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Steve Frolking

Dados Biográficos

ID6376348
NOMESteve Frolking
PRENOMESSteve
SOBRENOMEFrolking
ASSINATURAFROLKING S
AFILIAÇÕESUniversity of New Hampshire
ORCID0000-0001-6414-5004
VERIFICADOSim
TOTAL DE OBRAS13
TOTAL DE CITAÇÕES5
TOTAL COMO AUTOR13
TOTAL COMO EDITOR0
PRIMEIRO ANO DE PUBLICAÇÃO2011
ANO MAIS RECENTE DE PUBLICAÇÃO2020
ÍNDICE H1
  • Harmonization of global land use change and management for the period 850–2100 (LUH2) for CMIP6

    Open Access•G C Hurtt, Louise Chini et al.•ARTICLE•Geoscientific Model Development•2020

    Human land use activities have resulted in large changes to the biogeochemical and biophysical properties of the Earth's surface, with consequences for climate and other ecosystem services. In the future, land use activities are likely to expand and/or intensify further to meet growing demands for food, fiber, and energy. As part of the World Climate Research Program Coupled Model Intercomparison Project (CMIP6), the international community has d…

  • Satellite Monitoring of Natural Reforestation Efforts in China's Drylands

    Open Access•Cynthia Gerlein‐Safdi, G Keppel‐Aleks et al.•ARTICLE•One Earth•2020

  • Prompt active restoration of peatlands substantially reduces climate impact

    Open Access•Kelly A Nugent, Ian B Strachan et al.•ARTICLE•Environmental Research Letters•2019

    Restoration of peatlands after peat extraction could be a benefit to the climate system. However a multi-year ecosystem-scale assessment of net carbon (C) sequestration is needed. We investigate the climate impact of active peatland restoration (rewetting and revegetating) using a chronosequence of C gas exchange measurements across post-extraction Canadian peatlands. An atmospheric perturbation model computed the instantaneous change in radiativ…

  • Satellite Remote Sensing of Surface Urban Heat Islands

    Open Access•Decheng Zhou, Jingfeng Xiao et al.•ARTICLE•Remote Sensing•2018

    The surface urban heat island (SUHI), which represents the difference of land surface temperature (LST) in urban relativity to neighboring non-urban surfaces, is usually measured using satellite LST data. Over the last few decades, advancements of remote sensing along with spatial science have considerably increased the number and quality of SUHI studies that form the major body of the urban heat island (UHI) literature. This paper provides a sys…

  • Assessing the impacts of 1.5 °C global warming – simulation protocol of the Inter-Sectoral Impact Model Intercomparison Project (Isimip2b)

    Open Access•Katja Frieler, Stefan Lange et al.•ARTICLE•Geoscientific Model Development•2017

    In Paris, France, December 2015, the Conference of the Parties (COP) to the United Nations Framework Convention on Climate Change (UNFCCC) invited the Intergovernmental Panel on Climate Change (IPCC) to provide a special report in 2018 on the impacts of global warming of 1.5 °C above pre-industrial levels and related global greenhouse gas emission pathways. In Nairobi, Kenya, April 2016, the IPCC panel accepted the invitation. Here we describe th…

  • The use and re-use of unsustainable groundwater for irrigation

    Open Access•Danielle Grogan, Dominik Wisser et al.•ARTICLE•Environmental Research Letters•2017

    Depletion of groundwater aquifers across the globe has become a significant concern, as groundwater is an important and often unsustainable source of irrigation water. Simultaneously, the field of water resource management has seen a lively debate over the concepts and metrics used to assess the downstream re-use of agricultural runoff, with most studies focusing on surface water balances. Here, we bring these two lines of research together, reco…

  • Achieving sustainable irrigation water withdrawals

    Open Access•Jing Liu, Thomas W Hertel et al.•ARTICLE•Environmental Research Letters•2017

