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首页> 外文期刊>Agriculture, Ecosystems & Environment: An International Journal for Scientific Research on the Relationship of Agriculture and Food Production to the Biosphere >Sustainable nutrient management at field, farm and regional level: soil testing, nutrient budgets and the trade-off between lime application and greenhouse gas emissions.
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Sustainable nutrient management at field, farm and regional level: soil testing, nutrient budgets and the trade-off between lime application and greenhouse gas emissions.

机译:在田间,农场和区域各级进行可持续养分管理:土壤测试,养分预算以及石灰施用与温室气体排放之间的权衡。

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Pollution from agriculture has environmental consequences at local and global scales. Managing this pollution is challenging because of diffuse sources and complex relationships between aquatic and atmospheric emissions. We illustrate this for a UK county that has suffered outbreaks of microbial pollution and eutrophication. We surveyed 49 livestock farms covering 12% of total agricultural grazed land. Soil nutrient status and whole-farm nutrient balances were determined, and the environmental impact of alleviating sub-optimal soil pH by liming was estimated at the county level. Only 37% of fields contained more P than was required for satisfactory grass growth, and soil acidity and available K were often limiting production. The mean farm N, P and K balances were similar to a modelled farm in England & Wales and EU indicators for the majority of North West Europe. This suggests that local eutrophication events linked to agriculture are more likely to relate to improper timing of nutrient application rather than over-application. None of the surveyed farmers used nutrient decision support tools, largely due to a lack of awareness and competing sources of information. Liming soils to pH 6.0 was estimated to both reduce N-leaching and N2O emissions; however, the net climate-change impact would be negative as the direct CO2 emissions would exceed CO2 equivalent emissions of not liming by 394% (95% CI 201-21,232). Although liming currently presents a net cost to farmers, a sensitivity analysis suggests that reduced lime cost could lead to economic benefit to farmers but still increased greenhouse gas emissions. The results are applicable to all pasture-based agricultural systems where there is a drive to maintain or increase production through optimal soil and nutrient management. The findings demonstrate an important trade-off between reducing aquatic and atmospheric pollution and agricultural productivity, and the need to improve communication of this trade-off to farmers.
机译:农业污染对地方和全球范围的环境都有影响。由于源的扩散以及水生和大气排放之间的复杂关系,控制这种污染具有挑战性。我们为遭受微生物污染和富营养化暴发的英国郡县说明了这一点。我们对49个牧场进行了调查,这些牧场占农业牧场总面积的12%。确定了土壤养分状况和全农场养分平衡,并通过县域评估了通过石灰缓解次优土壤pH值对环境的影响。仅有37%的田地中磷含量超过了令人满意的草生长所需的磷水平,并且土壤酸度和有效钾常常限制了产量。农场的平均氮,磷和钾平衡与英格兰和威尔士的模型农场以及欧盟对大多数西北欧地区的指标相似。这表明与农业有关的局部富营养化事件更可能与不适当的养分施用时间有关,而不是与过量施用有关。受调查的农民都没有使用营养决策支持工具,这主要是由于缺乏意识和竞争性的信息来源。估计将土壤石灰化至pH 6.0可以减少N淋溶和N 2 O排放。但是,气候变化的净影响将是负面的,因为直接的CO 2 排放量将超过未限制的CO 2 等效排放量394%(95%CI 201-21,232) )。尽管目前加石灰给农民带来了净成本,但一项敏感性分析表明,降低石灰成本可以给农民带来经济利益,但温室气体排放量仍会增加。结果适用于所有通过优化土壤和养分管理来维持或增加产量的基于牧场的农业系统。研究结果表明,在减少水生和大气污染与农业生产力之间进行重要的权衡,以及需要改善这种权衡与农民之间的沟通。

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