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Kees Klein Goldewijk

Dados Biográficos

ID6284616
NOMEKees Klein Goldewijk
PRENOMESKees Klein
SOBRENOMEGoldewijk
ASSINATURAGOLDEWIJK K K
AFILIAÇÕESNetherlands Environmental Assessment Agency
ORCID0000-0003-2714-7507
VERIFICADOSim
TOTAL DE OBRAS23
TOTAL DE CITAÇÕES128
TOTAL COMO AUTOR23
TOTAL COMO EDITOR0
PRIMEIRO ANO DE PUBLICAÇÃO2001
ANO MAIS RECENTE DE PUBLICAÇÃO2023
ÍNDICE H4
  • Global Carbon Budget 2023

    Open Access•Pierre Friedlingstein, Mike O’Sullivan et al.•ARTICLE•Earth System Science Data•2023

    Accurate assessment of anthropogenic carbon dioxide (CO2) emissions and their redistribution among the atmosphere, ocean, and terrestrial biosphere in a changing climate is critical to better understand the global carbon cycle, support the development of climate policies, and project future climate change. Here we describe and synthesize data sets and methodology to quantify the five major components of the global carbon budget and their uncertai…

  • 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. …

  • Global Carbon Budget 2022

    Open Access•Pierre Friedlingstein, Mike O’Sullivan 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 data sets and methodologies toquantify the five major components of the global carbon budget and theiruncertaintie…

  • People have shaped most of terrestrial nature for at least 12,000 years

    Open Access•Erle C Ellis, Nicolas Gauthier et al.•ARTICLE•Proceedings of the National…•2021

    Significance The current biodiversity crisis is often depicted as a struggle to preserve untouched habitats. Here, we combine global maps of human populations and land use over the past 12,000 y with current biodiversity data to show that nearly three quarters of terrestrial nature has long been shaped by diverse histories of human habitation and use by Indigenous and traditional peoples. With rare exceptions, current biodiversity losses are caus…

  • A multi-data assessment of land use and land cover emissions from Brazil during 2000–2019

    Open Access•Thais M Rosan, Kees Klein Goldewijk et al.•ARTICLE•Environmental Research Letters•2021

    Brazil is currently the largest contributor of land use and land cover change (LULCC) carbon dioxide net emissions worldwide, representing 17%–29% of the global total. There is, however, a lack of agreement among different methodologies on the magnitude and trends in LULCC emissions and their geographic distribution. Here we perform an evaluation of LULCC datasets for Brazil, including those used in the annual global carbon budget (GCB), and nati…

  • 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…

  • 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…

  • 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…

  • Anthropogenic land use estimates for the Holocene – Hyde 3.2

    Open Access•Kees Klein Goldewijk, Arthur Beusen et al.•ARTICLE•Earth System Science Data•2017

    This paper presents an update and extension of HYDE, the History Database of the Global Environment (HYDE version 3.2). HYDE is an internally consistent combination of historical population estimates and allocation algorithms with time-dependent weighting maps for land use. Categories include cropland, with new distinctions for irrigated and rain-fed crops (other than rice) and irrigated and rain-fed rice. Grazing lands are also provided, divided…

  • 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…

  • Simulated carbon emissions from land-use change are substantially enhanced by accounting for agricultural management

    Open Access•Thomas A M Pugh, Almut Arneth et al.•ARTICLE•Environmental Research Letters•2015

    It is over three decades since a large terrestrial carbon sink (S T ) was first reported. The magnitude of the net sink is now relatively well known, and its importance for dampening atmospheric CO 2 accumulation, and hence climate change, widely recognised. But the contributions of underlying processes are not well defined, particularly the role of emissions from land-use change (E LUC ) versus the biospheric carbon uptake (S L ; S T =S L -E LUC…

  • Exploring global changes in nitrogen and phosphorus cycles in agriculture induced by livestock production over the 1900–2050 period

    Open Access•Lex Bouwman, Kees Klein Goldewijk et al.•ARTICLE•Proceedings of the National…•2013

