生物炭施用对小麦、玉米农田N2O排放系数的影响与减排潜力评估

Evaluation of the Impacts of Biochar Application on N2O Emission Factors and Mitigation Potential in Wheat and Maize Fields

  • 摘要: 农业源氧化亚氮(N2O)排放是导致全球气候变化加剧的原因之一。研究发现,施用生物炭不仅可以减少N2O排放,同时改良土壤结构、增加土壤固碳能力。尽管已有大量Meta分析深入探讨了生物炭对N2O排放和减排效果的影响,然而尚未有研究量化生物炭施用对农田土壤N2O排放系数的影响。研究采用Meta分析方法与机器学习相结合构建了N2O排放系数预测模型,发现生物炭的原料类型、生物炭的碳氮比(C/N)、施用量、土壤阳离子交换量(CEC)和施氮量等是影响N2O排放系数的关键因素。尽管不同来源的生物炭对小麦或玉米田N2O排放影响差异较小,但适宜的生物炭制备温度(500 ~ 600℃)和施用量(25 ~ 30 t hm−2)可使小麦和玉米季N2O排放系数降低40.1% ~ 59.0%,且对壤土和砂壤土N2O排放减排效果最佳。因此构建精准的N2O排放系数回归模型可较好地反映生物炭特性、养分管理、环境条件对小麦和玉米田N2O排放系数的影响,并可预测高效发挥生物炭降低N2O排放的适宜施用条件,这为小麦和玉米轮作体系合理施用生物炭降低农田N2O排放提供了重要的技术支持。

     

    Abstract: Nitrous oxide (N2O) emission from agriculture is a major driver of global warming. Biochar is considered a promising solution due to its dual potential to reduce N2O emissions and enhance soil carbon sequestration. Many meta-analysis studies have investigated the effects of biochar application on N2O emissions and its mitigation potential. However, no systematic studies have been conducted to explore its effects on the N2O emission factors. This study established the N2O prediction models using meta-analysis combined with machine learning methods, and identified key factors influencing the N2O emission factor, such as biochar feedstock type, carbon-to-nitrogen ratio (C/N), application rate, soil cation exchange capacity (CEC), and nitrogen application rate. Although the impact of biochar from different sources on N2O emissions in wheat or maize fields was relatively small (wheat season: 0.032 - 0.037; maize season: 0.023 - 0.024), an appropriate biochar production temperature (500 - 600°C) and application rate (25 - 30 t hm2) could reduce N2O emission coefficients by 40.1% - 59.0% for both wheat and maize seasons, with the most significant mitigation effects observed in loam and sandy loam soils. In summary, establishing precision N2O emission factor prediction models may effectively capture the influence of biochar properties, management practices, and environmental conditions on N2O emissions in wheat and maize fields, and suggest suitable recommendations for biochar application. These findings provide important technical support for the rational application of biochar in wheat-maize rotation systems to reduce N2O emissions from farmlands.

     

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