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. 2023 Jul 12;195(8):944.
doi: 10.1007/s10661-023-11560-8.

Remote sensing environmental indicators for monitoring spatial and temporal dynamics of weather and vegetation conditions: applications for Brazilian biomes

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Remote sensing environmental indicators for monitoring spatial and temporal dynamics of weather and vegetation conditions: applications for Brazilian biomes

Antônio Teixeira et al. Environ Monit Assess. .

Abstract

The SAFER (Simple Algorithm for Evapotranspiration Retrieving) algorithm and the radiation use efficiency (RUE) model were coupled to test large-scale remote sensing environmental indicators in Brazilian biomes. MODIS MOD13Q1 reflectance product and gridded weather data for the year 2016 were used to demonstrate the suitability of the algorithm to monitor the dynamics of environmental remote sensing indicators along a year in the Brazilian biomes, Amazon, Caatinga, Cerrado, Pantanal, Atlantic Forest, and Pampa. Significant spatial and temporal variations in precipitation (P), actual evapotranspiration (ET), and biomass production (BIO) yielded differences on water balance (WB = P-ET) and water productivity (WP = ET/BIO). The highest WB and WP differences were detected in the wettest biomes, Amazon, Atlantic Forest, and Pampa, when compared with the driest biome, Caatinga. Rainfall distribution along the year affected the magnitude of the evaporative fraction (ETf), i.e., the ET to reference evapotranspiration (ET0) ratio. However, there was a gap between ETf and WB, which may be related to the time needed for recovering good soil moisture conditions after rainfalls. For some biomes, BIO related most to the levels of absorbed photosynthetically active radiation (Amazon and Atlantic Forest), while for others, BIO followed most the soil moisture levels, depicted by ETf (Caatinga, Cerrado, Pantanal, and Pampa). The large-scale modeling showed suitability for monitoring the water and vegetation conditions, making way to detect anomalies for specific periods along the year by using historical images and weather data, with strong potential to support public policies for management and conservation of natural resources and with possibilities for replication of the methods in other countries.

Keywords: Biomass production; Evapotranspiration; Precipitation; Water balance; Water productivity.

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References

    1. Allen, R. G., Pereira, L. S., Raes, D., & Smith, M. (1998). Crop evapotranspiration, Guidelines for computing crop water requirements. FAO Irrigation and Drainage Paper 56.
    1. Almagro, A., Oliveira, P. T. S., & Nearing, M. A. (2017). Projected climate change impacts in rainfall erosivity over Brazil. Scientific Reports, 7, 8130. - DOI
    1. Arantes, A. E., Ferreira, L. G., & Coe, M. T. (2016). The seasonal carbon and water balances of the Cerrado environment of Brazil: Past, present, and future influences of land cover and land use. ISPRS Journal Photogrammetry and Remote Sensing, 117, 66–78. - DOI
    1. Araujo, L. M., de Teixeira, A. H. C., & Bassoi, L. H. (2019). Evapotranspiration and biomass modelling in the Pontal Sul Irrigation Scheme. International Journal of Remote Sensing, 41, 2326–2338. - DOI
    1. Assine, M. L., Merino, E. R., do Nascimento Pupim, F., de Azevedo Macedo, H., & dos Santos, M. G. M. (2015). The Quaternary alluvial systems tract of the Pantanal basin, Brazil. Brazilian Journal of Geology, 45, 475–489. - DOI

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