N: 90 S: -90 E: 180 W: -180
Description
The Terra and Aqua combined MCD64A1 Version 6.1 Burned Area data product is a monthly, global gridded 500 meter (m) product containing per-pixel burned-area and quality information. The MCD64A1 burned-area mapping approach employs 500 m Moderate Resolution Imaging Spectroradiometer (MODIS) Surface Reflectance imagery coupled with 1 kilometer (km) MODIS active fire observations. The algorithm uses a burn sensitive Vegetation Index (VI) to create dynamic thresholds that are applied to the composite data. The VI is derived from MODIS shortwave infrared atmospherically corrected surface reflectance bands 5 and 7 with a measure of temporal texture. The algorithm identifies the date of burn for the 500 m grid cells within each individual MODIS tile. The date is encoded in a single data layer as the ordinal day of the calendar year on which the burn occurred with values assigned to unburned land pixels and additional special values reserved for missing data and water grid cells.
The data layers provided in the MCD64A1 product include Burn Date, Burn Data Uncertainty, Quality Assurance, along with First Day and Last Day of reliable change detection of the year.
Known Issues
- For complete information about known issues please refer to the MODIS/VIIRS Land Quality Assessment website.
Version Description
Product Summary
Citation
Citation is critically important for dataset documentation and discovery. This dataset is openly shared, without restriction, in accordance with the EOSDIS Data Use and Citation Guidance.
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File Naming Convention
The file name begins with the Product Short Name (MCD64A1) followed by the Julian Date of Acquisition formatted as AYYYYDDD (A2025152), the Tile Identifier which is horizontal tile and vertical tile provided as hXXvYY (h06v03), the Version of the data collection (061), the Julian Date and Time of Production designated as YYYYDDDHHMMSS (2025220161136), and the Data Format (hdf).
Documents
USER'S GUIDE
ALGORITHM THEORETICAL BASIS DOCUMENT (ATBD)
PRODUCT QUALITY ASSESSMENT
SCIENCE DATA PRODUCT VALIDATION
Dataset Resources
Publications Citing This Dataset
| Title | Year Sort ascending | Author | Topic |
|---|---|---|---|
| Evenness peaks in fire-resilient vegetation preceded ecosystem shifts in | Aleman, Julie C, Garcin, Yannick, Vanniere, Boris, Vullien, Antoine, Williamson, David, Carcaillet, Christopher | Fire Ecology, Biomass Burning, Wildfires, Fire Occurrence, Burned Area | |
| Evaluation of modeled smoke plumes of wildfires in the Argentinian | Garcia Ferreyra, Maria Fernanda, Scavuzzo, Carlos Marcelo, Otero, Lidia Ana, Curci, Gabriele | Land Use/Land Cover Classification, Fire Ecology, Biomass Burning, Wildfires, Fire Occurrence, Burned Area, Canopy Characteristics, Evergreen Vegetation, Crown, Deciduous Vegetation, Leaf Characteristics, Vegetation Cover | |
| An investigation of the impact of Canadian wildfires on US air quality using model, satellite, and ground measurements | Xue, Zhixin, Udaysankar, Nair, Christopher, Sundar A. | Fire Occurrence, Surface Thermal Properties, Land Surface Temperature, THERMAL ANOMALIES, Fire Ecology, Biomass Burning, Wildfires, Burned Area, Aerosol Optical Depth/Thickness, Aerosol Backscatter, Aerosol Extinction, Angstrom Exponent, Aerosol Particle Properties, Aerosol Radiance, Carbonaceous Aerosols, Cloud Condensation Nuclei, Dust/Ash/Smoke, Nitrate Particles, Organic Particles, Particulate Matter, Sulfate Particles, Optical Depth/Thickness, Radiative Flux, Reflectance | |
| An Observation-Driven Framework for Modeling Post-Fire Hydrologic | Lahmers, Timothy M., Kumar, Sujay V., Ahmad, Shahryar K., Holmes, Thomas, Getirana, Augusto, Orland, Elijah, Locke, Kim, Biswas, Nishan Kumar, Nie, Wanshu, Pflug, Justin, Whitney, Kristen, Anderson, Martha, Yang, Yun | Fire Ecology, Biomass Burning, Wildfires, Fire Occurrence, Burned Area | |
