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Updated: May 4, 2026

Assessment of Labile Organic Carbon in Soil Using Sequential Fumigation Incubation Procedures
Published on: October 29, 2016
Trade-off analysis between soil organic carbon and maize yield under no-tillage: implication for sustainable cropland
Mei Liang1, Yinghao Su1, Hui Xu1
1State Key Laboratory of Regional and Urban Ecology, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing, 100085, China; University of Chinese Academy of Sciences, Beijing, 100049, China.
Abstract:
Long-term intensive tillage has reduced soil organic carbon (SOC) and threatened sustainable maize production in Northeast China. Yet how tillage regulates SOC-yield relationship across climatic gradients remains unclear, limiting climate-smart cropland management. Here, we combined field observations with the DSSAT model to simulate long-term effects of conventional tillage (CT) and no-tillage (NT) on SOC and maize yield (MY) across the maize belt of Jilin Province, and qualified SOC-MY synergy/trade-off along aridity gradients. NT consistently increased SOC region-wide and improve MY on average, but yield benefits showed clear climatic thresholds. Yield gains were concentrated in moderately dry environments with intermediate water-heat availability (aridity index, AI ≈ 0.28-0.40). In humid zones (AI > 0.67), NT still promoted SOC accumulation but often failed to sustain MY, indicating a shift from co-benefit to trade-off. The area exhibiting simultaneous SOC and MY increases expanded rapidly during early adoption, stabilized in years 5-20, and gradually decline thereafter. These results demonstrate that NT co-benefit depend jointly on climate suitability and adoption stage, providing transferable thresholds for climate-informed promotion of conservation agriculture in temperate maize system.
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