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Tree cover lost each year, by what drove it

Hectares of tree cover lost each year since 2001, worldwide and in each country, split by the dominant driver of loss in each square kilometre: permanent agriculture, mining and energy, shifting cultivation, logging, wildfire, settlements and infrastructure, other natural disturbances, or unknown (WRI and Google DeepMind).

Latest value

5,728,093ha

Countries and territories (GADM's country codes, mapped to ISO 3166-1) and the world, which also includes areas GADM codes separately (XAD, Z01, Z06, Z07)., 2025. Version GFC-2025-v1.13, WRI table gadm__tcl__iso_change v20260424.

Tree cover lost each year, by what drove it (hectares)

200 values from 2001 to 2025. Lines: Permanent agriculture, Mining and energy (hard commodities), Shifting cultivation, Logging, Wildfire.
Show as a table
Tree cover lost each year, by what drove it, every value
PeriodDriverValue (ha)Status
2001Permanent agriculture5,226,765final
2002Permanent agriculture6,058,900final
2003Permanent agriculture5,376,986final
2004Permanent agriculture7,107,285final
2005Permanent agriculture7,015,916final
2006Permanent agriculture6,373,812final
2007Permanent agriculture6,805,989final
2008Permanent agriculture6,910,000final
2009Permanent agriculture7,128,415final
2010Permanent agriculture7,316,546final
2011Permanent agriculture6,565,878final
2012Permanent agriculture8,351,320final
2013Permanent agriculture5,776,978final
2014Permanent agriculture7,834,261final
2015Permanent agriculture6,005,136final
2016Permanent agriculture9,138,863final
2017Permanent agriculture9,176,258final
2018Permanent agriculture7,314,447final
2019Permanent agriculture6,794,960final
2020Permanent agriculture6,844,243final
2021Permanent agriculture6,649,785final
2022Permanent agriculture6,921,111final
2023Permanent agriculture7,007,805final
2024Permanent agriculture6,849,877final
2025Permanent agriculture5,728,093final
2001Mining and energy (hard commodities)69,339final
2002Mining and energy (hard commodities)84,100final
2003Mining and energy (hard commodities)63,416final
2004Mining and energy (hard commodities)107,122final
2005Mining and energy (hard commodities)117,769final
2006Mining and energy (hard commodities)130,597final
2007Mining and energy (hard commodities)164,549final
2008Mining and energy (hard commodities)164,154final
2009Mining and energy (hard commodities)183,434final
2010Mining and energy (hard commodities)177,650final
2011Mining and energy (hard commodities)209,586final
2012Mining and energy (hard commodities)271,602final
2013Mining and energy (hard commodities)160,694final
2014Mining and energy (hard commodities)265,718final
2015Mining and energy (hard commodities)198,770final
2016Mining and energy (hard commodities)291,901final
2017Mining and energy (hard commodities)301,801final
2018Mining and energy (hard commodities)262,485final
2019Mining and energy (hard commodities)247,454final
2020Mining and energy (hard commodities)243,286final
2021Mining and energy (hard commodities)243,236final
2022Mining and energy (hard commodities)271,173final
2023Mining and energy (hard commodities)318,342final
2024Mining and energy (hard commodities)306,904final
2025Mining and energy (hard commodities)282,238final
2001Shifting cultivation955,014final
2002Shifting cultivation1,057,450final
2003Shifting cultivation704,349final
2004Shifting cultivation919,731final
2005Shifting cultivation977,886final
2006Shifting cultivation1,026,490final
2007Shifting cultivation1,119,246final
2008Shifting cultivation1,038,841final
2009Shifting cultivation1,381,189final
2010Shifting cultivation1,417,776final
2011Shifting cultivation1,006,417final
2012Shifting cultivation1,357,916final
2013Shifting cultivation2,398,525final
2014Shifting cultivation3,116,839final
2015Shifting cultivation2,687,850final
2016Shifting cultivation3,714,669final
2017Shifting cultivation3,972,292final
2018Shifting cultivation3,297,577final
2019Shifting cultivation3,063,057final
2020Shifting cultivation3,221,712final
2021Shifting cultivation2,869,894final
2022Shifting cultivation2,792,236final
2023Shifting cultivation3,115,576final
2024Shifting cultivation2,976,546final
2025Shifting cultivation2,738,116final
2001Logging4,106,757final
2002Logging4,181,744final
2003Logging3,431,066final
2004Logging5,538,019final
2005Logging5,493,666final
2006Logging5,376,798final
2007Logging5,665,695final
2008Logging5,610,211final
2009Logging4,868,110final
2010Logging5,405,657final
