• ISSN 1008-505X
  • CN 11-3996/S

我国绿肥-玉米轮作的增产节肥效应、作用机制及发展潜力

Yield-increasing and fertilizer-saving effects, and development potential of green manure-maize rotation in China

  • 摘要: 发展绿肥-玉米轮作制度,是协同实现玉米稳产增产、化肥减量增效、土壤培肥与生态保育的重要途径。本文系统综述了绿肥-玉米轮作系统的增产节肥效应及其作用机制,并分析了我国绿肥-玉米轮作制度的发展潜力。2008—2024年间开展的21个联合定位试验结果表明,绿肥-玉米轮作在不减氮、减氮15%和减氮30%条件下,玉米籽粒产量分别增加7.6%、3.8%和3.9%;完全不施氮肥时,产量可达常规施肥的92.7%。本文分别从促进玉米养分吸收与利用、提升土壤健康水平和保护农田生态3个方面,综述了绿肥轮作的增产节肥机制。绿肥与减量化肥配施能够优化玉米产量构成、促进养分吸收并提升肥料利用率。长期种植利用绿肥有助于提升土壤肥力、培育土壤碳氮库。绿肥配施85%氮肥条件下,土壤有机质和全氮年累计量分别提高0.45和0.13 g/(kg·yr)。绿肥-玉米轮作有效降低净全球增温潜势,减少氮素损失,削弱土壤风蚀与水蚀,增强玉米生产系统应对极端气候的韧性。我国绿肥-玉米轮作制度的潜力面积达622万公顷,但2022—2024年平均应用面积仅为56万公顷,仅占潜力面积的9.0%,发展潜力巨大。我国绿肥-玉米轮作制度主要应用区域为华北地区和西南及南方旱地。本文进一步阐述了不同区域适宜的绿肥种类、播种管理及还田利用方式,分析了绿肥发展的限制因素,并提出相应政策建议。未来应持续开展技术集成研发与理论创新,为绿肥-玉米轮作制度的大面积推广应用提供技术与理论支撑。

     

    Abstract: Developing green manure–maize rotation systems is a pivotal strategy for simultaneously securing maize yield, reducing and optimizing chemical fertilizer use, building soil fertility, and protecting farmland ecology. We synthesize the yield-increasing and fertilizer-saving effects of green manure–maize rotation and their underlying mechanisms, and quantifies the development potential of this system in China. Results from 21 multi-site long-term experiments conducted during 2008–2024 showed that, relative to conventional nitrogen (N) fertilization, green manure-maize rotations increased grain yield by 7.6%, 3.8%, and 3.9% under 0%, 15%, and 30% reductions in N application, respectively. Even without chemical N fertilizer application, maize yield under green manuring still reached 92.7% of that under the conventional fertilization. We elucidate the mechanisms underlying the yield-increasing and fertilizer-saving effects from three perspectives: enhancing maize nutrient acquisition and utilization, improving soil health, and strengthening agroecosystem services. Utilization of green manure with reduced fertilizer optimizes yield components, promotes nutrient uptake, and improves fertilizer use efficiency. Long-term green manuring enlarges soil C and N pools. Soil organic matter and total N rose by 0.45 and 0.13 g/(kg·yr), respectively, at the condition of green manure combined with 85% of the conventional N rate. Green manure–maize rotation reduces net global warming potential, curbs N losses, mitigates wind and water erosion, and boosts the resilience of maize systems to extreme weather. The potential area for green manure–maize rotation in China is estimated at 6.22 million hectares, yet the average area in 2022–2024 was only 0.56 million hectares, only accounting for 9.0% of the potential area, indicating vast room for expansion. The system is currently distributed in North China and the dryland regions of Southwest and South China. Suitable green manure species, sowing management, and incorporation practices for each region are summarized, and the constraints on green manure development and policy recommendations are delineated. Future priorities include continued technological integration, mechanism-oriented research, and theoretical innovation to underpin large-scale adoption of green-maize rotation systems.

     

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