• ISSN 1008-505X
  • CN 11-3996/S

种养平衡视角下舟曲县畜禽粪污土地承载力及环境风险评估

Livestock manure land carrying of livestock and poultry manure and environmental risk assessment in Zhouqu County from the perspective of planting-breeding balance

  • 摘要:
    目的 本文以氮磷养分循环为核心,综合评估舟曲县种养业现状、畜禽粪污土地承载力以及畜禽粪污氮、磷的耕地负荷量及环境风险,为高原生态脆弱区合理利用畜禽粪污资源,优化种养业合理布局,提供理论依据和典范。
    方法 舟曲县各乡镇农作物种植面积、产量以及畜禽养殖数据来自《舟曲县统计年鉴》(2023),提取了舟曲县畜禽粪污资源量、分布特征,主要农作物养分的需求量数据。将不同种类的畜禽养殖量统一折算为猪当量,计算各乡镇在不同粪肥施入比例下以氮(N)和磷(P2O5)为基准的土地承载力指数(I),以该指数评估了现有种养殖规模下,各乡镇和整个舟曲县的环境负荷量及污染风险程度。
    结果 (1)舟曲县畜禽粪污资源量充足但养分分布不均。全县畜禽粪污可提供的有效N、P2O5养分量为713.2 t和236.8 t,仅能满足主要农作物总需求的79.3%和62.6%,尚不足以完全替代化肥,仍需要精准配施化肥。(2)2023年舟曲县实际猪当量为1.6×105头。以氮养分为基准,粪肥的适宜替代比例为60%,相应的N养分可承载的最大猪当量为1.4×105头,土地承载力指数I约为1.1,处于轻度超载状态;以磷养分为基准,粪肥的适宜比例为50%,相应的P2O5养分的可承载的最大猪当量1.7×105,土地承载力指数I为1.0,达到种养平衡。(3)从畜禽粪污耕地环境风险来看,呈现出整体可控,局部高危的现状。舟曲县畜禽粪污平均负荷量为22.1 t/hm2,全氮(TN)、全磷(TP)的平均耕地负荷为54.3 kg/hm2、8.3 kg/hm2;耕地负荷警报值为0.7,耕地风险级别处于III级,对环境构成污染威胁。
    结论 当前舟曲县畜禽养殖规模下,消纳畜禽粪污的土地环境风险整体可控但局部高危,尽管如此,仅靠畜禽粪污仍不能充分满足种植业的养分需求。种植业土地的粪污承载力以氮平衡为基准,粪污肥养分的施用比例可高达60%,有轻度超载风险。考虑到高原生态的脆弱性,建议以磷养分平衡为基准(I=1.0),将粪污肥养分施用比例控制在50%。

     

    Abstract:
    Objective Focusing on the nitrogen (N) and phosphorus (P) nutrient cycle, this paper comprehensively evaluated the current status of the planting and breeding industries, livestock manure carrying capacity, arable land nutrient loadings of N and P from livestock and poultry manure, and associated environmental risks in Zhouqu County. The aim was to systematically explore the optimization paths for planting-breeding balance in this typical ecologically fragile plateau area, provide a theoretical basis for the rational utilization of livestock manure resources, optimizing the layout of the planting and breeding industries, and promoting the development of integrated planting-breeding and ecological circular agriculture.
    Method Through data review and field surveys, the resource quantity and distribution characteristics of livestock manure in Zhouqu County were clarified, and the nutrient demands of main crops were estimated. The study analyzed crop nutrient demands and nutrient supply from manure under different application ratios. Different types of livestock were converted into "pig equivalents" (PE), and the land carrying capacity indices (I) based on N and P2O5 were calculated for each township. Furthermore, the environmental loading rates and pollution risk levels, expressed as pig equivalents, were analyzed under the existing scale of production.
    Results (1) Although livestock manure resources in Zhouqu County are abundant, nutrient distribution is uneven. The effective N and P2O5 from manure totaled 713.2 t and 236.8 t, respectively, which could only meet 79.3% and 62.6% of the total nutrient requirements of major crops. This indicates that the manure cannot completely replace chemical fertilizers, necessitating precise supplementary application. (2) In 2023, the actual pig equivalent in Zhouqu County was 1.6×105 heads. Under a 60% manure application ratio, the maximum pig equivalent bearable by N nutrient was 1.4×105 heads, with a land carrying capacity index of approximately 1.1, indicating a slightly overloaded state. Under a 50% manure application ratio, the maximum pig equivalent by P2O5 was 1.7×105 heads, with an index (I) of 1.0, achieving a planting-breeding balance. (3) Regarding arable land environmental risks, the situation is generally controllable but remains locally high-risk. The average livestock manure loading rate in Zhouqu County was 22.1 t/hm2, with average arable land loadings of Total Nitrogen (TN) and Total Phosphorus (TP) at 54.3 kg/hm2 and 8.3 kg/hm2, respectively. The arable land risk warning value was 0.7, classifying the risk level as Grade III, posing a threat of environmental pollution.
    Conclusion Under the current scale of livestock and poultry farming in Zhongqu County, the overall environmental risk of land for manure assimilation is controllable, though high-risk areas persist locally. Nonetheless, manure alone remains insufficient to meet the nutrient demands of the crop industry. Based on the nitrogen balance, the manure carrying capacity of cropland allows for a manure-to-nutrient application ratio of up to 60%, posing a slight risk of overloading. Given the fragility of the plateau ecosystem, it is recommended to adopt the phosphorus balance as the benchmark (I=1.0) and cap the manure-to-nutrient application ratio at 50%.

     

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