2011Logging5,003,558final
2012Logging5,838,048final
2013Logging4,679,269final
2014Logging5,467,791final
2015Logging5,047,330final
2016Logging6,689,231final
2017Logging6,904,266final
2018Logging6,340,506final
2019Logging6,129,458final
2020Logging5,785,273final
2021Logging5,761,758final
2022Logging5,614,556final
2023Logging5,399,126final
2024Logging5,181,233final
2025Logging5,083,426final
2001Wildfire2,534,938final
2002Wildfire4,603,182final
2003Wildfire4,556,346final
2004Wildfire5,637,215final
2005Wildfire3,922,385final
2006Wildfire4,187,903final
2007Wildfire3,997,966final
2008Wildfire4,303,972final
2009Wildfire2,875,453final
2010Wildfire3,606,691final
2011Wildfire4,238,523final
2012Wildfire6,954,795final
2013Wildfire7,158,223final
2014Wildfire6,456,252final
2015Wildfire5,270,348final
2016Wildfire9,024,659final
2017Wildfire7,623,268final
2018Wildfire6,358,546final
2019Wildfire7,400,038final
2020Wildfire9,100,309final
2021Wildfire9,263,441final
2022Wildfire6,772,612final
2023Wildfire11,988,137final
2024Wildfire13,770,619final
2025Wildfire11,052,222final
2001Settlements and infrastructure166,913final
2002Settlements and infrastructure165,280final
2003Settlements and infrastructure144,017final
2004Settlements and infrastructure231,033final
2005Settlements and infrastructure235,808final
2006Settlements and infrastructure244,855final
2007Settlements and infrastructure249,174final
2008Settlements and infrastructure228,560final
2009Settlements and infrastructure202,435final
2010Settlements and infrastructure204,803final
2011Settlements and infrastructure180,782final
2012Settlements and infrastructure204,174final
2013Settlements and infrastructure138,039final
2014Settlements and infrastructure188,828final
2015Settlements and infrastructure150,980final
2016Settlements and infrastructure235,091final
2017Settlements and infrastructure271,359final
2018Settlements and infrastructure204,144final
2019Settlements and infrastructure194,619final
2020Settlements and infrastructure188,876final
2021Settlements and infrastructure189,004final
2022Settlements and infrastructure187,224final
2023Settlements and infrastructure165,734final
2024Settlements and infrastructure167,994final
2025Settlements and infrastructure175,083final
2001Other natural disturbances174,969final
2002Other natural disturbances202,400final
2003Other natural disturbances133,163final
2004Other natural disturbances263,390final
2005Other natural disturbances243,399final
2006Other natural disturbances220,142final
2007Other natural disturbances291,694final
2008Other natural disturbances260,939final
2009Other natural disturbances253,264final
2010Other natural disturbances312,723final
2011Other natural disturbances273,240final
2012Other natural disturbances359,988final
2013Other natural disturbances211,175final
2014Other natural disturbances296,740final
2015Other natural disturbances218,202final
2016Other natural disturbances528,559final
2017Other natural disturbances1,070,725final
2018Other natural disturbances940,347final
2019Other natural disturbances310,932final
2020Other natural disturbances379,852final
2021Other natural disturbances259,137final
2022Other natural disturbances225,597final
2023Other natural disturbances243,013final
2024Other natural disturbances318,013final
2025Other natural disturbances439,551final
2001Unknown118,489final
2002Unknown98,085final
2003Unknown64,899final
2004Unknown103,736final
2005Unknown90,002final
2006Unknown88,592final
2007Unknown92,110final
2008Unknown93,065final
2009Unknown98,422final
2010Unknown110,568final
2011Unknown99,783final
2012Unknown192,787final
2013Unknown118,837final
2014Unknown105,008final
2015Unknown42,223final
2016Unknown50,847final
2017Unknown56,750final
2018Unknown30,695final
2019Unknown32,166final
2020Unknown37,560final
2021Unknown34,213final
2022Unknown31,791final
2023Unknown15,613final
2024Unknown21,292final
2025Unknown29,826final
Calculated by Environment Dashboard from Hansen/UMD/Google/USGS/NASA (Global Forest Change v1.13), accessed through Global Nature Watch (WRI table gadm__tcl__iso_change v20260424) on 2026-10-05. Tree cover loss due to fire: UMD/GLAD (Tyukavina et al. 2022). Tree cover loss by dominant driver: WRI/Google DeepMind (Sims et al. 2025). Primary humid tropical forest: Turubanova et al. (2018). CC BY 4.0. Changes: Summed WRI's country table by country and year at a tree canopy cover in 2000 of at least 30 percent; world totals of primary forest loss and of loss by driver summed by Environment Dashboard. CC BY 4.0.

