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Assessment of the impact of the greenhouse gas emission and sink scenarios in Finland on radiative forcing and greenhouse effect

Abstract

The objective of this work is to study greenhouse gas emissions and sinks and their greenhouse impact as a function of time. The greenhouse impact is expressed in terms of global average radiative forcing, which measures the perturbation in the Earth`s radiation budget. Radiative forcing is calculated on the basis of the concentration changes of the greenhouse gases and the radiation absorption properties of the gases. It takes into account the relatively slow changes in the concentrations due to natural removal and transformation processes and also allows a comparison of the impact of various greenhouse gases and their possible control options as a function of time. In addition to the applications mentioned above, the anthropogenic greenhouse gas emission histories of Nordic countries have been estimated, and the radiative forcing caused by them has been calculated with REFUGE. The dynamic impact of aerosol emissions both from the global point of view and in the context of different energy sources (coal, oil and natural gas) have also been studied. In some instances the caused radiative forcing has been examined on a per capita basis. The radiative forcing calculations contain considerable uncertainty due to inaccurately known factors at several stages of the calculation  More>>
Authors:
Savolainen, I; Sinisalo, J; Pipatti, R [1] 
  1. Technical Research Centre of Finland, Espoo (Finland)
Publication Date:
Dec 31, 1996
Product Type:
Technical Report
Report Number:
SA-PUB-4/96
Reference Number:
SCA: 540120; PA: FI-97:003128; EDB-97:028853; SN: 97001727887
Resource Relation:
Other Information: DN: SILMU Research Programme; PBD: 1996; Related Information: Is Part Of The Finnish research programme on climate change. Final report; Roos, J. [ed.]; PB: 507 p.
Subject:
54 ENVIRONMENTAL SCIENCES; GREENHOUSE GASES; GREENHOUSE EFFECT; FINLAND; FORECASTING; METHANE; CARBON DIOXIDE; NITROUS OXIDE; CHLOROFLUOROCARBONS; CARBON SINKS
OSTI ID:
428505
Research Organizations:
Academy of Finland, Helsinki (Finland)
Country of Origin:
Finland
Language:
English
Other Identifying Numbers:
Other: ON: DE97724949; ISBN 951-37-1961-8; TRN: FI9703128
Availability:
OSTI as DE97724949
Submitting Site:
FI
Size:
pp. 472-477
Announcement Date:
Feb 20, 1997

Citation Formats

Savolainen, I, Sinisalo, J, and Pipatti, R. Assessment of the impact of the greenhouse gas emission and sink scenarios in Finland on radiative forcing and greenhouse effect. Finland: N. p., 1996. Web.
Savolainen, I, Sinisalo, J, & Pipatti, R. Assessment of the impact of the greenhouse gas emission and sink scenarios in Finland on radiative forcing and greenhouse effect. Finland.
Savolainen, I, Sinisalo, J, and Pipatti, R. 1996. "Assessment of the impact of the greenhouse gas emission and sink scenarios in Finland on radiative forcing and greenhouse effect." Finland.
@misc{etde_428505,
title = {Assessment of the impact of the greenhouse gas emission and sink scenarios in Finland on radiative forcing and greenhouse effect}
author = {Savolainen, I, Sinisalo, J, and Pipatti, R}
abstractNote = {The objective of this work is to study greenhouse gas emissions and sinks and their greenhouse impact as a function of time. The greenhouse impact is expressed in terms of global average radiative forcing, which measures the perturbation in the Earth`s radiation budget. Radiative forcing is calculated on the basis of the concentration changes of the greenhouse gases and the radiation absorption properties of the gases. It takes into account the relatively slow changes in the concentrations due to natural removal and transformation processes and also allows a comparison of the impact of various greenhouse gases and their possible control options as a function of time. In addition to the applications mentioned above, the anthropogenic greenhouse gas emission histories of Nordic countries have been estimated, and the radiative forcing caused by them has been calculated with REFUGE. The dynamic impact of aerosol emissions both from the global point of view and in the context of different energy sources (coal, oil and natural gas) have also been studied. In some instances the caused radiative forcing has been examined on a per capita basis. The radiative forcing calculations contain considerable uncertainty due to inaccurately known factors at several stages of the calculation (emission estimation, concentration calculation and radiative forcing calculation). The total uncertainty of the results is typically on the order of +- 40 %, when absolute values are used. If the results are used in a relative way, e.g. to compare the impacts of different scenarios, the final uncertainty is considerably less (typically + 10 %), due to correlations in almost all stages of the calculation process}
place = {Finland}
year = {1996}
month = {Dec}
}