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基于系统动力学模型的猪场粪污管理氮足迹及减排措施分析

郭函彤 陈同斌 于豹 郑国砥 张远兰 黄初礼 余仕飞 张玉国 管和平 雷梅

植物营养与肥料学报2025,Vol.31Issue(11):2229-2240,12.
植物营养与肥料学报2025,Vol.31Issue(11):2229-2240,12.DOI:10.11674/zwyf.2025048

基于系统动力学模型的猪场粪污管理氮足迹及减排措施分析

Analysis of nitrogen footprint and abatement in swine manure management based on a system dynamics approach

郭函彤 1陈同斌 2于豹 1郑国砥 2张远兰 3黄初礼 4余仕飞 3张玉国 1管和平 3雷梅1

作者信息

  • 1. 中国科学院地理科学与资源研究所环境修复中心,北京 100101||中国科学院大学资源与环境学院,北京 100049
  • 2. 中国科学院地理科学与资源研究所环境修复中心,北京 100101||中国科学院大学资源与环境学院,北京 100049||农业农村部畜牧业绿色低碳科技服务流动站(上杭),北京 100101
  • 3. 云南省宣威市农业农村局,云南宣威 655400
  • 4. 云南省宣威市龙场镇农业农村发展服务中心,云南宣威 655400
  • 折叠

摘要

Abstract

[Objectives]Significant reactive nitrogen(Nr)pollution issues exist in the manure management process of livestock and poultry farming.To explore its long-term evolutionary trends,this study systematically evaluates,from a dynamic perspective,the impacts of socioeconomic development,the application of environmental protection technologies,changes in farming scale,and agricultural policies on the nitrogen footprint(NF)in the swine manure management process.[Methods]A system dynamics model targeting the nitrogen footprint of swine manure management was constructed.Six typical ammonia reduction measures were implemented,including low-protein diets,installation of biotrickling filters outside animal housing,acidification during storage,composting additives,and improved fertilization methods(liquid fertilizer injection and solid fertilizer surface application with deep tillage).The individual and combined effects of these measures were analyzed.Furthermore,nine scenarios were considered,encompassing enhanced manure recycling rates and expanded large-scale farming,to dynamically simulate the changing characteristics of the nitrogen footprint in China's hog farming manure management from 2000 to 2050.[Results]Based on per capita Gross Domestic Product(GDP)projections for future hog slaughter volumes,it is predicted that driven by demand growth,China's hog nitrogen excretion will reach 4.416 million tons by 2050,with a conservative estimate of the nitrogen footprint generated during manure management at 3.957 million tons.The primary sources are land application(38.6%-74.7%)and off-site storage(39.6%-54.2%)stages,with NH3-N being the main form of loss,accounting for 56.4%.Scenario analysis indicates significant differences in the regulatory effects of various emission reduction technologies.Taking the year 2050 as an example,among the six individual measures,low-protein diets exhibit the best reduction effect,achieving a 16.3%reduction in the nitrogen footprint;followed by improved fertilization methods,with liquid fertilizer injection and solid fertilizer deep tillage achieving reductions of 7.3%and 8.1%,respectively.Manure slurry acidification,by inhibiting NH3 emissions during storage and land application,can achieve a 7.0%reduction.Given the currently low overall manure treatment rate in China,the nitrogen reduction potential of the composting process is limited(0.08%).Implementing a combination of full-chain ammonia reduction technologies can achieve an overall reduction efficiency of 35.8%.Strengthening the coordinated application of technologies across all stages of manure management is crucial for reducing nitrogen losses in the agro-pastoral system.Increasing the manure recycling rate of large-scale farms from 80%to 90%only reduces the nitrogen footprint by an average of 0.76%,reflecting the current crude fertilization practices and potential pollution risks.If all hogs are transitioned to industrial-scale farming,the nitrogen footprint can be reduced by approximately 6.3%compared to the baseline scenario,with the main reduction contributions coming from storage(115.8%)and housing(47.3%)stages,indicating significant potential for improving the level of large-scale farming in China.[Conclusions]China's hog nitrogen excretion is expected to continue growing in the future,but the system's nitrogen retention rate is anticipated to improve.Low-protein diets and improved fertilization methods are effective reduction measures,and a combination of full-chain technologies can achieve the maximum reduction benefits.There is still considerable room for optimization in the current large-scale farming manure management,particularly in the fertilization stage.

关键词

猪粪/粪污管理/系统动力学/还田利用/氮足迹/氨减排

Key words

swine manure/manure management/system dynamics/land application/nitrogen footprint/ammonia emission reduction

引用本文复制引用

郭函彤,陈同斌,于豹,郑国砥,张远兰,黄初礼,余仕飞,张玉国,管和平,雷梅..基于系统动力学模型的猪场粪污管理氮足迹及减排措施分析[J].植物营养与肥料学报,2025,31(11):2229-2240,12.

基金项目

国家自然科学基金(42577562) (42577562)

国家现代农业产业园项目(4530381JH202401881). (4530381JH202401881)

植物营养与肥料学报

OA北大核心

1008-505X

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