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Antti‐Ilari Partanen

Biographic Data

ID7996870
NAMEAntti‐Ilari Partanen
GIVEN NAMESAntti‐Ilari
FAMILY NAMEPartanen
SIGNATUREPARTANEN A I
AFFILIATIONSFinnish Meteorological Institute
ORCID0000-0002-0883-8161
VERIFIEDYes
TOTAL WORKS7
TOTAL CITATIONS0
AUTHOR COUNT7
EDITOR COUNT0
FIRST PUBLICATION YEAR2012
LATEST PUBLICATION YEAR2025
H-INDEX0
  • Efficacy of individual and combined terrestrial and marine carbon dioxide removal

    Open Access•Anusha Sathyanadh, H Esfandiari et al.•ARTICLE•Environmental Research Letters•2025

    Limiting global temperature rise below 2 °C requires significant reduction in greenhouse gas emissions and large-scale carbon dioxide removal (CDR). This study assesses the CO 2 sequestration and efficacy of two CDR approaches, bioenergy with carbon capture and storage (BECCS) and ocean alkalinity enhancement (OAE), applied individually and in combination. Using the Norwegian Earth System Model, simulations were designed to ramp up deployment of …

  • The coupled uncertainties in carbon dioxide removal and transient climate response to cumulative CO 2 emissions

    Open Access•Carla Maria Di Natale, Theresa Schaber et al.•ARTICLE•Environmental Research Letters•2025

    Meeting Paris Agreement targets increasingly points to a need for carbon dioxide removal (CDR) from the atmosphere. While CDR seems promising, the associated uncertainties are not well known. One unexplored aspect is whether the uncertainties in CDR and transient climate response to cumulative CO 2 emissions (TCRE) are coupled to any degree, e.g. some CDR methods could have lower carbon removal potential if TCRE are high. In this paper, we quanti…

  • The impact of aerosol emissions on the 1.5 °C pathways

    Open Access•Anca Hienola, Antti‐Ilari Partanen et al.•ARTICLE•Environmental Research Letters•2018

    To assess the impact of anthropogenic aerosol emission reduction on limiting global temperature increase to 1.5 °C or 2 °C above pre-industrial levels, two climate modeling approaches have been used (MAGICC6, and a combination of ECHAM-HAMMOZ and the UVic ESCM), with two aerosol control pathways under two greenhouse gas (GHG) reduction scenarios. We found that aerosol emission reductions associated with CO _2 co-emissions had a significant warmin…

  • Climate and health implications of future aerosol emission scenarios

    Open Access•Antti‐Ilari Partanen, Jean‐Sébastien Landry et al.•ARTICLE•Environmental Research Letters•2018

    Anthropogenic aerosols have a net cooling effect on climate and also cause adverse health effects by degrading air quality. In this global-scale sensitivity study, we used a combination of the aerosol-climate model ECHAM-HAMMOZ and the University of Victoria Earth System Climate Model to assess the climate and health effects of aerosols emissions from three Representative Concentration Pathways (RCP2.6, RCP4.5, and RCP8.5) and two new (LOW and HI…

  • Seasonal climate change patterns due to cumulative CO 2 emissions

    Open Access•Antti‐Ilari Partanen, Martin Leduc et al.•ARTICLE•Environmental Research Letters•2017

    Cumulative CO _2 emissions are near linearly related to both global and regional changes in annual-mean surface temperature. These relationships are known as the transient climate response to cumulative CO _2 emissions (TCRE) and the regional TCRE (RTCRE), and have been shown to remain approximately constant over a wide range of cumulative emissions. Here, we assessed how well this relationship holds for seasonal patterns of temperature change, a…

  • Carbon cycle and climate effects of forcing from fire-emitted aerosols

    Open Access•Jean‐Sébastien Landry, Antti‐Ilari Partanen et al.•ARTICLE•Environmental Research Letters•2017

    Aerosols emitted by landscape fires affect many climatic processes. Here, we combined an aerosol–climate model and a coupled climate–carbon model to study the carbon cycle and climate effects caused by fire-emitted aerosols (FEA) forcing at the top of the atmosphere and at the surface. This forcing (‘best guess’ present-day values of −0.10 and −1.3 W m ^−2 at the top of the atmosphere and surface, respectively) had a predominant cooling influence…

  • Stratospheric passenger flights are likely an inefficient geoengineering strategy

    Open Access•Anton Laakso, Antti‐Ilari Partanen et al.•ARTICLE•Environmental Research Letters•2012

    Solar radiation management with stratospheric sulfur aerosols has been proposed as a potential geoengineering strategy to reduce global warming. However, there has been very little investigation on the efficiency of specific injection methods suggested. Here, we show that using stratospheric passenger flights to inject sulfate aerosols would not cause significant forcing under realistic injection scenarios: even if all present-day intercontinenta…