    Crop-livestock production systems are the largest cause of human alteration of the global nitrogen (N) and phosphorus (P) cycles. Our comprehensive spatially explicit inventory of N and P budgets in livestock and crop production systems shows that in the beginning of the 20th century, nutrient budgets were either balanced or surpluses were small; between 1900 and 1950, global soil N surplus almost doubled to 36 trillion grams (Tg)·y −1 and P surp…

  • Used planet

    Open Access•Erle C Ellis, Jed O Kaplan et al.•ARTICLE•Proceedings of the National…•2013

    Human use of land has transformed ecosystem pattern and process across most of the terrestrial biosphere, a global change often described as historically recent and potentially catastrophic for both humanity and the biosphere. Interdisciplinary paleoecological, archaeological, and historical studies challenge this view, indicating that land use has been extensive and sustained for millennia in some regions and that recent trends may represent as …

  • Rcp2.6

    Open Access•Detlef P Van Vuuren, Elke Stehfest et al.•ARTICLE•Climatic Change•2011

    The RCP2.6 emission and concentration pathway is representative of the literature on mitigation scenarios aiming to limit the increase of global mean temperature to 2°C. These scenarios form the low end of the scenario literature in terms of emissions and radiative forcing. They often show negative emissions from energy use in the second half of the 21st century. The RCP2.6 scenario is shown to be technically feasible in the IMAGE integrated asse…

  • 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 …

  • The Hyde 3.1 spatially explicit database of human‐induced global land‐use change over the past 12,000 years

    Open Access•Kees Klein Goldewijk, Arthur Beusen et al.•ARTICLE•Global Ecology and Biogeography•2011

    Aim This paper presents a tool for long‐term global change studies; it is an update of the History Database of the Global Environment (HYDE) with estimates of some of the underlying demographic and agricultural driving factors. Methods Historical population, cropland and pasture statistics are combined with satellite information and specific allocation algorithms (which change over time) to create spatially explicit maps, which are fully consiste…

  • Land use/land cover changes and climate

    Open Access•Roger A Pielke, A J Pitman et al.•ARTICLE•Wiley Interdisciplinary Reviews…•2011•Citada por: 17•Referências: 5

    This article summarizes the changes in landscape structure because of human land management over the last several centuries, and using observed and modeled data, documents how these changes have altered biogeophysical and biogeochemical surface fluxes on the local, mesoscale, and regional scales. Remaining research issues are presented including whether these landscape changes alter large‐scale atmospheric circulation patterns far from where the …

  • Anthropogenic transformation of the biomes, 1700 to 2000

    Open Access•Erle C Ellis, Kees Klein Goldewijk et al.•ARTICLE•Global Ecology and Biogeography•2010

    Aim To map and characterize anthropogenic transformation of the terrestrial biosphere before and during the Industrial Revolution, from 1700 to 2000. Location Global. Methods Anthropogenic biomes (anthromes) were mapped for 1700, 1800, 1900 and 2000 using a rule‐based anthrome classification model applied to gridded global data for human population density and land use. Anthropogenic transformation of terrestrial biomes was then characterized by …

  • Holocene carbon emissions as a result of anthropogenic land cover change

    Open Access•Jed O Kaplan, Kristen M Krumhardt et al.•ARTICLE•The Holocene•2010•Citada por: 43•Referências: 26

    Humans have altered the Earth’s land surface since the Paleolithic mainly by clearing woody vegetation first to improve hunting and gathering opportunities, and later to provide agricultural cropland. In the Holocene, agriculture was established on nearly all continents and led to widespread modification of terrestrial ecosystems. To quantify the role that humans played in the global carbon cycle over the Holocene, we developed a new, annually re…

  • Long-term dynamic modeling of global population and built-up area in a spatially explicit way

    Open Access•Kees Klein Goldewijk, Arthur Beusen et al.•ARTICLE•The Holocene•2010•Citada por: 46•Referências: 11

    This paper describes a tool for long-term global change studies; it is an update of the History Database of the Global Environment (HYDE) with estimates of some of the underlying demographic driving factors of global change. We estimate total and urban/rural population numbers, densities and fractions (including built-up area) for the Holocene, roughly the period 10 000 BC to AD 2000 with a spatial resolution of 5 min longitude/latitude. With a t…

