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Joe R Melton

Biographic Data

ID6822485
NAMEJoe R Melton
GIVEN NAMESJoe R
FAMILY NAMEMelton
SIGNATUREMELTON J R
AFFILIATIONSEnvironment and Climate Change Canada
ORCID0000-0002-9414-064X
VERIFIEDYes
TOTAL WORKS10
TOTAL CITATIONS0
AUTHOR COUNT10
EDITOR COUNT0
FIRST PUBLICATION YEAR2016
LATEST PUBLICATION YEAR2024
H-INDEX0
  • Critical needs to close monitoring gaps in pan-tropical wetland CH 4 emissions

    Open Access•Qing Zhu, Kunxiaojia Yuan et al.•ARTICLE•Environmental Research Letters•2024

    Global wetlands are the largest and most uncertain natural source of atmospheric methane (CH 4 ). The FLUXNET-CH 4 synthesis initiative has established a global network of flux tower infrastructure, offering valuable data products and fostering a dedicated community for the measurement and analysis of methane flux data. Existing studies using the FLUXNET-CH 4 Community Product v1.0 have provided invaluable insights into the drivers of ecosystem-t…

  • A boreal forest model benchmarking dataset for North America: A case study with the Canadian Land Surface Scheme Including Biogeochemical Cycles (CLASSIC)

    Open Access•Bo Qu, Alexandre Roy et al.•ARTICLE•Environmental Research Letters•2023

    Climate change is rapidly altering composition, structure, and functioning of the boreal biome, across North America often broadly categorized into ecoregions. The resulting complex changes in different ecoregions present a challenge for efforts to accurately simulate carbon dioxide (CO 2 ) and energy exchanges between boreal forests and the atmosphere with terrestrial ecosystem models (TEMs). Eddy covariance measurements provide valuable informa…

  • Global Carbon Budget 2021

    Open Access•Pierre Friedlingstein, Matthew W Jones et al.•ARTICLE•Earth System Science Data•2022

    Accurate assessment of anthropogenic carbon dioxide (CO2) emissions andtheir redistribution among the atmosphere, ocean, and terrestrial biospherein a changing climate is critical to better understand the global carboncycle, support the development of climate policies, and project futureclimate change. Here we describe and synthesize datasets and methodology toquantify the five major components of the global carbon budget and theiruncertainties. …

  • Five years of variability in the global carbon cycle: Comparing an estimate from the Orbiting Carbon Observatory-2 and process-based models

    Open Access•Zichong Chen, D N Huntzinger et al.•ARTICLE•Environmental Research Letters•2021

    Year-to-year variability in CO 2 fluxes can yield insight into climate-carbon cycle relationships, a fundamental yet uncertain aspect of the terrestrial carbon cycle. In this study, we use global observations from NASA’s Orbiting Carbon Observatory-2 (OCO-2) satellite for years 2015–2019 and a geostatistical inverse model to evaluate 5 years of interannual variability (IAV) in CO 2 fluxes and its relationships with environmental drivers. OCO-2 la…

  • The Global Methane Budget 2000–2017

    Open Access•Marielle Saunois, Ann R Stavert et al.•ARTICLE•Earth System Science Data•2020

    Understanding and quantifying the global methane (CH4) budget is important for assessing realistic pathways to mitigate climate change. Atmospheric emissions and concentrations of CH4 continue to increase, making CH4 the second most important human-influenced greenhouse gas in terms of climate forcing, after carbon dioxide (CO2). The relative importance of CH4 compared to CO2 depends on its shorter atmospheric lifetime, stronger warming potential…

  • Global Carbon Budget 2019

    Open Access•Pierre Friedlingstein, Matthew W Jones et al.•ARTICLE•Earth System Science Data•2019

    Accurate assessment of anthropogenic carbon dioxide (CO2) emissions andtheir redistribution among the atmosphere, ocean, and terrestrial biosphere– the “global carbon budget” – is important to better understand theglobal carbon cycle, support the development of climate policies, andproject future climate change. Here we describe data sets and methodology toquantify the five major components of the global carbon budget and theiruncertainties. Foss…

  • Wetland Biogeography

    Open Access•Joe R Melton•CHAPTER•International Encyclopedia of…•2017

    Wetlands are a unique ecosystem adapted to conditions of saturated soils that connect upland and deep‐water ecosystems. Wetlands cover about 5–8% of the Earth's surface, but are disproportionately important in providing unique habitats for large numbers of plant and animal species, storing immense amounts of carbon, and providing ecosystem services such as flood mitigation, water quality improvement, and coastal protection. Despite the great bene…

  • A human-driven decline in global burned area

    Open Access•Niels Andela, Douglas C Morton et al.•ARTICLE•Science•2017

    Burn less, baby, burn less Humans have, and always have had, a major impact on wildfire activity, which is expected to increase in our warming world. Andela et al. use satellite data to show that, unexpectedly, global burned area declined by ∼25% over the past 18 years, despite the influence of climate. The decrease has been largest in savannas and grasslands because of agricultural expansion and intensification. The decline of burned area has co…

  • Global wetland contribution to 2000–2012 atmospheric methane growth rate dynamics

    Open Access•Benjamin Poulter, Philippe Bousquet et al.•ARTICLE•Environmental Research Letters•2017

    Increasing atmospheric methane (CH 4 ) concentrations have contributed to approximately 20% of anthropogenic climate change. Despite the importance of CH 4 as a greenhouse gas, its atmospheric growth rate and dynamics over the past two decades, which include a stabilization period (1999–2006), followed by renewed growth starting in 2007, remain poorly understood. We provide an updated estimate of CH 4 emissions from wetlands, the largest natural …

  • 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…

No prominent works on this page.

