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On-farm evaluation of an active optical sensor performance for variable nitrogen application in winter wheat
Institution:1. Minneapolis Heart Institute and Minneapolis Heart Institute Foundation, Minneapolis, Minnesota;2. Interventional Cardiology Division, Cardio-Thoracic-Vascular Department, San Raffaele Scientific Institute, Milan, Italy;3. Division of Interventional Cardiology, Reina Sofia Hospital, University of Cordoba, Maimonides Institute for Research in Biomedicine of Cordoba (IMIBIC), Cordoba, Spain;4. Emory Heart and Vascular Center, Emory University School of Medicine, Atlanta, Georgia;5. Department of Internal Medicine, Yale University School of Medicine, New Haven, Connecticut;6. Instituto de Cardiologia do Rio Grande do Sul, Porto Alegre, Brazil;7. Department of Cardiology, Ziekenhuis Oost-Limburg, Genk, Belgium;8. North Oaks Health System, Hammond, Louisiana;9. Hartcentrum, Ziekenhuis Netwerk Antwerpen Middelheim, Antwerp, Belgium;10. Henry Ford Health System, Detroit, Michigan;11. Department of Interventional Cardiology, Clinique Pasteur, Essey-lès-Nancy, France;12. Presbyterian Hospital, Dallas, Texas;13. Magdi Yacoub Heart Foundation, Cairo, Egypt;14. Massachusetts General Hospital, Boston, Massachusetts;15. Morristown Medical Center, Morristown, New Jersey;p. Cleveland Clinic Foundation, Cleveland, Ohio;q. Meshalkin Siberian Federal Biomedical Research Center, Ministry of Health of Russian Federation, Novosibirsk, Russian Federation;r. Department of Cardiology, VU University Medical Center, Amsterdam, The Netherlands;s. University of Catania, Catania, Italy;t. Instituto Cardiovascularde Buenos Aires, Buenos Aires, Argentina;u. Fundação Universitária de Cardiologia, Porto Alegre, Brazil;v. St. George''s University Healthcare NHS Trust, London, United Kingdom;w. Department of Cardiology, Nozaki Tokushukai Hospital, Osaka, Japan;x. Belfast Health, Belfast, United Kingdom;y. Memorial Bahcelievler Hospital, Istanbul, Turkey;z. Acibadem Kocaeli Hospital, Kocaeli, Turkey;11. Division of Cardiology, Department of Medicine, University of Washington, Seattle, Washington;22. Saint Luke''s Mid-America Heart Institute, Kansas City, Missouri;33. University of Missouri-Kansas City, Kansas City, Missouri
Abstract:Winter wheat (Triticum aestivum L.) represents almost 50% of total cereal production in the European Union, accounting for approximately 25% of total mineral nitrogen (N) fertilizer applied to all crops. Currently, several active optical sensor (AOS) based systems for optimizing variable N fertilization are commercially available for a variety of crops, including wheat. To ensure successful adoption of these systems, definitive measurable benefits must be demonstrated. Nitrogen management strategies developed based on small-scale plot research are not always meaningful for large-scale farm conditions. In 2010–2012 (5 site-years) on-farm study was implemented in northern Poland utilizing a strip-trial design. The objective was to evaluate the performance of AOS in combination with a built-in algorithm for variable N rate fertilization. In this study, the reference uniform N rates (farmer’s practice) were comparable to optimum variable N rate recommendations. Side-by-side comparisons of uniform and variable N application revealed inconsistent benefits in terms of grain yield, grain protein content (GPC), N use and N use efficiency (NUE). Anticipated yield increases and/or reduced N rates are typical drivers for AOS adoption. Significant yield increases are not easily attained on farms with winter wheat yields already close to maximum yield potential. Thus, sensor-based variable N rate recommendations for fields previously fertilized with relatively low uniform N rates would often entail more appropriate allocation (redistribution) of the same amount of total N. This would minimize N surplus in areas of lower productivity and to improve the sustainability of N management overall.
Keywords:Winter wheat  Active optical sensor  Variable nitrogen application  On-farm research
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