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Evaluating farm performance using agri-environmental indicators: Recent experiences for nitrogen management in The Netherlands

机译:使用农业环境指标评估农场绩效:荷兰氮管理的最新经验

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Intensive agriculture, characterized by high inputs, has serious implications on the environment. Monitoring and evaluation of projects aiming at designing, testing and applying more sustainable practices require instruments to asses agronomic as well as environmental performance. Guidelines for Good Agricultural Practice (GAP) or Good Farming Practice (GFP) define sustainable practices but give limited insight into their environmental performance. Agri-environmental indicators (AEIs) provide information on environmental as well as agronomic performance, which allows them to serve as analytical instruments in research and provide thresholds for legislation purposes. Effective AEIs are quantifiable and scientifically sound, relevant, acceptable to target groups, easy to interpret and cost-effective. This paper discusses application of four AEIs for nitrogen (N) management in three Dutch research projects: 'De Marke', 'Cows and Opportunities' and 'Farming with a future'. 'De Marke' applied Nitrogen Surplus and Groundwater Nitrate Concentration in the design and testing of environmentally sound dairy systems. 'Cows and Opportunities', testing and disseminating dairy systems designed at 'De Marke', mainly applied Nitrogen Surplus, while 'Farming with a future' used Nitrogen Surplus, Groundwater Nitrate Concentration and Residual Mineral Soil Nitrogen to support arable farmers in complying with Dutch legislation (MINAS). Nitrogen Surplus is quantifiable, appealing and easy to interpret, but lacks scientific soundness or a good relationship with groundwater quality. Nitrogen Use Efficiency is sensitive to changes in management, while Residual Mineral Soil Nitrogen is appealing and cheap, but has difficulties in scaling. Groundwater Nitrate Concentration lacks clear rules for sampling, is labor consuming, expensive and mainly used in combination with other indicators. AEIs enhanced improvements in N management by facilitating (i) definition of project goals, (ii) design of desired systems, (iii) evaluation of applied systems and (iv) improving effective communication. AEI applications in other countries show a similar pattern as found in The Netherlands. Limitations to AEI application relate to inconsistencies between different indicators, heterogeneity of soil characteristics and linkages of N, carbon and water management. AEIs should be applied in an integrated evaluation, at a scale that reflects the farm's spatial variability. Simple AEIs like Nitrogen Surplus should be supported by other indicators and/or model calculations. The paper concludes that AEls proved their value in design, implementation and testing of farming systems, but they should be used with care, always keeping in mind that indicators are simplifications of complex and variable processes. (c) 2006 Elsevier Ltd. All rights reserved.
机译:集约化农业以高投入为特征,对环境产生严重影响。旨在设计,测试和应用更多可持续实践的项目的监视和评估需要使用仪器来评估农艺和环境绩效。良好农业规范(GAP)或良好农业规范(GFP)准则定义了可持续的实践,但对其环境绩效的了解有限。农业环境指标(AEI)提供有关环境以及农艺表现的信息,这使它们可以用作研究中的分析工具并为立法目的提供阈值。有效的AEI可以量化且科学合理,相关,目标群体可以接受,易于解释且具有成本效益。本文讨论了三个荷兰研究项目中四个AEI在氮(N)管理中的应用:“ De Marke”,“ Cows and Opportunities”和“ Farming with a future”。 'De Marke'在环境无害乳制品系统的设计和测试中应用了氮过剩和地下水硝酸盐浓度。 “奶牛和机会”,测试和传播“ De Marke”设计的乳制品系统,主要使用氮过剩,而“有未来的耕作”则使用氮过剩,地下水硝酸盐浓度和残留矿质土壤氮来支持可耕种农民遵守荷兰语立法(MINAS)。氮过剩是可量化的,有吸引力的且易于解释的,但缺乏科学的依据或与地下水质量的良好关系。氮素利用效率对管理变化敏感,而残留矿质土壤氮素很有吸引力且便宜,但难以结垢。地下水硝酸盐浓度缺乏明确的采样规则,劳动量大,价格昂贵,并且主要与其他指标结合使用。 AEI通过促进(i)定义项目目标,(ii)所需系统的设计,(iii)对应用系统的评估以及(iv)改善有效的沟通来增强N管理方面的改进。其他国家/地区的AEI申请显示出与荷兰类似的模式。 AEI应用的局限性涉及不同指标之间的不一致,土壤特性的异质性以及氮,碳和水管理之间的联系。应将AEI应用于综合评估,其规模应反映出农场的空间变异性。其他指标和/或模型计算应支持简单的AEI(例如氮剩余)。本文的结论是,AEls在农业系统的设计,实施和测试中证明了其价值,但应谨慎使用,始终牢记指标是复杂和可变过程的简化。 (c)2006 Elsevier Ltd.保留所有权利。

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