| A field and remote sensing assessment of rates and drivers of tree cover loss in island catchments: variation in global model accuracy | Metherall, Nicholas, Beavis, Sara, Naikatini, Alivereti, Wales, Nathan, Holland, Elisabeth, Waqa-Sakiti, Hilda, Tuiwawa, Marika | Fire Ecology, Biomass Burning, Wildfires, Fire Occurrence, Burned Area | |
| 2022 McKinney rain-on-wildfire event, dissolved oxygen sags, and a fish kill on the Klamath River, California | Curtis, Jennifer A., Johnson, Grant S., Cahill, Josh D., Genzoli, Laurel, Dahm, Cliff N., Schenk, Liam N., Oberholzer, John R. | Fire Ecology, Biomass Burning, Wildfires, Fire Occurrence, Burned Area | |
| A Generalized Spatiotemporally Weighted Boosted Regression to Predict | Wu, Ritu, Hong, Zhimin, Du, Wala, Shan, Yu, Ying, Hong, Wu, Rihan, Gantumur, Byambakhuu | Land Use/Land Cover Classification, Fire Ecology, Biomass Burning, Wildfires, Fire Occurrence, Burned Area | |
| A 30-meter resolution global land productivity dynamics dataset from 2013 to 2022 | Li, Xiaosong, Shen, Tong, Garcia, Cesar Luis, Teich, Ingrid, Chen, Yang, Chen, Jin, Kabo-Bah, Amos Tiereyangn, Yang, Ziyu, Jia, Xiaoxia, Lu, Qi, Nyamtseren, Mandakh | Vegetation Index, Normalized Difference Vegetation Index (NDVI), Enhanced Vegetation Index (EVI), Fire Ecology, Biomass Burning, Wildfires, Fire Occurrence, Burned Area, Reflectance | |
| Assessing CO2 Emissions from Deforestation and Fires in Bolivia during 2010-2023 | Andersen, Lykke E., Argandona Gonzales, Fabiana Karina, Olmos, Carla, Calderon, Diego, Miranda, Sebastian, Munoz Quisberth, Alvaro Mauricio, Choque Sunagua, Sergio | Fire Ecology, Biomass Burning, Wildfires, Fire Occurrence, Burned Area | |
| Assessing the impact of landcover change on soil organic carbon stocks | NunezHidalgo, Ignacio, Pfeiffer, Marco, Lira, Erick, Alaniz, Alberto J., Gaxiola, Aurora | Reflectance, Anisotropy, Fire Ecology, Biomass Burning, Wildfires, Fire Occurrence, Burned Area, Canopy Characteristics, Evergreen Vegetation, Crown, Deciduous Vegetation, Leaf Characteristics, Vegetation Cover, Land Use/Land Cover Classification, Total Surface Water | |
| China Wildfire Emission Dataset (ChinaWED v1) for the period 20122022 | Lin, Zhengyang, Huang, Ling, Tian, Hanqin, Chen, Anping, Wang, Xuhui | Fire Ecology, Biomass Burning, Wildfires, Fire Occurrence, Burned Area | |
| Changes in grazing patterns explain post-Soviet fire trends on the Eurasian steppe better than climate | Hankerson, Brett R., Schierhorn, Florian, Kamp, Johannes, Kuemmerle, Tobias, Muller, Daniel | Fire Ecology, Biomass Burning, Wildfires, Fire Occurrence, Burned Area | |
| Carbon emissions from fires in Eastern Siberian larch forests | Delcourt, Clement J. F., Rogers, Brendan M., Akhmetzyanov, Linar, Izbicki, Brian, Scholten, Rebecca C., Shestakova, Tatiana A., van Wees, Dave, Mack, Michelle C., SassKlaassen, Ute, Veraverbeke, Sander | Fire Ecology, Biomass Burning, Wildfires, Fire Occurrence, Burned Area, Forest Management, Land Surface Temperature, THERMAL ANOMALIES, Vegetation Cover, Forests, Surface Temperature, Precipitation Amount, Fire Dynamics, Carbon, Biomass, Soil Moisture/Water Content, Topographic Effects | |
| Delayed formation of Arctic snow cover in response to wildland fires in a warming climate | Qing, Yamin, Wang, Shuo, AghaKouchak, Amir, Gentine, Pierre | Fire Ecology, Biomass Burning, Wildfires, Fire Occurrence, Burned Area | |
| Declines in greater bilby (<i> Macrotis</i><i> lagotis)</i> geographic | Geyle, Hayley M., Young, Alys R., Murphy, Brett P., Dickman, Chris R., Schlesinger, Christine, Dixon, Kelly M., Moore, Harry, Legge, Sarah, Silcock, Jennifer, Indigo, Naomi, Dziminski, Martin, Greatwich, Bruce, Newsome, Thomas M., Paltridge, Rachel, Southgate, Rick, Arkinstall, Cassandra, Bradley, Kevin, Central Land Council Rangers, Jackett, Nigel, Kanyirninpa Jukurrpa Rangers, Karajarri Rangers, Kiwirrkurra Rangers, Kimberley Land Council Land and Sea Management Unit, Moore, Danae, Ngurrara Rangers, Parna Ngururrpa Aboriginal Corporation, Nyangumarta Rangers, Nyikina Mangala Rangers, Skroblin, Anja, Southwell, Darren M., Tait, Laurie, Webeck, Kim, Wiluna Martu Rangers, Yawuru Country Managers, Banks, Sam | Fire Ecology, Biomass Burning, Wildfires, Fire Occurrence, Burned Area, Vegetation Index, Normalized Difference Vegetation Index (NDVI), Enhanced Vegetation Index (EVI) | |
