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Fant 10000 publikasjoner. Viser side 302 av 400:

Publikasjon  
År  
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Remote sensing of aerosols in the Arctic for an evaluation of global climate model simulations.

Glantz, P.; Bourassa, A.; Herber, A.; Iversen, T.; Karlsson, J.; Kirkevåg, A.; Maturilli, M.; Seland, Ø.; Stebel, K.; Struthers, H.; Tesche, M.; Thomason, L.

2014

Remote sensing of gas emissions from volcanoes. Springer Praxis Books

Prata, F.; Bluth, G.; Werner, C.; Realmuto, V.; Carn, S.; Watson, M.

2015

Remote sensing of volcanic SO2 emissions using UV camera systems.

Gliss, J.; Stebel, K.; Kylling, A.; Sudbø, A.

2017

Removal Processes of the Stratospheric SO2 Volcanic Plume From the 2015 Calbuco Eruption

Baray, J.‐L.; Gheusi, F.; Duflot, Valentin; Tulet, P.

Abstract We analyze the volcanic plume from the April 2015 Calbuco eruption over a 35‐day period using simulations from Meso‐NH, a non‐hydrostatic mesoscale atmospheric model. A dedicated parameterization of the deep injection of the plume into the stratosphere ensures a realistic representation when compared to Infrared Atmospheric Sounding Interferometer satellite observations. During the first 12 hr of the eruption, on 22 April 2015, SO 2 mixing ratio reached 29 ppmv between 15 and 18 km for the first eruption pulse, and 38 ppmv between 12 and 16 km for the second. Most SO 2 was injected directly into the stratosphere, with a stratospheric load reaching 308 ktS (kilotons of atomic sulfur, i.e. 616 kilotons of SO 2 ) after the eruption. After 1 month, both stratospheric and tropospheric SO 2 loads returned to near‐background levels. During analysis, the chemical conversion of SO 2 into H 2 SO 4 removed a part of SO 2 from the stratosphere. During the long‐range advection, the co‐location between the subtropical jet stream and the Calbuco plume led to three significant stratospheric intrusions on 24, 26 and 28 April 2015. These events transferred stratospheric SO 2 into the troposphere, SO 2 mixing ratios in the upper troposphere reaching 15 ppmv, 26 and 15 ppbv, respectively. SO 2 is gradually oxidized into H 2 SO 4 , with up to 5 ktS of gaseous H 2 SO 4 in the stratosphere on 30 April, but dynamical processes dominate the SO 2 atmospheric budget over chemical transformations. This study demonstrates that stratospheric intrusions can play a critical role in the removal of volcanic material from the stratosphere following a major eruption.

2025

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

Ren luft. Helse og miljø i et bistandsperspektiv. NILU F

Sivertsen, B.; Bartonova, A.

2001

Renere luft i Longyearbyen

Grythe, Henrik (intervjuobjekt); Krüger, Louise (journalist)

2023

Repeatability and reproducibility of data from different groups and locations in Ny-Ålesund during the Hg-Campaign 2003.

Temme, C.; Aspmo, K.; Bahlmann, E.; Banic, C.; Berg, T.; Dommergue, A.; Ebinghaus, R.; Ferrari, C.; Gauchard, P.-A.; Magand, O.; Pirrone, N.; Planchon, F.; Sprovieri, F.; Steffen, A.

2004

Reply to Bawa and Liu: Want sustainable food? Embrace complexity

Hoang, Nguyen Tien; Taherzadeh, Oliver; Ohashi, Haruka; Yonekura, Yusuke; Nishijima, Shota; Yamabe, Masaki; Matsui, Tetsuya; Matsuda, Hiroyuki; Moran, Daniel; Kanemoto, Keiichiro

2023

Reply to: The environmental footprint of fisheries

Halpern, Benjamin S.; Frazier, Melanie; Rayner, Paul-Eric; Clawson, Gage; Blanchard, Julia L.; Cottrell, Richard S.; Froehlich, Halley E.; Gephart, Jessica A.; Jacobsen, Nis Sand; Kuempel, Caitlin D.; Moran, Daniel; Nash, Kirsty L.; Williams, David R.

2023

Report on integrating the traffic/individual modelling with the air quality modelling. UncertWeb Consortium Deliverable 8.3.

Gerharz, L.; Helle, K.; Pebesma, E.; Pross, B.; Stasch, C.; Rasouli, S.; Timmermans, H.; Denby, B.; Walker, S.E.

2013

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