tropospheric ozone levels at the regional scale. Contrary to a previous study in a different environment, for the conditions in the simulation, the insoluble Br2 species is hardly formed within the convective systems and therefore plays no significant role in the vertical transport of bromine. This likely results from the relatively small quantities of simulated inorganic bromine involved, the presence of HBr in large excess compared to HOBr and BrO, and the relatively efficient removal of soluble compounds within the convective column.

2021

Cloud microphysical processes during ISLAS 2020 campaign: remote sensing, radiosonde and model data

Dekhtyareva, Alena; Maturilli, Marion; Ebell, Kerstin; Johannessen, Aina Marie; Seidl, Andrew Walter; Jonassen, Marius Opsanger; Hermansen, Ove; Kähnert, Marvin; Thurnherr, Iris Livia; Sodemann, Harald

2022

Cloud microphysical processes during ISLAS 2020 campaign in Ny-Ålesund

Dekhtyareva, Alena; Maturilli, Marion; Ebell, Kerstin; Johannessen, Aina Marie; Seidl, Andrew Walter; Jonassen, Marius Opsanger; Hermansen, Ove; Welker, Jeffrey M.; Sodemann, Harald

2021

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