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Recent global land cover dynamics and implications for soil erosion and carbon losses from deforestation

Bibliographic Data

ID7635429
AuthorsXiangping Hu (0000-0003-3468-8248, Norwegian University of Science and Technology, corresponding author), Jan Sandstad Næ (0000-0003-3166-913X, Norwegian University of Science and Technology), Cristina Maria Iordan (0000-0001-9975-2656, Norwegian University of Science and Technology), Bo Huang (0000-0001-6073-432X, Norwegian University of Science and Technology), Wenwu Zhao (0000-0001-5342-354X, Beijing Normal University), Francesco Cherubini (0000-0002-7147-4292, Norwegian University of Science and Technology)
Year2021
Volume34
Pages100291
Publication date2021-06-01
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueAnthropocene (JOURNAL)
Journal identifiersISSN: 2213-3054
PublisherElsevier BV (PUBLISHER)
DOI10.1016/j.ancene.2021.100291
OpenAlexW3150991242
LanguageEN
Citations received8
References cited96

Changes in land cover are increasingly affecting land surface properties and provision of ecosystem services. Understanding recent historical land cover changes and their interlinkages with key environmental processes is instrumental to better support strategies for land-use management. The recently released products from the European Space Agency and Copernicus Climate Change Service contain high-resolution (300 m) time series of global land cover maps from 1992 to 2018. This study investigates the land transitions in these products and explores the effects on two key environmental aspects, namely, carbon losses from deforestation and soil erosion rates. We used a powerful server for big data analysis to retain the original spatial resolution of the datasets. We found 722 Mha (5.5 % of the total ice-free land surface) of gross land cover changes, which mainly involved transitions to and from forest/agriculture. Cropland gains are 205 Mha and losses 126 Mha (net expansion of 79 Mha). Deforestation occurring in 242 Mha was mainly caused by agricultural expansion, whereas 196 Mha were afforested. Settlements show the largest relative expansion (44 Mha, +210 %), of which 67 % (29 Mha) occurred at expenses of agricultural land. Deforestation caused 12.3 (7.6/14.2) Gt Carbon losses from below- and aboveground biomass from 2010 to 2018, corresponding to 1.5 (1.0/1.8) Gt Carbon per year. Global agriculture activities have increased total soil erosion of 3.2 Gt and soil erosion rates of 0.22 Mg ha−1 yr−1 in the period 2001–2012, especially in tropical regions. The identified land transitions and changes in key environmental processes reflect a human-dominated Earth system and the indirect effects of climate change on land cover, especially in boreal ecosystems

Agricultural land · Agriculture · Agroforestry · Climate change · Deforestation (computer science · Ecosystem · Ecosystem services · Erosion · Geography · Greenhouse gas · Hydrology (agriculture · Land cover · Land management · Land use · Land use, land-use change and forestry · Soil carbon · Soil water · Aeolian processes and effects · Environmental Science · Land Use and Ecosystem Services · Soil erosion and sediment transport · Ecology · Forestry · Geology · Soil Science

  • Impact of Regenerative Agriculture on Soil Erosion

    Open Access•Ashwitha Kodaparthi, Pabbati Ranjit et al.•Prospects for Soil Regeneration…•2024

  • Modelling Global Deforestation Using Spherical Geographic Automata Approach

    Open Access•Bright Addae, Suzana Dragićević•ISPRS International Journal of…•2023

  • Enhancing Soil Aggregation and Water Retention by Applying Kaolinite Clay to Post‐Tin‐Mined Land on Belitung Island, Indonesia

    Open Access•Hirmas Fuady Putra, Yasushi Mori•Land Degradation and Development•2026

  • Impacts of Climate Change on Food Security

    Open Access•Nihal GENÇ, H Ebru Colak•Land Degradation and Development•2026

  • Strong collaborative governance networks support effective Forest Stewardship Council-certified community-based forest management

    Open Access•L F Henriksen, Kelvin Kamnde et al.•Global Environmental Change•2023

  • Trends in the succession of synanthropic vegetation on a reclaimed landfill in Poland

    Open Access•Jan Winkler, E Koda et al.•Anthropocene•2021

  • Centenary patterns of soil erosion and future trends in Godavari River Basin

    Open Access•A K Jessica, Chandni Thakur et al.•Quaternary International•2026

  • Human-induced landscape modification in the in the last two centuries in the Po delta plain (Northern Italy)

    Open Access•Laura Bruno, Matteo Meli et al.•Anthropocene•2024

  • Biophysical climate impacts of recent changes in global forest cover

    Open Access•Ramdane Alkama, Alessandro Cescatti•Science•2016

  • 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.•Geoscientific Model Development•2020

  • Global forest loss disproportionately erodes biodiversity in intact landscapes

    Open Access•Matthew G Betts, Christopher Wolf et al.•Nature•2017

  • Baseline Map of Carbon Emissions from Deforestation in Tropical Regions

    Open Access•Nancy L Harris, Sandra Brown et al.•Science•2012

  • Global and regional fluxes of carbon from land use and land cover change 1850–2015