  • 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…

  • Wetland Biogeography

    Open Access•Joe R Melton•CHAPTER•International Encyclopedia of…•2017

    Wetlands are a unique ecosystem adapted to conditions of saturated soils that connect upland and deep‐water ecosystems. Wetlands cover about 5–8% of the Earth's surface, but are disproportionately important in providing unique habitats for large numbers of plant and animal species, storing immense amounts of carbon, and providing ecosystem services such as flood mitigation, water quality improvement, and coastal protection. Despite the great bene…

  • A human-driven decline in global burned area

    Open Access•Niels Andela, Douglas C Morton et al.•ARTICLE•Science•2017

    Burn less, baby, burn less Humans have, and always have had, a major impact on wildfire activity, which is expected to increase in our warming world. Andela et al. use satellite data to show that, unexpectedly, global burned area declined by ∼25% over the past 18 years, despite the influence of climate. The decrease has been largest in savannas and grasslands because of agricultural expansion and intensification. The decline of burned area has co…

  • Global wetland contribution to 2000–2012 atmospheric methane growth rate dynamics

    Open Access•Benjamin Poulter, Philippe Bousquet et al.•ARTICLE•Environmental Research Letters•2017

    Increasing atmospheric methane (CH 4 ) concentrations have contributed to approximately 20% of anthropogenic climate change. Despite the importance of CH 4 as a greenhouse gas, its atmospheric growth rate and dynamics over the past two decades, which include a stabilization period (1999–2006), followed by renewed growth starting in 2007, remain poorly understood. We provide an updated estimate of CH 4 emissions from wetlands, the largest natural …

  • Global Carbon Budget 2019

    Open Access•Pierre Friedlingstein, Matthew W Jones et al.•ARTICLE•Earth System Science Data•2019

    Accurate assessment of anthropogenic carbon dioxide (CO2) emissions andtheir redistribution among the atmosphere, ocean, and terrestrial biosphere– the “global carbon budget” – is important to better understand theglobal carbon cycle, support the development of climate policies, andproject future climate change. Here we describe data sets and methodology toquantify the five major components of the global carbon budget and theiruncertainties. Foss…

  • The Global Methane Budget 2000–2017

    Open Access•Marielle Saunois, Ann R Stavert et al.•ARTICLE•Earth System Science Data•2020

    Understanding and quantifying the global methane (CH4) budget is important for assessing realistic pathways to mitigate climate change. Atmospheric emissions and concentrations of CH4 continue to increase, making CH4 the second most important human-influenced greenhouse gas in terms of climate forcing, after carbon dioxide (CO2). The relative importance of CH4 compared to CO2 depends on its shorter atmospheric lifetime, stronger warming potential…

  • Five years of variability in the global carbon cycle: Comparing an estimate from the Orbiting Carbon Observatory-2 and process-based models

    Open Access•Zichong Chen, D N Huntzinger et al.•ARTICLE•Environmental Research Letters•2021

    Year-to-year variability in CO 2 fluxes can yield insight into climate-carbon cycle relationships, a fundamental yet uncertain aspect of the terrestrial carbon cycle. In this study, we use global observations from NASA’s Orbiting Carbon Observatory-2 (OCO-2) satellite for years 2015–2019 and a geostatistical inverse model to evaluate 5 years of interannual variability (IAV) in CO 2 fluxes and its relationships with environmental drivers. OCO-2 la…

  • Global Carbon Budget 2021

    Open Access•Pierre Friedlingstein, Matthew W Jones et al.•ARTICLE•Earth System Science Data•2022

    Accurate assessment of anthropogenic carbon dioxide (CO2) emissions andtheir redistribution among the atmosphere, ocean, and terrestrial biospherein a changing climate is critical to better understand the global carboncycle, support the development of climate policies, and project futureclimate change. Here we describe and synthesize datasets and methodology toquantify the five major components of the global carbon budget and theiruncertainties. …

  • A boreal forest model benchmarking dataset for North America: A case study with the Canadian Land Surface Scheme Including Biogeochemical Cycles (CLASSIC)

    Open Access•Bo Qu, Alexandre Roy et al.•ARTICLE•Environmental Research Letters•2023

    Climate change is rapidly altering composition, structure, and functioning of the boreal biome, across North America often broadly categorized into ecoregions. The resulting complex changes in different ecoregions present a challenge for efforts to accurately simulate carbon dioxide (CO 2 ) and energy exchanges between boreal forests and the atmosphere with terrestrial ecosystem models (TEMs). Eddy covariance measurements provide valuable informa…

  • Critical needs to close monitoring gaps in pan-tropical wetland CH 4 emissions

    Open Access•Qing Zhu, Kunxiaojia Yuan et al.•ARTICLE•Environmental Research Letters•2024

    Global wetlands are the largest and most uncertain natural source of atmospheric methane (CH 4 ). The FLUXNET-CH 4 synthesis initiative has established a global network of flux tower infrastructure, offering valuable data products and fostering a dedicated community for the measurement and analysis of methane flux data. Existing studies using the FLUXNET-CH 4 Community Product v1.0 have provided invaluable insights into the drivers of ecosystem-t…

Environmental Science (10 works) · Atmospheric and Environmental Gas Dynamics (8 works) · Atmospheric sciences (6 works) · Climatology (6 works) · Ecosystem (6 works) · Geography (5 works) · Atmospheric chemistry and aerosols (4 works) · Climate change (4 works) · Ecology (4 works) · Geology (4 works)

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