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Scenarios to limit environmental nitrogen losses from dairy expansion

机译:限制乳品厂扩产造成环境氮损失的方案

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摘要

Increased global demand for dairy produce and the abolition of EU milk quotas have resulted in expansion in dairy production across Europe and particularly in Ireland. Simultaneously, there is increasing pressure to reduce the impact of nitrogen (N) losses to air and groundwater on the environment. In order to develop grassland management strategies for grazing systems that meet environmental targets and are economically sustainable, it is imperative that individual mitigation measures for N efficiency are assessed at farm system level. To this end, we developed an excel-based N flow model simulating an Irish grass-based dairy farm, to evaluate the effect of farm management on N efficiency, N losses, production and economic performance. The model was applied to assess the effect of different strategies to achieve the increased production goals on N utilization, N loss pathways and economic performance at farm level. The three strategies investigated included increased milk production through increased grass production, through increased concentrate feeding and by applying a high profit grass-based system. Additionally, three mitigation measures; low ammonia emission slurry application, the use of urease and nitrification inhibitors and the combination of both were applied to the three strategies. Absolute N emissions were higher for all intensification scenarios (up to 124 kg N ha~(-1)) compared to the baseline (80 kg N ha~(-1)) due to increased animal numbers and higher feed and/or fertiliser inputs. However, some intensification strategies showed the potential to reduce the emissions per ton milk produced for some of the N-loss pathways. The model showed that the assessed mitigation measures can play an important role in ameliorating the increased emissions associated with intensification, but may not be adequate to entirely offset absolute increases. Further improvements in farm N use efficiency and alternatives to mineral fertilisers will be required to decouple production from reactive N emissions.
机译:全球对乳制品的需求增加以及欧盟乳配额的取消导致整个欧洲,特别是爱尔兰的乳制品生产扩大。同时,增加压力以减少氮(N)损失对空气和地下水对环境的影响。为了为满足环境目标并在经济上可持续的放牧系统制定草地管理策略,必须在农场系统一级评估针对氮效率的个体缓解措施。为此,我们开发了一个基于excel的N流量模型,该模型模拟了一个爱尔兰草类奶牛场,以评估农场管理对N效率,N损失,生产和经济绩效的影响。该模型被用于评估不同策略的实现效果,这些策略在农场一级对​​氮素利用,氮素损失途径和经济绩效实现增产目标。所研究的三种策略包括通过增加草产量,通过增加精饲料进料和应用高利润的草基系统来增加牛奶产量。此外,还采取了三项缓解措施;低氨排放浆液的应用,脲酶和硝化抑制剂的使用以及两者的结合被应用于这三种策略。由于动物数量增加以及饲料和/或肥料投入的增加,所有集约情景中的绝对氮排放量(最高124 kg N ha〜(-1))均高于基线(80 kg N ha〜(-1))。 。但是,一些强化策略显示了减少某些N损失途径的每吨牛奶排放量的潜力。该模型表明,评估出的缓解措施可以在缓解与集约化相关的排放增加方面发挥重要作用,但可能不足以完全抵消绝对增加。为了使生产与活性氮排放脱钩,将需要进一步提高农场氮的利用效率,并替代矿物肥料。

著录项

  • 来源
    《The Science of the Total Environment》 |2020年第10期|134606.1-134606.15|共15页
  • 作者单位

    Teagasc Crops Environment and Land Use Programme Johnstown Castle Wexford Ireland UCD School of Biology and Environmental Science UCD Dublin Belfield Dublin 4 Ireland Louis Bolk Institute Kosterijland 3-5 3981 AJ Bunnik the Netherlands;

    Wageningen University Department of Plant Sciences Droevendaalsesteeg 1 6708PB Wageningen the Netherlands;

    Teagasc Crops Environment and Land Use Programme Johnstown Castle Wexford Ireland;

    Teagasc Animal and Grassland and Innovation Research Centre Moorepark Fermoy Co. Cork Ireland;

    UCD School of Biology and Environmental Science UCD Dublin Belfield Dublin 4 Ireland Institute of Plant Ecology Justus Liebig University Giessen Heinrich-Buff-Ring 26 35392 Giessen Germany;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Ammonia; Nitrate; Nitrous oxide; N footprint; N flow model;

    机译:氨;硝酸盐笑气;N足迹;N流模型;

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