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Updated: Sep 24, 2026

Calibrated Passive Sampling - Multi-plot Field Measurements of NH3 Emissions with a Combination of Dynamic Tube Method and Passive Samplers
Published on: March 21, 2016
Synchronizing nitrogen cycling processes reduces agricultural nitrous oxide and ammonia emissions
Mengfei Li1, Yanzhong Yao1, Bingbing Han1
1Interdisciplinary Research Center for Agriculture Green Development in Yangtze River Basin; College of Resources and Environment, Southwest University, Chongqing, China.
Abstract:
Mitigating reactive nitrogen losses is essential for sustainable agriculture. However, predicting the benefits of substituting synthetic fertilizers with organic amendments remain unreliable because conventional approaches treat soil nitrogen processes in isolation. Here, we adapt a synchrony metric from community ecology to quantify the coordination among nitrogen processes. Using 2,235 global paired observations (organic vs. synthetic), we find that the synchrony metric predicts nitrous oxide (N2O) and ammonia (NH3) emissions more accurately than individual processes alone. Specifically, synchrony deviations in nitrification and denitrification account for half of global N2O variability, while synchrony deviations in mineralization and immobilization explain over one-third of NH3 variability. Projections indicate that leveraging organic substitution could achieve the greatest N2O reductions in European croplands (-40.7%) and the highest NH3 mitigation in Africa croplands (-46.1%). These findings establish process synchrony as a mechanistic framework for improving nitrogen gas loss models and inform targeted organic amendment strategies.
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