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 8Conservation tillage rebuilds surface soil organic carbon content July 16, 2020 Planting corn into rye residue under conservation tillage. Photo courtesy of Jeff Novak, USDA-ARS. Sandy soils in the southeastern U.S. Coastal Plain region have been cultivated for centuries using frequent and intensive tillage practices. Those practices physically mix crop residues into soil, which can increase soil organic carbon (SOC) content but also hastens oxidation, thus reducing SOC and resulting in a general loss in soil quality. In contrast, conservation tillage reduces crop residue incorporation into topsoil, but due to less oxidation, it can rebuild SOC levels. Unfortunately, there are few long-term studies available to quantify either the rate of change or measurable benefits.A recently published Agronomy Journal article reports topsoil SOC concentrations from a long-term study on a sandy, South Carolina Coastal Plain soil where conventional and conservation tillage practices were compared after 37 years using a variety of cropping systems.The results showed that conservation tillage significantly increased SOC content to a depth of 5 cm, which was attributed to reduced crop residue incorporation. As expected, conventional tillage mixed crop residue into the soil, promoting more rapid decomposition and thus reducing SOC contents.Despite South Carolina’s humidity and hot weather, conservation tillage practices under row crop management can rebuild near-surface SOC levels in sandy Coastal Plain soils.Dig deeperNovak, J.M., Watts, D.W, Bauer, P.J., Karlen, D.K., Hunt, P.G., & Mishra, U. (2020). Loamy sand soil approaches organic carbon saturation after 37 years of conservation tillage. Agronomy Journal, 112, 3152–3162. https://doi.org/10.1002/agj2.20184 More science 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
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The instrumentation of unfrozen water content: Considering the importance of conversion curves August 21, 2026