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首页> 外文期刊>European Journal of Agronomy >A cropping system assessment framework-Evaluating effects of introducing legumes into crop rotations
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A cropping system assessment framework-Evaluating effects of introducing legumes into crop rotations

机译:种植系统评估框架-评估将豆类引入轮作中的效果

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Methods are needed for the design and evaluation of cropping systems, in order to test the effects of introducing or reintroducing crops into rotations. The interaction of legumes with other crops (rotational effects) requires an assessment at the cropping system scale. The objective of this work is to introduce a cropping system framework to assess the impacts of changes in cropping systems in a participatory approach with experts, i.e., the integration of legumes into crop rotations and to demonstrate its application in two case studies. The framework consists of a rule-based rotation generator and a set of algorithms to calculate impact indicators. It follows a three-step approach: (i) generate rotations, (ii) evaluate crop production activities using environmental, economic and phytosanitary indicators, and (iii) design cropping systems and assess their impacts. Experienced agronomists and environmental scientists were involved at several stages of the framework development and testing in order to ensure the practicability of designed cropping systems. The framework was tested in Vastra Gotaland (Sweden) and Brandenburg (Germany) by comparing cropping systems with and without legumes. In both case studies, cropping systems with legumes reduced nitrous oxide emissions with comparable or slightly lower nitrate-N leaching, and had positive phytosanitary effects. In arable systems with grain legumes, gross margins were lower than in cropping systems without legumes despite taking pre-crop effects into account. Forage cropping systems with legumes had higher or equivalent gross margins and at the same time higher environmental benefits than cropping systems without legumes. The framework supports agronomists to design sustainable legume-supported cropping systems and to assess their impacts. (C) 2015 The Authors. Published by Elsevier B.V.
机译:为了测试将农作物引入轮作中或将农作物引入轮作中的效果,需要设计和评估种植系统的方法。豆类与其他作物的相互作用(旋转效应)需要在种植系统范围内进行评估。这项工作的目的是引入一种种植系统框架,以专家参与的方式评估种植系统变化的影响,即将豆科植物纳​​入轮作中,并证明其在两个案例研究中的应用。该框架由基于规则的旋转生成器和一组计算影响指标的算法组成。它采用三步走法:(i)进行轮作,(ii)使用环境,经济和植物检疫指标评估作物生产活动,(iii)设计种植系统并评估其影响。经验丰富的农学家和环境科学家参与了框架开发和测试的多个阶段,以确保设计的种植系统的实用性。通过比较有或没有豆类的种植系统,该框架已在Vastra Gotaland(瑞典)和Brandenburg(德国)进行了测试。在这两个案例研究中,豆类作物的种植系统都减少了氮氧化物的排放,而硝酸盐-N的淋溶却相当或略低,并且具有积极的植物检疫效果。尽管考虑了作物前期的影响,但在有豆类作物的耕作系统中,其毛利率要低于没有豆类的耕作系统。与没有豆类的种植系统相比,带有豆类的牧草种植系统具有更高或相当的毛利率,同时具有更高的环境效益。该框架支持农学家设计可持续的豆科植物支持的种植系统并评估其影响。 (C)2015作者。由Elsevier B.V.发布

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