  • Three Centuries of Global Population Growth

    Open Access•Kees Klein Goldewijk•ARTICLE•Population and Environment•2005•Citada por: 4•Referências: 7

  • Land cover change over the last three centuries due to human activities

    Open Access•Kees Klein Goldewijk, Navin Ramankutty•ARTICLE•GeoJournal•2004•Citada por: 18•Referências: 4

  • Estimating global land use change over the past 300 years

    Open Access•Kees Klein Goldewijk•ARTICLE•Global Biogeochemical Cycles•2001

    Testing against historical data is an important step for validating integrated models of global environmental change. Owing to long time lags in the climate system, these models should aim the simulation of the land use dynamics for long periods, i.e., spanning decades up to a century. Developing such models requires understanding of past and current trends and is therefore strongly data dependent. For this purpose, a history database of the glob…

  • Long-term dynamic modeling of global population and built-up area in a spatially explicit way

    Open Access•Kees Klein Goldewijk, Arthur Beusen et al.•ARTICLE•The Holocene•2010•Citada por: 46•Referências: 11

    This paper describes a tool for long-term global change studies; it is an update of the History Database of the Global Environment (HYDE) with estimates of some of the underlying demographic driving factors of global change. We estimate total and urban/rural population numbers, densities and fractions (including built-up area) for the Holocene, roughly the period 10 000 BC to AD 2000 with a spatial resolution of 5 min longitude/latitude. With a t…

  • Holocene carbon emissions as a result of anthropogenic land cover change

    Open Access•Jed O Kaplan, Kristen M Krumhardt et al.•ARTICLE•The Holocene•2010•Citada por: 43•Referências: 26

    Humans have altered the Earth’s land surface since the Paleolithic mainly by clearing woody vegetation first to improve hunting and gathering opportunities, and later to provide agricultural cropland. In the Holocene, agriculture was established on nearly all continents and led to widespread modification of terrestrial ecosystems. To quantify the role that humans played in the global carbon cycle over the Holocene, we developed a new, annually re…

  • Land cover change over the last three centuries due to human activities

    Open Access•Kees Klein Goldewijk, Navin Ramankutty•ARTICLE•GeoJournal•2004•Citada por: 18•Referências: 4

  • Land use/land cover changes and climate

    Open Access•Roger A Pielke, A J Pitman et al.•ARTICLE•Wiley Interdisciplinary Reviews…•2011•Citada por: 17•Referências: 5

    This article summarizes the changes in landscape structure because of human land management over the last several centuries, and using observed and modeled data, documents how these changes have altered biogeophysical and biogeochemical surface fluxes on the local, mesoscale, and regional scales. Remaining research issues are presented including whether these landscape changes alter large‐scale atmospheric circulation patterns far from where the …

  • Three Centuries of Global Population Growth

    Open Access•Kees Klein Goldewijk•ARTICLE•Population and Environment•2005•Citada por: 4•Referências: 7

  • Estimating global land use change over the past 300 years

    Open Access•Kees Klein Goldewijk•ARTICLE•Global Biogeochemical Cycles•2001

    Testing against historical data is an important step for validating integrated models of global environmental change. Owing to long time lags in the climate system, these models should aim the simulation of the land use dynamics for long periods, i.e., spanning decades up to a century. Developing such models requires understanding of past and current trends and is therefore strongly data dependent. For this purpose, a history database of the glob…

  • Land cover change over the last three centuries due to human activities

    Open Access•Kees Klein Goldewijk, Navin Ramankutty•ARTICLE•GeoJournal•2004•Citada por: 18•Referências: 4

  • Three Centuries of Global Population Growth

    Open Access•Kees Klein Goldewijk•ARTICLE•Population and Environment•2005•Citada por: 4•Referências: 7

  • Anthropogenic transformation of the biomes, 1700 to 2000

    Open Access•Erle C Ellis, Kees Klein Goldewijk et al.•ARTICLE•Global Ecology and Biogeography•2010

