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Scott Doney

Dados Biográficos

ID6232809
NOMEScott Doney
PRENOMESScott
SOBRENOMEDoney
ASSINATURADONEY S
AFILIAÇÕESWoods Hole Oceanographic Institution
ORCID0000-0002-3683-2437
VERIFICADOSim
TOTAL DE OBRAS16
TOTAL DE CITAÇÕES0
TOTAL COMO AUTOR16
TOTAL COMO EDITOR0
PRIMEIRO ANO DE PUBLICAÇÃO2005
ANO MAIS RECENTE DE PUBLICAÇÃO2024
ÍNDICE H0
  • Evaluating the potential of iron-based interventions in methane reduction and climate mitigation

    Open Access•Daphne Meidan, Qinyi Li et al.•ARTICLE•Environmental Research Letters•2024

    Keeping global surface temperatures below international climate targets will require substantial measures to control atmospheric CO 2 and CH 4 concentrations. Recent studies have focused on interventions to decrease CH 4 through enhanced atmospheric oxidation. Here for the first time using a set of models, we evaluate the effect of adding iron aerosols to the atmosphere to enhance molecular chlorine production, and thus enhance the atmospheric ox…

  • Diverse carbon dioxide removal approaches could reduce impacts on the energy–water–land system

    Open Access•Jay Fuhrman, Candelaria Bergero et al.•ARTICLE•Nature Climate Change•2023

  • Regional implications of carbon dioxide removal in meeting net zero targets for the United States

    Open Access•Chloé Fauvel, Jay Fuhrman et al.•ARTICLE•Environmental Research Letters•2023

    Net-zero greenhouse gas emission targets are central to current international efforts to stabilize global climate, and many of these plans rely on carbon dioxide removal (CDR) to meet mid-century goals. CDR can be performed via nature-based approaches, such as afforestation, or engineered approaches, such as direct air capture. Both will have large impacts in the regions where they are sited. We used the Global Change Analysis Model for the Unite…

  • Assessing the sequestration time scales of some ocean-based carbon dioxide reduction strategies

    Open Access•David A Siegel, Tim DeVries et al.•ARTICLE•Environmental Research Letters•2021

    Ocean-based carbon dioxide (CO 2 ) removal (CDR) strategies are an important part of the portfolio of approaches needed to achieve negative greenhouse gas emissions. Many ocean-based CDR strategies rely on injecting CO 2 or organic carbon (that will eventually become CO 2 ) into the ocean interior, or enhancing the ocean’s biological pump. These approaches will not result in permanent sequestration, because ocean currents will eventually return t…

  • The role of direct air capture and negative emissions technologies in the shared socioeconomic pathways towards +1.5 °C and +2 °C futures

    Open Access•Jay Fuhrman, Andrés F Clarens et al.•ARTICLE•Environmental Research Letters•2021

    The development of the Shared Socioeconomic Pathways (SSPs) and associated integrated assessment modeling (IAM) exercises did not include direct air capture with carbon storage (DACCS) in their scenarios. However, recent more optimistic cost estimates and commercial or pilot-scale DACCS plants have led to increased attention to this technology in both IAM literature and in real-world policy discussions. DACCS is an energy-consuming negative emiss…

  • Food–energy–water implications of negative emissions technologies in a +1.5 °C future

    Open Access•Jay Fuhrman, Haewon McJeon et al.•ARTICLE•Nature Climate Change•2020

  • Attributing ocean acidification to major carbon producers

    Open Access•Rachel Licker, B Ekwurzel et al.•ARTICLE•Environmental Research Letters•2019

    Recent research has quantified the contributions of CO 2 and CH 4 emissions traced to the products of major fossil fuel companies and cement manufacturers to global atmospheric CO 2 , surface temperature, and sea level rise. This work has informed societal considerations of the climate responsibilities of these major industrial carbon producers. Here, we extend this work to historical (1880–2015) and recent (1965–2015) acidification of the world’…

  • Global Carbon Budget 2018

    Open Access•Corinne Le Quéré, Robbie M Andrew et al.•ARTICLE•Earth System Science Data•2018

    Accurate assessment of anthropogenic carbon dioxide(CO2) emissions and their redistribution among the atmosphere,ocean, and terrestrial biosphere – the “global carbon budget” – isimportant to better understand the global carbon cycle, support thedevelopment of climate policies, and project future climate change. Here wedescribe data sets and methodology to quantify the five major components ofthe global carbon budget and their uncertainties. Foss…

  • Are the impacts of land use on warming underestimated in climate policy

    Open Access•N M Mahowald, D S Ward et al.•ARTICLE•Environmental Research Letters•2017

    While carbon dioxide emissions from energy use must be the primary target of climate change mitigation efforts, land use and land cover change (LULCC) also represent an important source of climate forcing. In this study we compute time series of global surface temperature change separately for LULCC and non-LULCC sources (primarily fossil fuel burning), and show that because of the extra warming associated with the co-emission of methane and nitr…

