The instrumentation of unfrozen water content: Considering the importance of conversion curves August 21, 2026
The instrumentation of unfrozen water content: Considering the importance of conversion curves August 21, 2026
HomePublicationsCSA NewsIssuesCSA News: Volume 65, Issue 5Cover crop management decisions impact phosphorus release April 10, 2020 Cover crop species and termination method directly impact phosphorus release from cover crop tissue. To promote water quality, producers should strive to minimize the potential impact of cover crops as a source of phosphorus loss through careful species selection and limiting exposure to freezing conditions. Non-point agricultural sources of phosphorus loss are a known contributor to the decrease of surface water quality. As such, cover crops have been proposed as a promising practice to help curb phosphorus (P) loss.New research in the Journal of Environmental Quality addresses the impacts of cover crop species (rapeseed, crimson clover, and triticale), termination method (clipping, freezing, and herbicide), and extraction timing (1, 7, and 14 days after termination) on water-extractable P concentrations of cover crop tissue.The authors found water-extractable P concentrations of cover crop tissue are directly related to species, termination method, and extraction timing. Species selection may be especially important when working to mitigate P loss, as evident by rapeseed releasing less water-extractable P than crimson clover and triticale regardless of termination method or extraction timing. Freezing consistently resulted in the greatest water-extractable P release with all termination methods. Documenting the time between termination and extraction is important when reporting water-extractable P since its release from cover crop tissue increased as time between termination and extraction increased.This study suggests that producers may be able to reduce potential P loss from cover crops by selecting crop species with low water-extractable P concentrations and minimizing cover crop exposure to freezing conditions.Dig DeeperCarver, R.E., Nelson, N.O., Roozeboom, K.L., & Kirkham, M.B. (2020). Species and termination method effects on phosphorus loss from plant tissue. Journal of Environmental Quality,49, 97–105. https://doi.org/10.1002/jeq2.20019 More science articles Back to issue Back to home Text © . The authors. CC BY-NC-ND 4.0. Except where otherwise noted, images are subject to copyright. Any reuse without express permission from the copyright owner is prohibited.Share this: Related articles Federal agencies announce new opportunities in weed management research, pesticide policy August 21, 2026 The instrumentation of unfrozen water content: Considering the importance of conversion curves August 21, 2026 Sorghum: An alternative option in dairy forage systems August 21, 2026 Recent articles Federal agencies announce new opportunities in weed management research, pesticide policy August 21, 2026 The instrumentation of unfrozen water content: Considering the importance of conversion curves August 21, 2026 Biochar type choice matters for limiting evaporation August 20, 2026
Federal agencies announce new opportunities in weed management research, pesticide policy August 21, 2026
The instrumentation of unfrozen water content: Considering the importance of conversion curves August 21, 2026
Federal agencies announce new opportunities in weed management research, pesticide policy August 21, 2026
The instrumentation of unfrozen water content: Considering the importance of conversion curves August 21, 2026