Field evaluations of the CropManage decision support tool for improving irrigation and nutrient use of cool season vegetables in California
Vegetable growers on the central coast of California are under regulatory pressure to reduce nitrate loading to ground and surface water supplies. California also implemented legislation that limits agricultural pumping in regions such as the central coast where the aquifers have been over-extracted...
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Format: | Article |
Language: | English |
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Elsevier
2023-09-01
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Series: | Agricultural Water Management |
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Online Access: | http://www.sciencedirect.com/science/article/pii/S0378377423002664 |
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author | Michael Cahn Richard Smith Forrest Melton |
author_facet | Michael Cahn Richard Smith Forrest Melton |
author_sort | Michael Cahn |
collection | DOAJ |
description | Vegetable growers on the central coast of California are under regulatory pressure to reduce nitrate loading to ground and surface water supplies. California also implemented legislation that limits agricultural pumping in regions such as the central coast where the aquifers have been over-extracted for crop irrigation. Growers could potentially use less N fertilizer, address water quality concerns, and conserve water by improving water management and matching nitrogen applications to the N uptake pattern of their crops. Two tools available to growers, the soil nitrate quick test (SNQT) and reference evapotranspiration (ETo) data have been previously shown to improve the management of water and fertilizer nitrogen in vegetable production systems. However, adoption of these practices has not been widespread. These techniques can be time consuming to use, and vegetable growers often have many crops to manage. To address such time constraints, the CropManage online application (cropmanage.ucanr.edu) was developed to facilitate implementation of the SNQT and evapotranspiration-based irrigation scheduling. CropManage additionally helps growers account for plant available N from background levels of nitrate in irrigation water. Trials were conducted in commercial vegetable fields in the Salinas Valley during 2012–2019 to evaluate CropManage fertilizer and irrigation recommendations relative to the grower practice. Results demonstrated that in many cases fertilizer or irrigation reductions could be attained by following CropManage recommendations without jeopardizing yield. In lettuce, the total fertilizer N applied under CropManage guidance was reduced by an average of 31 % compared to the grower standard practice. Lettuce yield within the CropManage treatment averaged 107 % of the grower practice. CropManage guidance in broccoli reduced N and applied water by 24 % and 27 %, respectively, compared to the grower standard practice, while average yield was similar between treatments. Management tools such as CropManage can support operational efficiencies and compliance with regulatory targets designed to improve groundwater quality. |
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format | Article |
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issn | 1873-2283 |
language | English |
last_indexed | 2024-03-12T15:31:45Z |
publishDate | 2023-09-01 |
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series | Agricultural Water Management |
spelling | doaj.art-b1163cffa1fb4dbb816256e19378eaaf2023-08-10T04:33:31ZengElsevierAgricultural Water Management1873-22832023-09-01287108401Field evaluations of the CropManage decision support tool for improving irrigation and nutrient use of cool season vegetables in CaliforniaMichael Cahn0Richard Smith1Forrest Melton2University of California Cooperative Extension, Monterey County, 1432 Abbott St., Salinas, CA 93901, United States; Corresponding author.University of California Cooperative Extension, Monterey County, 1432 Abbott St., Salinas, CA 93901, United StatesDepartment of Applied Environmental Science, California State University Monterey Bay, Seaside, CA 93955, United States; Earth Science Division, NASA Ames Research Center, Moffett Field, CA 94035, United StatesVegetable growers on the central coast of California are under regulatory pressure to reduce nitrate loading to ground and surface water supplies. California also implemented legislation that limits agricultural pumping in regions such as the central coast where the aquifers have been over-extracted for crop irrigation. Growers could potentially use less N fertilizer, address water quality concerns, and conserve water by improving water management and matching nitrogen applications to the N uptake pattern of their crops. Two tools available to growers, the soil nitrate quick test (SNQT) and reference evapotranspiration (ETo) data have been previously shown to improve the management of water and fertilizer nitrogen in vegetable production systems. However, adoption of these practices has not been widespread. These techniques can be time consuming to use, and vegetable growers often have many crops to manage. To address such time constraints, the CropManage online application (cropmanage.ucanr.edu) was developed to facilitate implementation of the SNQT and evapotranspiration-based irrigation scheduling. CropManage additionally helps growers account for plant available N from background levels of nitrate in irrigation water. Trials were conducted in commercial vegetable fields in the Salinas Valley during 2012–2019 to evaluate CropManage fertilizer and irrigation recommendations relative to the grower practice. Results demonstrated that in many cases fertilizer or irrigation reductions could be attained by following CropManage recommendations without jeopardizing yield. In lettuce, the total fertilizer N applied under CropManage guidance was reduced by an average of 31 % compared to the grower standard practice. Lettuce yield within the CropManage treatment averaged 107 % of the grower practice. CropManage guidance in broccoli reduced N and applied water by 24 % and 27 %, respectively, compared to the grower standard practice, while average yield was similar between treatments. Management tools such as CropManage can support operational efficiencies and compliance with regulatory targets designed to improve groundwater quality.http://www.sciencedirect.com/science/article/pii/S0378377423002664LettuceBroccoliEvapotranspirationNitrogen fertilizerSoil nitrateGroundwater |
spellingShingle | Michael Cahn Richard Smith Forrest Melton Field evaluations of the CropManage decision support tool for improving irrigation and nutrient use of cool season vegetables in California Agricultural Water Management Lettuce Broccoli Evapotranspiration Nitrogen fertilizer Soil nitrate Groundwater |
title | Field evaluations of the CropManage decision support tool for improving irrigation and nutrient use of cool season vegetables in California |
title_full | Field evaluations of the CropManage decision support tool for improving irrigation and nutrient use of cool season vegetables in California |
title_fullStr | Field evaluations of the CropManage decision support tool for improving irrigation and nutrient use of cool season vegetables in California |
title_full_unstemmed | Field evaluations of the CropManage decision support tool for improving irrigation and nutrient use of cool season vegetables in California |
title_short | Field evaluations of the CropManage decision support tool for improving irrigation and nutrient use of cool season vegetables in California |
title_sort | field evaluations of the cropmanage decision support tool for improving irrigation and nutrient use of cool season vegetables in california |
topic | Lettuce Broccoli Evapotranspiration Nitrogen fertilizer Soil nitrate Groundwater |
url | http://www.sciencedirect.com/science/article/pii/S0378377423002664 |
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