  • Global Carbon Budget 2016

    Open Access•Corinne Le Quéré, Robbie M Andrew et al.•ARTICLE•Earth System Science Data•2016

    Accurate assessment of anthropogenic carbon dioxide (CO2) emissions and their redistribution among the atmosphere, ocean, and terrestrial biosphere – the “global carbon budget” – is important to better understand the global carbon cycle, support the development of climate policies, and project future climate change. Here we describe data sets and methodology to quantify all major components of the global carbon budget, including their uncertainti…

  • An index to assess the health and benefits of the global ocean

    Open Access•Benjamin S Halpern, Catherine Longo et al.•ARTICLE•Nature•2012

  • Trends in the sources and sinks of carbon dioxide

    Open Access•Corinne Le Quéré, Michael Raupach et al.•ARTICLE•Nature Geoscience•2009

  • Ocean Acidification

    Scott Doney, Victoria J Fabry et al.•ARTICLE•Annual Review of Marine Science•2009

    Rising atmospheric carbon dioxide (CO 2 ), primarily from human fossil fuel combustion, reduces ocean pH and causes wholesale shifts in seawater carbonate chemistry. The process of ocean acidification is well documented in field data, and the rate will accelerate over this century unless future CO 2 emissions are curbed dramatically. Acidification alters seawater chemical speciation and biogeochemical cycles of many elements and compounds. One we…

  • Anticipating ocean acidification’s economic consequences for commercial fisheries

    Open Access•Sarah R Cooley, Sarah Cooley et al.•ARTICLE•Environmental Research Letters•2009

    Author Posting. © IOP Publishing, 2009. This is the author's version of the work. It is posted here by permission of IOP Publishing for personal use, not for redistribution. The definitive version was published in Environmental Research Letters 4 (2009): 024007, doi:10.1088/1748-9326/4/2/024007

  • Climate–Carbon Cycle Feedback Analysis

    Pierre Friedlingstein, Peter M Cox et al.•ARTICLE•Journal of Climate•2006

    Eleven coupled climate–carbon cycle models used a common protocol to study the coupling between climate change and the carbon cycle. The models were forced by historical emissions and the Intergovernmental Panel on Climate Change (IPCC) Special Report on Emissions Scenarios (SRES) A2 anthropogenic emissions of CO2 for the 1850–2100 time period. For each model, two simulations were performed in order to isolate the impact of climate change on the …

  • Anthropogenic ocean acidification over the twenty-first century and its impact on calcifying organisms

    Open Access•James C Orr, Victoria J Fabry et al.•ARTICLE•Nature•2005

Sem obras proeminentes nesta página.

  • Anthropogenic ocean acidification over the twenty-first century and its impact on calcifying organisms

    Open Access•James C Orr, Victoria J Fabry et al.•ARTICLE•Nature•2005

  • Climate–Carbon Cycle Feedback Analysis

    Pierre Friedlingstein, Peter M Cox et al.•ARTICLE•Journal of Climate•2006

    Eleven coupled climate–carbon cycle models used a common protocol to study the coupling between climate change and the carbon cycle. The models were forced by historical emissions and the Intergovernmental Panel on Climate Change (IPCC) Special Report on Emissions Scenarios (SRES) A2 anthropogenic emissions of CO2 for the 1850–2100 time period. For each model, two simulations were performed in order to isolate the impact of climate change on the …

  • Trends in the sources and sinks of carbon dioxide

    Open Access•Corinne Le Quéré, Michael Raupach et al.•ARTICLE•Nature Geoscience•2009

  • Ocean Acidification

    Scott Doney, Victoria J Fabry et al.•ARTICLE•Annual Review of Marine Science•2009

    Rising atmospheric carbon dioxide (CO 2 ), primarily from human fossil fuel combustion, reduces ocean pH and causes wholesale shifts in seawater carbonate chemistry. The process of ocean acidification is well documented in field data, and the rate will accelerate over this century unless future CO 2 emissions are curbed dramatically. Acidification alters seawater chemical speciation and biogeochemical cycles of many elements and compounds. One we…

  • Anticipating ocean acidification’s economic consequences for commercial fisheries

    Open Access•Sarah R Cooley, Sarah Cooley et al.•ARTICLE•Environmental Research Letters•2009

    Author Posting. © IOP Publishing, 2009. This is the author's version of the work. It is posted here by permission of IOP Publishing for personal use, not for redistribution. The definitive version was published in Environmental Research Letters 4 (2009): 024007, doi:10.1088/1748-9326/4/2/024007

  • An index to assess the health and benefits of the global ocean

    Open Access•Benjamin S Halpern, Catherine Longo et al.•ARTICLE•Nature•2012

  • Global Carbon Budget 2016

    Open Access•Corinne Le Quéré, Robbie M Andrew et al.•ARTICLE•Earth System Science Data•2016

