来自土壤的氧化排放:对作物种植实践的审查及其在以过程为基础的模型中的考虑
John Kormla Nyameasem1, Sabine J Seidel2, Milena Ulrich1
1Institute of Crop Science & Resource Conservation (INRES), Crop Science Group, University of Bonn, Bonn, Germany.
The Science of the total environment
|February 15, 2026
概括
生物炭和抑制剂使用等农业实践减少了氧化 (N2O) 排放. 然而,作物模型需要改进,以准确反映这些对可持续农业的影响.
科学领域:
- 农业科学 农业科学
- 环境科学 环境科学
- 气候科学 气候科学
背景情况:
- 氧化 (N2O) 是一种强大的温室气体,其主要人为来源是农业.
- 准确估计,预测和减轻农业N2O排放面临重大挑战.
研究的目的:
- 通过二次元分析,综合和量化农业实践对N2O排放的影响.
- 通过评估基于过程的作物模型如何代表N2O排放和相关农业实践来确定研究缺口.
主要方法:
- 对134个实地实验和108篇关于N2O排放的建模文章进行了二次元分析.
- 综合了各种农业实践对观察到的N2O排放的影响.
- 评估了这些实践在基于过程的作物模型中的纳入和代表性.
主要成果:
- 包括生物炭,化/尿酶抑制剂,降低肥料率,控制释放肥料,深度放置和滴灌等实践始终降低了N2O排放 (7-29%).
- 增加作物残留物增加了N2O排放.
- 许多模型包含了作物旋转和肥料管理等实践,但抑制剂和直接生物炭对转换的影响是有限的.
结论:
- 一些农业实践有效地减轻N2O排放,为可持续农业提供了途径.
- 目前基于工艺的作物模型需要大幅改进,以在各种农业管理场景下准确模拟N2O排放.
- 改进的建模对于设计能够平衡气候变化减缓与作物生产率的作物系统至关重要.
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