| Decoding the spatiotemporal dynamics of cropland carbon emission drivers in China: A machine learning-based analysis | Li, Hanbing, Jin, Xiaobin, Zhao, Rongqin, Han, Bo, Liang, Xinyuan, Sun, Rui | Fire Ecology, Biomass Burning, Wildfires, Fire Occurrence, Burned Area | |
| Effectiveness of the world network of biosphere reserves in maintaining forest ecosystem functions | Gohr, Charlotte, von Wehrden, Henrik, Saatchi, Sassan, Pettorelli, Nathalie, Ibisch, Pierre L. | Land Use/Land Cover Classification, Fire Ecology, Biomass Burning, Wildfires, Fire Occurrence, Burned Area, Reflectance, Total Surface Water | |
| Distinct trajectory of post-fire GPP across forest types in Siberia | Lee, Ahreum, Jeong, Sujong, Park, Chang-Eui, Kim, Jin-Soo | Albedo, Anisotropy, Vegetation Index, Normalized Difference Vegetation Index (NDVI), Enhanced Vegetation Index (EVI), Fire Occurrence, Surface Thermal Properties, Land Surface Temperature, THERMAL ANOMALIES, Fire Ecology, Biomass Burning, Wildfires, Burned Area, Photosynthesis, Primary Production, Vegetation Productivity, Land Use/Land Cover Classification, Emissivity | |
| Compound dry and hot extremes and their implications for fire activity over the Orinoco River Basin in northern South America | Arias, Paola A., Fernandez-Berrio, Alejandra, Bedoya-Pineda, Valeria, Acevedo-Ortiz, M. Yurani, Martinez, J. Alejandro | Fire Ecology, Biomass Burning, Wildfires, Fire Occurrence, Burned Area | |
| Drainage density and land cover interact to affect fire occurrence in Indonesian peatlands | Salmayenti, R, Baird, A J, Holden, J, Spracklen, D V | Fire Ecology, Biomass Burning, Wildfires, Fire Occurrence, Burned Area | |
| Human activity augments lightning ignitions to reshape fire seasonality across all biomes on Earth | Ellis, Todd M., Bowman, David M. J. S., Williamson, Grant J. | Fire Ecology, Biomass Burning, Wildfires, Fire Occurrence, Burned Area, Photosynthesis, Primary Production, Vegetation Productivity | |
| Heat-amplifying boreal forests exacerbate snowmelt, fuel availability | Lee, Ju Hyoung, Yebra, Marta, Matin, Mir, AghaKouchak, Amir | Fire Ecology, Biomass Burning, Wildfires, Fire Occurrence, Burned Area, Albedo, Snow Cover | |
| High-Resolution Satellite Data Improve Insights Into Landscape Fires and | FernandezGarcia, V., Phelps, L. N., Strydom, T., Muando, P. J., Ranaivonasy, J., Lehmann, C. E. R., Kull, C. A. | Fire Ecology, Biomass Burning, Wildfires, Fire Occurrence, Burned Area | |
| Increase in carbon monoxide (CO) and aerosol optical depth (AOD) observed by satellites in the Northern Hemisphere over the summers of 20082023, linked to an ... | Ehret, Antoine, Turquety, Solene, George, Maya, Hadji-Lazaro, Juliette, Clerbaux, Cathy | Fire Occurrence, Surface Thermal Properties, Land Surface Temperature, THERMAL ANOMALIES, Fire Ecology, Biomass Burning, Wildfires, Burned Area, Aerosol Backscatter, Aerosol Extinction, Aerosol Optical Depth/Thickness, Angstrom Exponent, Aerosol Particle Properties, Aerosol Radiance, Carbonaceous Aerosols, Cloud Condensation Nuclei, Dust/Ash/Smoke, Nitrate Particles, Organic Particles, Particulate Matter, Sulfate Particles, Optical Depth/Thickness, Radiative Flux, Reflectance | |
| Impacts of fire on canopy structure and its resilience depend on successional stage in Amazonian secondary forests | Vedovato, Laura B., Aragao, Luiz E. O. C., Almeida, Danilo R. A., Bartholomew, David C., Assis, Mauro, Dalagnol, Ricardo, Gorgens, Eric B., SilvaJunior, Celso H. L., Ometto, Jean P., PontesLopes, Aline, Silva, Carlos A., Valbuena, Ruben, Feldpausch, Ted R. | Fire Ecology, Biomass Burning, Wildfires, Fire Occurrence, Burned Area, Lidar, Forest Composition/Vegetation Structure, Digital Elevation/Terrain Model (DEM), Canopy Characteristics |