基于农田钾平衡的畜禽粪便承载力估算

Estimation of farmland bearing capacity of animal manure based on farmland potassium balance

  • 摘要:
    目的 以新疆生产建设兵团和北大荒集团的种养业生产系统为研究对象,旨在构建基于农田钾平衡的畜禽粪便农田承载力估算模型,为区域种养平衡和农业绿色发展提供理论依据。
    方法 根据农田钾养分循环规律,进行基于农田钾平衡的畜禽粪便农田承载力的建模工作;核算近10年农田钾盈亏率,参考已有文献报道的发达国家农田钾盈亏率范围设置阈值,模拟分析区域适宜施用的畜禽粪肥量与承载力。
    结果 1)2012~2021年新疆生产建设兵团和北大荒集团农田钾盈亏率呈现波动变化,分别为−103.90%~80.28%、−65.25%~68.82%。2)将钾盈亏率−17.56%~20.70%设置为阈值范围,新疆生产建设兵团畜禽粪便农田承载力总量为29 458.6×104头,新疆生产建设兵团第六师的养殖潜力最大,为7 138.9×104头;北大荒集团畜禽粪便农田承载力总量为102 584.0×104头。建三江的养殖潜力最大,为26 057.5×104头。
    结论 两地畜禽养殖规模均未超出农田承载力。本研究可为区域种养平衡管理及钾资源高效利用提供理论参考。

     

    Abstract:
    Objective Taking the crop-livestock production systems of Xinjiang Production and Construction Corps (XPCC) and Beidahuang Group as research objects, this study aimed to establish an estimation model for the farmland bearing capacity of livestock and poultry manure based on farmland potassium balance, so as to provide a theoretical basis for regional crop-livestock balance and green agricultural development.
    Methods A model for evaluating the farmland carrying capacity of livestock and poultry manure was constructed according to the circulation rule of potassium nutrients in farmland. The farmland potassium budget ratios in the past decade were calculated. Threshold values were set by referring to the range of farmland potassium budget ratios reported in studies of developed countries, and the applicable application amount of livestock and poultry manure and corresponding farmland bearing capacity in the research regions were simulated and analyzed.
    Results 1) From 2012 to 2021, the farmland potassium budget ratios of XPCC and Beidahuang Group fluctuated within the ranges of −103.90% to 80.28% and −65.25% to 68.82%, respectively. 2) The potassium budget ratio range of −17.56% to 20.70% was defined as the threshold. The total farmland bearing capacity of livestock and poultry manure of XPCC reached 294.586 million heads, among which the Sixth Division of XPCC possessed the largest breeding potential of 71.389 million heads. The total bearing capacity of Beidahuang Group was 1.02584 billion heads, and Jiansanjiang Sub-bureau had the maximum breeding potential of 260.575 million heads.
    Conclusion The current livestock and poultry breeding scales of the two regions do not exceed their respective farmland bearing capacities. This research can offer theoretical references for regional crop-livestock balance management and the efficient utilization of potassium resources.

     

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