    Unsustainable water use challenges the capacity of water resources to ensure food security and continued growth of the economy. Adaptation policies targeting future water security can easily overlook its interaction with other sustainability metrics and unanticipated local responses to the larger-scale policy interventions. Using a global partial equilibrium grid-resolving model SIMPLE-G, and coupling it with the global Water Balance Model, we si…

  • Focus on the impact of climate change on wetland ecosystems and carbon dynamics

    Open Access•Lei Meng, Nigel T Roulet et al.•ARTICLE•Environmental Research Letters•2016

    The renewed growth in atmospheric methane (CH4) since 2007 after a decade of stabilization has drawn much attention to its causes and future trends. Wetlands are the single largest source of atmospheric CH4. Understanding wetland ecosystems and carbon dynamics is critical to the estimation of global CH4 and carbon budgets. After approximately 7 years of CH4 related research following the renewed growth in atmospheric CH4, Environmental Research L…

  • Invisible water, visible impact

    Open Access•Esha Zaveri, Danielle Grogan et al.•ARTICLE•Environmental Research Letters•2016

    India is one of the world’s largest food producers, making the sustainability of its agricultural system of global significance. Groundwater irrigation underpins India’s agriculture, currently boosting crop production by enough to feed 170 million people. Groundwater overexploitation has led to drastic declines in groundwater levels, threatening to push this vital resource out of reach for millions of small-scale farmers who are the backbone of I…

  • Exploring the relationship between peatland net carbon balance and apparent carbon accumulation rate at century to millennial time scales

    Open Access•Steve Frolking, Julie Talbot et al.•ARTICLE•The Holocene•2014•Citada por: 4•Referências: 3

    Each year, a peatland has an annual net carbon balance ( NCB), which can be positive (net uptake), zero or negative. Over centuries to millennia, this NCB accumulates as a peat profile. Contemporary peatlands can be sampled (cored), and the past apparent carbon accumulation rate ( aCAR) can be determined as the quantity of peat carbon in any particular dated interval down the core profile. We use a process-based peatland carbon and water cycle mo…

  • A global fingerprint of macro-scale changes in urban structure from 1999 to 2009

    Open Access•Steve Frolking, Tom Milliman et al.•ARTICLE•Environmental Research Letters•2013

    Urban population now exceeds rural population globally, and 60–80% of global energy consumption by households, businesses, transportation, and industry occurs in urban areas. There is growing evidence that built-up infrastructure contributes to carbon emissions inertia, and that investments in infrastructure today have delayed climate cost in the future. Although the United Nations statistics include data on urban population by country and select…

  • Wetland chronosequence as a model of peatland development

    Open Access•Eeva-Stiina Tuittila, Eeva‐Stiina Tuittila et al.•ARTICLE•The Holocene•2012•Citada por: 1•Referências: 4

    Model validation experiments are fundamental to ensure that the peat growth models correspond with the diversity in nature. We evaluated the Holocene Peatland Model (HPM) simulation against the field observations from a chronosequence of peatlands and peat core data. The ongoing primary peatland formation on the isostatically rising coast of Finland offered us an exceptional opportunity to study the peatland succession along a spatial continuum a…

  • Harmonization of land-use scenarios for the period 1500–2100

    Open Access•G C Hurtt, Louise Chini et al.•ARTICLE•Climatic Change•2011

    In preparation for the fifth Assessment Report (AR5) of the Intergovernmental Panel on Climate Change (IPCC), the international community is developing new advanced Earth System Models (ESMs) to assess the combined effects of human activities (e.g. land use and fossil fuel emissions) on the carbon-climate system. In addition, four Representative Concentration Pathway (RCP) scenarios of the future (2005–2100) are being provided by four Integrated …

  • Exploring the relationship between peatland net carbon balance and apparent carbon accumulation rate at century to millennial time scales

    Open Access•Steve Frolking, Julie Talbot et al.•ARTICLE•The Holocene•2014•Citada por: 4•Referências: 3

    Each year, a peatland has an annual net carbon balance ( NCB), which can be positive (net uptake), zero or negative. Over centuries to millennia, this NCB accumulates as a peat profile. Contemporary peatlands can be sampled (cored), and the past apparent carbon accumulation rate ( aCAR) can be determined as the quantity of peat carbon in any particular dated interval down the core profile. We use a process-based peatland carbon and water cycle mo…

