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Urea-based nitrogen fertilization in agriculture: a key source of N2O emissions and recent development in mitigating strategies

机译:农业中基于尿素的氮肥:N2O排放的关键来源和缓解策略的最新发展

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摘要

Agricultural land occupies nearly half of the earth's surface, and farming activities account for nearly 60 of total anthropogenic N2O emissions. The manufactured nitrogen (N) fertilizers applied to soils are major sources of N2O emissions from agricultural systems. Among the synthetic N fertilizers, urea has the highest nitrogen content of all solid nitrogenous fertilizers and accounts for 66 of global synthetic N fertilizer use. Hence, efficient urea-N management is imperative for global N2O abatement. This review provides an update on advances in N2O-generating pathways, microbial mechanisms, abiotic and biotic regulating factors, and mitigation strategies. Nitrification inhibitors have been extensively studied as strategies to mitigate soil N2O emissions by decreasing nitrification and denitrification processes. Controlled/slow-release fertilizer formulations have been used widely to enhance fertilizer N use efficiency by regulating the release rates of N from fertilizer. Additionally, biochar, microbial inoculation with arbuscular mycorrhizal fungi (AMF), biological nitrification inhibitors (BNIs) and biological denitrification inhibitors (BDIs) may enable the development of novel and environment-friendly strategies for practicable N2O mitigation in future.
机译:农业用地占地球表面的近一半,农业活动占人为N2O排放总量的近60%。施用于土壤的人造氮肥是农业系统N2O排放的主要来源。在合成氮肥中,尿素的氮含量是所有固体氮肥中最高的,占全球合成氮肥使用量的66%。因此,有效的尿素氮管理对于全球N2O减排势在必行。本文综述了N2O产生途径、微生物机制、非生物和生物调节因子以及缓解策略的最新进展。硝化抑制剂已被广泛研究,作为通过减少硝化和反硝化过程来减少土壤N2O排放的策略。控释/缓释肥料配方已被广泛用于通过调节肥料中氮的释放速率来提高肥料氮的利用效率。此外,生物炭、丛枝菌根真菌 (AMF) 微生物接种、生物硝化抑制剂 (BNI) 和生物反硝化抑制剂 (BDI) 可能有助于开发新型和环保的策略,以实现未来可行的 N2O 缓解。

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