EGU2020-19566
https://doi.org/10.5194/egusphere-egu2020-19566
EGU General Assembly 2020
© Author(s) 2020. This work is distributed under
the Creative Commons Attribution 4.0 License.

A new space-borne perspective of crop productivity variations over the US Corn Belt

Peter Somkuti1, Hartmut Boesch2, Robert Parker2, Alex Webb2, Liang Feng3, Paul Palmer3, and Tristan Quaife4
Peter Somkuti et al.
  • 1CIRA, Colorado State University, Fort Collins, United States of America
  • 2School of Physics and Astronomy, University of Leicester, Leicester, United Kingdom
  • 3School of GeoSciences, University of Edinburgh, Edinburgh, United Kingdom
  • 4Department of Meteorology, University of Reading, Reading, United Kingdrom

We analyse inter-annual variations of SIF over the US Corn Belt using a seven-year time series (2010–2016) retrieved from measurements of short-wave IR radiation collected by the Japanese Greenhouse gases Observing SATellite (GOSAT). Using survey data and annual reports from the US Department of Agriculture (USDA) National Agricultural Statistics Service (NASS), we relate anomalies in the GOSAT SIF time series to meteorological and climatic events that affected planting or growing seasons. The events described in the USDA annual reports are confirmed using remote sensing-based data such as land surface temperature, precipitation, water storage anomalies and soil moisture. These datasets were carefully collocated with the GOSAT footprints on a sub-pixel basis to remove any effect that could occur due to different sampling. We find that cumulative SIF, integrated from April to June, tracks the planting progress established in the first half of the planting season (Pearson correlation r > 0.89). Similarly, we show that crop yields for corn (maize) and soybeans are equally well correlated to the integrated SIF from July to October (r > 0.86). Our results for SIF are consistent with reflectance-based vegetation indices, that have a longer established history of crop monitoring. Despite GOSAT’s sparse sampling, we were able to show the potential for using satellite-based SIF to study agriculturally-managed vegetation.

[1] Somkuti et al., "A new space-borne perspective of crop productivity variations over the US Corn Belt." Agricultural and Forest Meteorology 281 (2020): 107826.

 

How to cite: Somkuti, P., Boesch, H., Parker, R., Webb, A., Feng, L., Palmer, P., and Quaife, T.: A new space-borne perspective of crop productivity variations over the US Corn Belt, EGU General Assembly 2020, Online, 4–8 May 2020, EGU2020-19566, https://doi.org/10.5194/egusphere-egu2020-19566, 2020

This abstract will not be presented.