    Aim To map and characterize anthropogenic transformation of the terrestrial biosphere before and during the Industrial Revolution, from 1700 to 2000. Location Global. Methods Anthropogenic biomes (anthromes) were mapped for 1700, 1800, 1900 and 2000 using a rule‐based anthrome classification model applied to gridded global data for human population density and land use. Anthropogenic transformation of terrestrial biomes was then characterized by …

  • Holocene carbon emissions as a result of anthropogenic land cover change

    Open Access•Jed O Kaplan, Kristen M Krumhardt et al.•ARTICLE•The Holocene•2010•Citada por: 43•Referências: 26

    Humans have altered the Earth’s land surface since the Paleolithic mainly by clearing woody vegetation first to improve hunting and gathering opportunities, and later to provide agricultural cropland. In the Holocene, agriculture was established on nearly all continents and led to widespread modification of terrestrial ecosystems. To quantify the role that humans played in the global carbon cycle over the Holocene, we developed a new, annually re…

  • Long-term dynamic modeling of global population and built-up area in a spatially explicit way

    Open Access•Kees Klein Goldewijk, Arthur Beusen et al.•ARTICLE•The Holocene•2010•Citada por: 46•Referências: 11

    This paper describes a tool for long-term global change studies; it is an update of the History Database of the Global Environment (HYDE) with estimates of some of the underlying demographic driving factors of global change. We estimate total and urban/rural population numbers, densities and fractions (including built-up area) for the Holocene, roughly the period 10 000 BC to AD 2000 with a spatial resolution of 5 min longitude/latitude. With a t…

  • Rcp2.6

    Open Access•Detlef P Van Vuuren, Elke Stehfest et al.•ARTICLE•Climatic Change•2011

    The RCP2.6 emission and concentration pathway is representative of the literature on mitigation scenarios aiming to limit the increase of global mean temperature to 2°C. These scenarios form the low end of the scenario literature in terms of emissions and radiative forcing. They often show negative emissions from energy use in the second half of the 21st century. The RCP2.6 scenario is shown to be technically feasible in the IMAGE integrated asse…

  • 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 …

  • The Hyde 3.1 spatially explicit database of human‐induced global land‐use change over the past 12,000 years

    Open Access•Kees Klein Goldewijk, Arthur Beusen et al.•ARTICLE•Global Ecology and Biogeography•2011

    Aim This paper presents a tool for long‐term global change studies; it is an update of the History Database of the Global Environment (HYDE) with estimates of some of the underlying demographic and agricultural driving factors. Methods Historical population, cropland and pasture statistics are combined with satellite information and specific allocation algorithms (which change over time) to create spatially explicit maps, which are fully consiste…

  • Land use/land cover changes and climate

    Open Access•Roger A Pielke, A J Pitman et al.•ARTICLE•Wiley Interdisciplinary Reviews…•2011•Citada por: 17•Referências: 5

    This article summarizes the changes in landscape structure because of human land management over the last several centuries, and using observed and modeled data, documents how these changes have altered biogeophysical and biogeochemical surface fluxes on the local, mesoscale, and regional scales. Remaining research issues are presented including whether these landscape changes alter large‐scale atmospheric circulation patterns far from where the …

  • Exploring global changes in nitrogen and phosphorus cycles in agriculture induced by livestock production over the 1900–2050 period

    Open Access•Lex Bouwman, Kees Klein Goldewijk et al.•ARTICLE•Proceedings of the National…•2013

    Crop-livestock production systems are the largest cause of human alteration of the global nitrogen (N) and phosphorus (P) cycles. Our comprehensive spatially explicit inventory of N and P budgets in livestock and crop production systems shows that in the beginning of the 20th century, nutrient budgets were either balanced or surpluses were small; between 1900 and 1950, global soil N surplus almost doubled to 36 trillion grams (Tg)·y −1 and P surp…

  • Used planet

    Open Access•Erle C Ellis, Jed O Kaplan et al.•ARTICLE•Proceedings of the National…•2013