    Open Access•R A Houghton, Alexander A Nassikas•Global Biogeochemical Cycles•2017

  • Global Carbon Budget 2016

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

  • Soil carbon stocks and land use change

    Open Access•L B Guo, Roger M Gifford•Global Change Biology•2002

  • An assessment of the global impact of 21st century land use change on soil erosion

    Open Access•Pasquale Borrelli, David A Robinson et al.•Nature Communications•2017

  • Anthropogenic land use estimates for the Holocene – Hyde 3.2

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

  • Dynamics of global forest area

    Open Access•Rodney J Keenan, Gregory A Reams et al.•Forest Ecology and Management•2015

  • The emergence of land change science for global environmental change and sustainability

    Open Access•B L Turner, Eric F Lambin et al.•Proceedings of the National…•2007

  • Challenges in using land use and land cover data for global change studies

    Open Access•Peter H Verburg, Kathleen Neumann et al.•Global Change Biology•2011

  • Land use and climate change impacts on global soil erosion by water (2015-2070)

    Open Access•Pasquale Borrelli, David A Robinson et al.•Proceedings of the National…•2020

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

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

  • Anthropogenic disturbance in tropical forests can double biodiversity loss from deforestation

    Open Access•Jos Barlow, Gareth D Lennox et al.•Nature•2016

  • Forests and Climate Change

    Open Access•Gordon B Bonan•Science•2008

  • A Large and Persistent Carbon Sink in the World’s Forests

    Open Access•Yude Pan, Richard A Birdsey et al.•Science•2011

  • Global Carbon Budget 2019

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

  • The carbon balance of terrestrial ecosystems in China

    Open Access•Shilong Piao, Jingyun Fang et al.•Nature•2009

  • The impact of land use/land cover change on ecosystem services in the central highlands of Ethiopia

    Open Access•Terefe Tolessa, Feyera Senbeta et al.•Ecosystem Services•2017

  • Global land change from 1982 to 2016

    Open Access•Xiao-Peng Song, Xiao‐Peng Song et al.•Nature•2018

  • Putting people in the map

    Open Access•Erle C Ellis, Navin Ramankutty•Frontiers in Ecology and the…•2008

  • Tropical forests are a net carbon source based on aboveground measurements of gain and loss

    Open Access•Alessandro Baccini, Wayne Walker et al.•Science•2017

  • Soil erosion and agricultural sustainability

    Open Access•David R Montgomery•Proceedings of the National…•2007

  • Impact of tropical land-use change on soil organic carbon stocks - a meta-analysis

    Open Access•Axel Don, JENS SCHUMACHER et al.•Global Change Biology•2011

  • Global forecasts of urban expansion to 2030 and direct impacts on biodiversity and carbon pools

    Open Access•Karen C Seto, Burak Güneralp et al.•Proceedings of the National…•2012

  • High-Resolution Global Maps of 21st-Century Forest Cover Change

    Open Access•Matthew C Hansen, Peter Potapov et al.•Science•2013

  • Global Consequences of Land Use

    Open Access•Jonathan A Foley, Ruth Defries et al.•Science•2005

  • Carbon emissions from cropland expansion in the United States

    Open Access•S Spawn, Tyler J Lark et al.•Environmental Research Letters•2019

  • Hotspots of land use change in Europe

    Open Access•Tobias Kuemmerle, Christian Levers et al.•Environmental Research Letters•2016

  • Quantifying the climate response to extreme land cover changes in Europe with a regional model

    Open Access•Francesco Cherubini, Bo Huang et al.•Environmental Research Letters•2018

  • The global cropland-sparing potential of high-yield farming

    Open Access•Christian Folberth, Nikolay Khabarov et al.•Nature Sustainability•2020

  • Divergent responses of soil organic carbon to afforestation

    Open Access•Songbai Hong, Guodong Yin et al.•Nature Sustainability•2020

  • Improved estimates of forest cover and loss in the Brazilian Amazon in 2000–2017

    Open Access•Yuanwei Qin, Xiangming Xiao et al.•Nature Sustainability•2019

  • The land–energy–water nexus of global bioenergy potentials from abandoned cropland

    Open Access•Jan Sandstad Næ, Otávio Cavalett et al.•Nature Sustainability•2021

  • Beneficial land use change

    Open Access•Oskar Englund, Pål Börjesson et al.•Global Environmental Change•2019

  • Local biophysical effects of land use and land cover change

    Open Access•Gregory Duveiller, L Caporaso et al.•Land Use Policy•2020

  • Spatiotemporal simulation of urban growth patterns using agent-based modeling

    Open Access•Jamal Jokar Arsanjani, Marco Helbich et al.•Cities•2013

  • Development of a cellular automata model using open source technologies for monitoring urbanisation in the global south

    Open Access•Jamal Jokar Arsanjani, Casper Samsø Fibæk et al.•Habitat International•2018

Unique citing works8
Citations per year1,6
Citation span2021 - 2026 (6)
Citation velocitycurrent
Highly citedNo
Citation typesNeutral: 8
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