An invisible water surcharge: Climate warming increases crop water demand in the San Joaquin Valley’s groundwater-dependent irrigated agriculture

Author:

Moyers KelleyORCID,Abatzoglou John T.,Escriva-Bou Alvar,Medellín-Azuara Josué,Viers Joshua H.ORCID

Abstract

California’s bountiful San Joaquin Valley (SJV), a critical region for global fruit and nut production, has withstood two severe, multi-year droughts in the past decade, exacerbated by record-breaking high temperature and evaporative demand. We employed climate data and crop coefficients to estimate the crop water demand in the SJV over the past forty years. Our approach, using crop coefficients for Penman-Montieth modeled evapotranspiration, focused on the climate effects on crop water demand, avoiding the confounding factors of changing land use and management practices that are present in actual evapotranspiration. We demonstrate that increases in crop water demand explain half of the cumulative deficits of the agricultural water balance since 1980, exacerbating water reliance on depleting groundwater supplies and fluctuating surface water imports. We call this phenomenon of climate-induced increased crop water demand an invisible water surcharge. We found that in the past decade, this invisible water surcharge on agriculture has increased the crop water demand in the SJV by 4.4% with respect to the 1980–2011 timeframe—more than 800 GL per year, a volume as large as a major reservoir in the SJV. Despite potential agronomic adaptation and crop response to climate warming, increased crop water demand adds a stressor to the sustainability of the global fruit and nut supply and calls for changes in management and policies to consider the shifting hydroclimate.

Funder

United States Department of Agriculture (USDA) National Institute of Food and Agriculture (NIFA) Agriculture and Food Research Initiative

NSF and USDA-NIFA under the AI Research Institutes program for the AgAID Institute

Publisher

Public Library of Science (PLoS)

Reference82 articles.

1. FAO. Food and Agriculture Organization of the United Nations. Rome, Italy: FAO; 2022. http://faostat.fao.org

2. Tomato News. Tomato News 2022 Yearbook. Avignon, France: Tomato News SAS a subsidiary of World Information Centre for the Processing Tomato Industry; 2022. https://www.tomatonews.com/maj/upload/document/YB2022/index.html

3. California Department of Food and Agriculture. California Agricultural Statistics Review 2020–2021. 2021 [cited 30 Oct 2023]. www.cdfa.ca.gov/statistics

4. Harding ST 1883–1969. Ground water resources of the southern San Joaquin valley, by S.T. Harding. California: State Print. Office, 1927; 1927.

5. Groundwater depletion in California’s Central Valley accelerates during megadrought;PW Liu;Nature Communications,2022

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