    Human use of land has transformed ecosystem pattern and process across most of the terrestrial biosphere, a global change often described as historically recent and potentially catastrophic for both humanity and the biosphere. Interdisciplinary paleoecological, archaeological, and historical studies challenge this view, indicating that land use has been extensive and sustained for millennia in some regions and that recent trends may represent as …

  • Simulated carbon emissions from land-use change are substantially enhanced by accounting for agricultural management

    Open Access•Thomas A M Pugh, Almut Arneth et al.•ARTICLE•Environmental Research Letters•2015

    It is over three decades since a large terrestrial carbon sink (S T ) was first reported. The magnitude of the net sink is now relatively well known, and its importance for dampening atmospheric CO 2 accumulation, and hence climate change, widely recognised. But the contributions of underlying processes are not well defined, particularly the role of emissions from land-use change (E LUC ) versus the biospheric carbon uptake (S L ; S T =S L -E LUC…

  • 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…

  • Anthropogenic land use estimates for the Holocene – Hyde 3.2

    Open Access•Kees Klein Goldewijk, Arthur Beusen et al.•ARTICLE•Earth System Science Data•2017

    This paper presents an update and extension of HYDE, the History Database of the Global Environment (HYDE version 3.2). HYDE is an internally consistent combination of historical population estimates and allocation algorithms with time-dependent weighting maps for land use. Categories include cropland, with new distinctions for irrigated and rain-fed crops (other than rice) and irrigated and rain-fed rice. Grazing lands are also provided, divided…

  • 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…

  • 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…

  • 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…

  • People have shaped most of terrestrial nature for at least 12,000 years

    Open Access•Erle C Ellis, Nicolas Gauthier et al.•ARTICLE•Proceedings of the National…•2021

    Significance The current biodiversity crisis is often depicted as a struggle to preserve untouched habitats. Here, we combine global maps of human populations and land use over the past 12,000 y with current biodiversity data to show that nearly three quarters of terrestrial nature has long been shaped by diverse histories of human habitation and use by Indigenous and traditional peoples. With rare exceptions, current biodiversity losses are caus…

  • A multi-data assessment of land use and land cover emissions from Brazil during 2000–2019

    Open Access•Thais M Rosan, Kees Klein Goldewijk et al.•ARTICLE•Environmental Research Letters•2021

    Brazil is currently the largest contributor of land use and land cover change (LULCC) carbon dioxide net emissions worldwide, representing 17%–29% of the global total. There is, however, a lack of agreement among different methodologies on the magnitude and trends in LULCC emissions and their geographic distribution. Here we perform an evaluation of LULCC datasets for Brazil, including those used in the annual global carbon budget (GCB), and nati…

  • 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. …

  • Global Carbon Budget 2022

    Open Access•Pierre Friedlingstein, Mike O’Sullivan 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 data sets and methodologies toquantify the five major components of the global carbon budget and theiruncertaintie…

  • Global Carbon Budget 2023

    Open Access•Pierre Friedlingstein, Mike O’Sullivan et al.•ARTICLE•Earth System Science Data•2023

    Accurate assessment of anthropogenic carbon dioxide (CO2) emissions and their redistribution among the atmosphere, ocean, and terrestrial biosphere in a changing climate is critical to better understand the global carbon cycle, support the development of climate policies, and project future climate change. Here we describe and synthesize data sets and methodology to quantify the five major components of the global carbon budget and their uncertai…

Environmental Science (21 obras) · Climate change (18 obras) · Land use (15 obras) · Geography (14 obras) · Global change (13 obras) · Ecology (12 obras) · Climatology (11 obras) · Land use, land-use change and forestry (11 obras) · Atmospheric and Environmental Gas Dynamics (10 obras) · Greenhouse gas (10 obras)

Ethnos_APP • Projeto Open Source • Licença MIT • Frontend v2.0.0 • Privacidade e Cookies • Documentação da API: api.ethnos.app/docs • Código da API: GitHub • DOI: 10.5281/zenodo.17049435 • Código do Frontend: GitHub • DOI: 10.5281/zenodo.17050053 • cruz.rio.br • Expectantes Misericordiae