  • Wetland chronosequence as a model of peatland development

    Open Access•Eeva-Stiina Tuittila, Eeva‐Stiina Tuittila et al.•ARTICLE•The Holocene•2012•Citada por: 1•Referências: 4

    Model validation experiments are fundamental to ensure that the peat growth models correspond with the diversity in nature. We evaluated the Holocene Peatland Model (HPM) simulation against the field observations from a chronosequence of peatlands and peat core data. The ongoing primary peatland formation on the isostatically rising coast of Finland offered us an exceptional opportunity to study the peatland succession along a spatial continuum a…

  • Harmonization of land-use scenarios for the period 1500–2100

    Open Access•G C Hurtt, Louise Chini et al.•ARTICLE•Climatic Change•2011

    In preparation for the fifth Assessment Report (AR5) of the Intergovernmental Panel on Climate Change (IPCC), the international community is developing new advanced Earth System Models (ESMs) to assess the combined effects of human activities (e.g. land use and fossil fuel emissions) on the carbon-climate system. In addition, four Representative Concentration Pathway (RCP) scenarios of the future (2005–2100) are being provided by four Integrated …

  • Wetland chronosequence as a model of peatland development

    Open Access•Eeva-Stiina Tuittila, Eeva‐Stiina Tuittila et al.•ARTICLE•The Holocene•2012•Citada por: 1•Referências: 4

    Model validation experiments are fundamental to ensure that the peat growth models correspond with the diversity in nature. We evaluated the Holocene Peatland Model (HPM) simulation against the field observations from a chronosequence of peatlands and peat core data. The ongoing primary peatland formation on the isostatically rising coast of Finland offered us an exceptional opportunity to study the peatland succession along a spatial continuum a…

  • A global fingerprint of macro-scale changes in urban structure from 1999 to 2009

    Open Access•Steve Frolking, Tom Milliman et al.•ARTICLE•Environmental Research Letters•2013

    Urban population now exceeds rural population globally, and 60–80% of global energy consumption by households, businesses, transportation, and industry occurs in urban areas. There is growing evidence that built-up infrastructure contributes to carbon emissions inertia, and that investments in infrastructure today have delayed climate cost in the future. Although the United Nations statistics include data on urban population by country and select…

  • Exploring the relationship between peatland net carbon balance and apparent carbon accumulation rate at century to millennial time scales

    Open Access•Steve Frolking, Julie Talbot et al.•ARTICLE•The Holocene•2014•Citada por: 4•Referências: 3

    Each year, a peatland has an annual net carbon balance ( NCB), which can be positive (net uptake), zero or negative. Over centuries to millennia, this NCB accumulates as a peat profile. Contemporary peatlands can be sampled (cored), and the past apparent carbon accumulation rate ( aCAR) can be determined as the quantity of peat carbon in any particular dated interval down the core profile. We use a process-based peatland carbon and water cycle mo…

  • Focus on the impact of climate change on wetland ecosystems and carbon dynamics

    Open Access•Lei Meng, Nigel T Roulet et al.•ARTICLE•Environmental Research Letters•2016

    The renewed growth in atmospheric methane (CH4) since 2007 after a decade of stabilization has drawn much attention to its causes and future trends. Wetlands are the single largest source of atmospheric CH4. Understanding wetland ecosystems and carbon dynamics is critical to the estimation of global CH4 and carbon budgets. After approximately 7 years of CH4 related research following the renewed growth in atmospheric CH4, Environmental Research L…

  • Invisible water, visible impact

    Open Access•Esha Zaveri, Danielle Grogan et al.•ARTICLE•Environmental Research Letters•2016

    India is one of the world’s largest food producers, making the sustainability of its agricultural system of global significance. Groundwater irrigation underpins India’s agriculture, currently boosting crop production by enough to feed 170 million people. Groundwater overexploitation has led to drastic declines in groundwater levels, threatening to push this vital resource out of reach for millions of small-scale farmers who are the backbone of I…