    Accurate assessment of anthropogenic carbon dioxide (CO2) emissions and their redistribution among the atmosphere, ocean, and terrestrial biosphere – the “global carbon budget” – is important to better understand the global carbon cycle, support the development of climate policies, and project future climate change. Here we describe data sets and methodology to quantify all major components of the global carbon budget, including their uncertainti…

  • Are the impacts of land use on warming underestimated in climate policy

    Open Access•N M Mahowald, D S Ward et al.•ARTICLE•Environmental Research Letters•2017

    While carbon dioxide emissions from energy use must be the primary target of climate change mitigation efforts, land use and land cover change (LULCC) also represent an important source of climate forcing. In this study we compute time series of global surface temperature change separately for LULCC and non-LULCC sources (primarily fossil fuel burning), and show that because of the extra warming associated with the co-emission of methane and nitr…

  • Global Carbon Budget 2018

    Open Access•Corinne Le Quéré, Robbie M Andrew et al.•ARTICLE•Earth System Science Data•2018

    Accurate assessment of anthropogenic carbon dioxide(CO2) emissions and their redistribution among the atmosphere,ocean, and terrestrial biosphere – the “global carbon budget” – isimportant to better understand the global carbon cycle, support thedevelopment of climate policies, and project future climate change. Here wedescribe data sets and methodology to quantify the five major components ofthe global carbon budget and their uncertainties. Foss…

  • Attributing ocean acidification to major carbon producers

    Open Access•Rachel Licker, B Ekwurzel et al.•ARTICLE•Environmental Research Letters•2019

    Recent research has quantified the contributions of CO 2 and CH 4 emissions traced to the products of major fossil fuel companies and cement manufacturers to global atmospheric CO 2 , surface temperature, and sea level rise. This work has informed societal considerations of the climate responsibilities of these major industrial carbon producers. Here, we extend this work to historical (1880–2015) and recent (1965–2015) acidification of the world’…

  • Food–energy–water implications of negative emissions technologies in a +1.5 °C future

    Open Access•Jay Fuhrman, Haewon McJeon et al.•ARTICLE•Nature Climate Change•2020

  • Assessing the sequestration time scales of some ocean-based carbon dioxide reduction strategies

    Open Access•David A Siegel, Tim DeVries et al.•ARTICLE•Environmental Research Letters•2021

    Ocean-based carbon dioxide (CO 2 ) removal (CDR) strategies are an important part of the portfolio of approaches needed to achieve negative greenhouse gas emissions. Many ocean-based CDR strategies rely on injecting CO 2 or organic carbon (that will eventually become CO 2 ) into the ocean interior, or enhancing the ocean’s biological pump. These approaches will not result in permanent sequestration, because ocean currents will eventually return t…

  • The role of direct air capture and negative emissions technologies in the shared socioeconomic pathways towards +1.5 °C and +2 °C futures

    Open Access•Jay Fuhrman, Andrés F Clarens et al.•ARTICLE•Environmental Research Letters•2021

    The development of the Shared Socioeconomic Pathways (SSPs) and associated integrated assessment modeling (IAM) exercises did not include direct air capture with carbon storage (DACCS) in their scenarios. However, recent more optimistic cost estimates and commercial or pilot-scale DACCS plants have led to increased attention to this technology in both IAM literature and in real-world policy discussions. DACCS is an energy-consuming negative emiss…

  • Diverse carbon dioxide removal approaches could reduce impacts on the energy–water–land system

    Open Access•Jay Fuhrman, Candelaria Bergero et al.•ARTICLE•Nature Climate Change•2023

  • Regional implications of carbon dioxide removal in meeting net zero targets for the United States

    Open Access•Chloé Fauvel, Jay Fuhrman et al.•ARTICLE•Environmental Research Letters•2023

    Net-zero greenhouse gas emission targets are central to current international efforts to stabilize global climate, and many of these plans rely on carbon dioxide removal (CDR) to meet mid-century goals. CDR can be performed via nature-based approaches, such as afforestation, or engineered approaches, such as direct air capture. Both will have large impacts in the regions where they are sited. We used the Global Change Analysis Model for the Unite…

  • Evaluating the potential of iron-based interventions in methane reduction and climate mitigation

    Open Access•Daphne Meidan, Qinyi Li et al.•ARTICLE•Environmental Research Letters•2024

    Keeping global surface temperatures below international climate targets will require substantial measures to control atmospheric CO 2 and CH 4 concentrations. Recent studies have focused on interventions to decrease CH 4 through enhanced atmospheric oxidation. Here for the first time using a set of models, we evaluate the effect of adding iron aerosols to the atmosphere to enhance molecular chlorine production, and thus enhance the atmospheric ox…

Climate change (16 obras) · Environmental Science (16 obras) · Greenhouse gas (10 obras) · Atmospheric and Environmental Gas Dynamics (9 obras) · Ecology (8 obras) · Carbon dioxide (7 obras) · Natural resource economics (7 obras) · Biology (6 obras) · Business (6 obras) · Carbon cycle (6 obras)

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