Where it comes from

Producer
University of Maryland GLAD lab with Google, USGS and NASA; tabulated and served by World Resources Institute · Tree cover loss, Global Forest Change v1.13 (via Global Nature Watch)
Version
GFC-2025-v1.13, WRI table gadm__tcl__iso_change v20260424
Fetched
2026-10-05 (automatically), 1,620 bytes
Fingerprint
sha256 79b791bcb241093320fc0e6297babf3c468e58027c31dc8213c328f68c46053e
Copies
No Wayback copy recorded yet.Our copy of the exact file
Cite the producer
Hansen, M. C., P. V. Potapov, R. Moore, M. Hancher, S. A. Turubanova, A. Tyukavina, D. Thau, S. V. Stehman, S. J. Goetz, T. R. Loveland, A. Kommareddy, A. Egorov, L. Chini, C. O. Justice, and J. R. G. Townshend. 2013. High-Resolution Global Maps of 21st-Century Forest Cover Change. Science 342 (15 November): 850-53. Data available on-line from: https://glad.earthengine.app/view/global-forest-change. Sims, M.J., R. Stanimirova, A. Raichuk, M. Neumann, J. Richter, F. Follett, J. MacCarthy, K. Lister, C. Randle, L. Sloat, E. Esipova, J. Jupiter, C. Stanton, D. Morris, C. M. Slay, D. Purves, and N. Harris. 2025. "Global Drivers of Forest Loss at 1 Km Resolution." Environmental Research Letters 20 (7): 074027. doi:10.1088/1748-9326/add606.
Producer
University of Maryland GLAD lab with Google, USGS and NASA; tabulated and served by World Resources Institute · Tree cover loss, Global Forest Change v1.13 (via Global Nature Watch)
Version
GFC-2025-v1.13, WRI table gadm__tcl__iso_change v20260424
Fetched
2026-10-05 (automatically), 1,703,978 bytes
Fingerprint
sha256 2e9dfe9bb94ea744f5f4178fe292ffacc0173caf50609cd1f9981106374a6c63
Copies
No Wayback copy recorded yet.Our copy of the exact file
Cite the producer
Hansen, M. C., P. V. Potapov, R. Moore, M. Hancher, S. A. Turubanova, A. Tyukavina, D. Thau, S. V. Stehman, S. J. Goetz, T. R. Loveland, A. Kommareddy, A. Egorov, L. Chini, C. O. Justice, and J. R. G. Townshend. 2013. High-Resolution Global Maps of 21st-Century Forest Cover Change. Science 342 (15 November): 850-53. Data available on-line from: https://glad.earthengine.app/view/global-forest-change. Sims, M.J., R. Stanimirova, A. Raichuk, M. Neumann, J. Richter, F. Follett, J. MacCarthy, K. Lister, C. Randle, L. Sloat, E. Esipova, J. Jupiter, C. Stanton, D. Morris, C. M. Slay, D. Purves, and N. Harris. 2025. "Global Drivers of Forest Loss at 1 Km Resolution." Environmental Research Letters 20 (7): 074027. doi:10.1088/1748-9326/add606.