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  • Stratospheric passenger flights are likely an inefficient geoengineering strategy

    Open Access•Anton Laakso, Antti‐Ilari Partanen et al.•ARTICLE•Environmental Research Letters•2012

    Solar radiation management with stratospheric sulfur aerosols has been proposed as a potential geoengineering strategy to reduce global warming. However, there has been very little investigation on the efficiency of specific injection methods suggested. Here, we show that using stratospheric passenger flights to inject sulfate aerosols would not cause significant forcing under realistic injection scenarios: even if all present-day intercontinenta…

  • Seasonal climate change patterns due to cumulative CO 2 emissions

    Open Access•Antti‐Ilari Partanen, Martin Leduc et al.•ARTICLE•Environmental Research Letters•2017

    Cumulative CO _2 emissions are near linearly related to both global and regional changes in annual-mean surface temperature. These relationships are known as the transient climate response to cumulative CO _2 emissions (TCRE) and the regional TCRE (RTCRE), and have been shown to remain approximately constant over a wide range of cumulative emissions. Here, we assessed how well this relationship holds for seasonal patterns of temperature change, a…

  • Carbon cycle and climate effects of forcing from fire-emitted aerosols

    Open Access•Jean‐Sébastien Landry, Antti‐Ilari Partanen et al.•ARTICLE•Environmental Research Letters•2017

    Aerosols emitted by landscape fires affect many climatic processes. Here, we combined an aerosol–climate model and a coupled climate–carbon model to study the carbon cycle and climate effects caused by fire-emitted aerosols (FEA) forcing at the top of the atmosphere and at the surface. This forcing (‘best guess’ present-day values of −0.10 and −1.3 W m ^−2 at the top of the atmosphere and surface, respectively) had a predominant cooling influence…

  • The impact of aerosol emissions on the 1.5 °C pathways

    Open Access•Anca Hienola, Antti‐Ilari Partanen et al.•ARTICLE•Environmental Research Letters•2018

    To assess the impact of anthropogenic aerosol emission reduction on limiting global temperature increase to 1.5 °C or 2 °C above pre-industrial levels, two climate modeling approaches have been used (MAGICC6, and a combination of ECHAM-HAMMOZ and the UVic ESCM), with two aerosol control pathways under two greenhouse gas (GHG) reduction scenarios. We found that aerosol emission reductions associated with CO _2 co-emissions had a significant warmin…

  • Climate and health implications of future aerosol emission scenarios

    Open Access•Antti‐Ilari Partanen, Jean‐Sébastien Landry et al.•ARTICLE•Environmental Research Letters•2018

    Anthropogenic aerosols have a net cooling effect on climate and also cause adverse health effects by degrading air quality. In this global-scale sensitivity study, we used a combination of the aerosol-climate model ECHAM-HAMMOZ and the University of Victoria Earth System Climate Model to assess the climate and health effects of aerosols emissions from three Representative Concentration Pathways (RCP2.6, RCP4.5, and RCP8.5) and two new (LOW and HI…

  • Efficacy of individual and combined terrestrial and marine carbon dioxide removal

    Open Access•Anusha Sathyanadh, H Esfandiari et al.•ARTICLE•Environmental Research Letters•2025

    Limiting global temperature rise below 2 °C requires significant reduction in greenhouse gas emissions and large-scale carbon dioxide removal (CDR). This study assesses the CO 2 sequestration and efficacy of two CDR approaches, bioenergy with carbon capture and storage (BECCS) and ocean alkalinity enhancement (OAE), applied individually and in combination. Using the Norwegian Earth System Model, simulations were designed to ramp up deployment of …

  • The coupled uncertainties in carbon dioxide removal and transient climate response to cumulative CO 2 emissions

    Open Access•Carla Maria Di Natale, Theresa Schaber et al.•ARTICLE•Environmental Research Letters•2025

    Meeting Paris Agreement targets increasingly points to a need for carbon dioxide removal (CDR) from the atmosphere. While CDR seems promising, the associated uncertainties are not well known. One unexplored aspect is whether the uncertainties in CDR and transient climate response to cumulative CO 2 emissions (TCRE) are coupled to any degree, e.g. some CDR methods could have lower carbon removal potential if TCRE are high. In this paper, we quanti…

Atmospheric sciences (5 works) · Climate change (5 works) · Climate model (5 works) · Climatology (5 works) · Environmental Science (5 works) · Greenhouse gas (5 works) · Meteorology (5 works) · Ecology (4 works) · Geography (4 works) · Radiative forcing (4 works)

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