  • Assessing the impacts of 1.5 °C global warming – simulation protocol of the Inter-Sectoral Impact Model Intercomparison Project (Isimip2b)

    Open Access•Katja Frieler, Stefan Lange et al.•ARTICLE•Geoscientific Model Development•2017

    In Paris, France, December 2015, the Conference of the Parties (COP) to the United Nations Framework Convention on Climate Change (UNFCCC) invited the Intergovernmental Panel on Climate Change (IPCC) to provide a special report in 2018 on the impacts of global warming of 1.5 °C above pre-industrial levels and related global greenhouse gas emission pathways. In Nairobi, Kenya, April 2016, the IPCC panel accepted the invitation. Here we describe th…

  • The use and re-use of unsustainable groundwater for irrigation

    Open Access•Danielle Grogan, Dominik Wisser et al.•ARTICLE•Environmental Research Letters•2017

    Depletion of groundwater aquifers across the globe has become a significant concern, as groundwater is an important and often unsustainable source of irrigation water. Simultaneously, the field of water resource management has seen a lively debate over the concepts and metrics used to assess the downstream re-use of agricultural runoff, with most studies focusing on surface water balances. Here, we bring these two lines of research together, reco…

  • Achieving sustainable irrigation water withdrawals

    Open Access•Jing Liu, Thomas W Hertel et al.•ARTICLE•Environmental Research Letters•2017

    Unsustainable water use challenges the capacity of water resources to ensure food security and continued growth of the economy. Adaptation policies targeting future water security can easily overlook its interaction with other sustainability metrics and unanticipated local responses to the larger-scale policy interventions. Using a global partial equilibrium grid-resolving model SIMPLE-G, and coupling it with the global Water Balance Model, we si…

  • Satellite Remote Sensing of Surface Urban Heat Islands

    Open Access•Decheng Zhou, Jingfeng Xiao et al.•ARTICLE•Remote Sensing•2018

    The surface urban heat island (SUHI), which represents the difference of land surface temperature (LST) in urban relativity to neighboring non-urban surfaces, is usually measured using satellite LST data. Over the last few decades, advancements of remote sensing along with spatial science have considerably increased the number and quality of SUHI studies that form the major body of the urban heat island (UHI) literature. This paper provides a sys…

  • Prompt active restoration of peatlands substantially reduces climate impact

    Open Access•Kelly A Nugent, Ian B Strachan et al.•ARTICLE•Environmental Research Letters•2019

    Restoration of peatlands after peat extraction could be a benefit to the climate system. However a multi-year ecosystem-scale assessment of net carbon (C) sequestration is needed. We investigate the climate impact of active peatland restoration (rewetting and revegetating) using a chronosequence of C gas exchange measurements across post-extraction Canadian peatlands. An atmospheric perturbation model computed the instantaneous change in radiativ…

  • Harmonization of global land use change and management for the period 850–2100 (LUH2) for CMIP6

    Open Access•G C Hurtt, Louise Chini et al.•ARTICLE•Geoscientific Model Development•2020

    Human land use activities have resulted in large changes to the biogeochemical and biophysical properties of the Earth's surface, with consequences for climate and other ecosystem services. In the future, land use activities are likely to expand and/or intensify further to meet growing demands for food, fiber, and energy. As part of the World Climate Research Program Coupled Model Intercomparison Project (CMIP6), the international community has d…

  • Satellite Monitoring of Natural Reforestation Efforts in China's Drylands

    Open Access•Cynthia Gerlein‐Safdi, G Keppel‐Aleks et al.•ARTICLE•One Earth•2020

Environmental Science (12 obras) · Geography (9 obras) · Climate change (7 obras) · Ecology (7 obras) · Environmental resource management (5 obras) · Geology (5 obras) · Greenhouse gas (5 obras) · Climatology (4 obras) · Peatlands and Wetlands Ecology (4 obras) · Agriculture (3 obras)

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