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 67, Issue 2Agroforestry increases soil organic carbon in agricultural fields December 29, 2021 Miguel Salceda collects a soil sample using a push probe from watersheds at the Greenley Jr. Research Center of the University of Missouri. Inset: Soil sample from the 0- to 10- (top) and 10- to 20- (bottom) cm depth. Photos courtesy of Miguel Salceda. Unsustainable agricultural practices deplete soil organic carbon, enhancing climate change and affecting land productivity. Agroforestry practices help to sequester carbon in above- and below-ground reservoirs; however, long-term studies evaluating the effect of agroforestry on carbon sequestration in soils are limited.In Agronomy Journal, researchers report spatial and temporal variations in soil carbon after a multi-year study of three adjacent watersheds in northeastern Missouri. The study watersheds are located in the claypan region under no-till corn-soybean rotation management with 23 years of agroforestry buffers.This study indicates that trees and grasses significantly increase soil organic carbon compared with row crop areas and that agroforestry buffers continue to build up soil organic carbon with time. The team found that agroforestry buffers have increased carbon in soils at a greater rate during the 23-year study period than the other management practices. The establishment of agroforestry buffers within agricultural fields can help to mitigate climate change, increase soil productivity, and enhance nutrient and sediment retention. In addition to the benefits mentioned, agroforestry buffers offer the opportunity to diversify agricultural production by cropping different plants and wood production.Dig deeperSalceda, M., Udawatta, R.P., Nelson, K.A., Mendis, S.S., & Bardhan, S. (2021). Spatial and temporal variability of soil organic carbon on a corn–soybean watershed with 23 years of agroforestry. Agronomy Journal. https://doi.org/10.1002/agj2.20948 (in press) 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