What was done to it

  1. Read loss-drivers-country-annual: WRI's table gadm__tcl__iso_change v20260424 queried through the Global Forest Watch Data API with the SQL in the file's URL (https://data-api.globalforestwatch.org/dataset/gadm__tcl__iso_change/v20260424/download/csv?sql=SELECT%20iso%2C%20wri_google_tree_cover_loss_drivers__driver%2C%20umd_tree_cover_loss__year%2C%20SUM%28umd_tree_cover_loss__ha%29%20AS%20umd_tree_cover_loss__ha%20FROM%20data%20WHERE%20umd_tree_cover_density_2000__threshold%20%3D%2030%20GROUP%20BY%20iso%2C%20wri_google_tree_cover_loss_drivers__driver%2C%20umd_tree_cover_loss__year%20ORDER%20BY%20iso%2C%20wri_google_tree_cover_loss_drivers__driver%2C%20umd_tree_cover_loss__year), at a tree canopy cover in 2000 of at least 30 percent. Hectares as in the file, not rounded.

    Code: pipeline/src/envdash/transforms/nature/gfw_tree_cover_loss.py · code sha256 15a82e1f48690b7a… · inputs 79b791bcb241… 2e9dfe9bb94e…

  2. A country and year with no row in the file has no loss recorded for it; nothing is filled in.

    Code: pipeline/src/envdash/transforms/nature/gfw_tree_cover_loss.py · code sha256 15a82e1f48690b7a… · inputs 79b791bcb241… 2e9dfe9bb94e…

  3. Driver classes as WRI names them; "Hard commodities" is labelled "Mining and energy (hard commodities)" and "Settlements & Infrastructure" "Settlements and infrastructure". Each 1 km cell's loss is assigned to its one dominant driver (WRI/Google DeepMind, Sims et al. 2025).

    Code: pipeline/src/envdash/transforms/nature/gfw_tree_cover_loss.py · code sha256 15a82e1f48690b7a… · inputs 79b791bcb241… 2e9dfe9bb94e…

  4. World: the sum of every row of the file by year and driver, including the codes left out below. Checked that the drivers add up to loss-global-annual in every year, to within 0.01 ha.

    Code: pipeline/src/envdash/transforms/nature/gfw_tree_cover_loss.py · code sha256 15a82e1f48690b7a… · inputs 79b791bcb241… 2e9dfe9bb94e…

  5. Not published as countries: GADM codes with no entity in our table (XAD 80 ha; Z01 4,365 ha; Z06 555 ha; Z07 164,532 ha, all years together). Their loss is included in the world totals.

    Code: pipeline/src/envdash/transforms/nature/gfw_tree_cover_loss.py · code sha256 15a82e1f48690b7a… · inputs 79b791bcb241… 2e9dfe9bb94e…

What it covers

Geography
Countries and territories (GADM's country codes, mapped to ISO 3166-1) and the world, which also includes areas GADM codes separately (XAD, Z01, Z06, Z07).
Basis
Tree cover loss: stand-replacing disturbance, or the complete removal of tree cover canopy, of vegetation taller than 5 m, mapped each year from Landsat at 30 m (Hansen/UMD, Global Forest Change v1.13), where tree canopy cover was at least 30 percent in 2000. Loss is not deforestation: it includes plantation harvest, fire and natural disturbance, and regrowth is not subtracted. Method changes from 2011 and 2015 make early and late years less comparable. Drivers: the dominant driver of loss in each 1 km cell, 2001–2025, from a model trained on labelled samples (WRI/Google DeepMind, Sims et al. 2025). WRI counts permanent agriculture, hard commodities and settlements and infrastructure as permanent conversion to another land use; the other drivers are usually followed by regrowth.
Unit
hectares (ha)