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首页> 外文期刊>European Journal of Agronomy >Sustainability of European maize-based cropping systems: economic, environmental and social assessment of current and proposed innovative IPM-based systems.
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Sustainability of European maize-based cropping systems: economic, environmental and social assessment of current and proposed innovative IPM-based systems.

机译:欧洲基于玉米的种植系统的可持续性:对当前和提议的基于IPM的创新系统的经济,环境和社会评估。

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There is strong social and political pressure to reduce pesticide use in European agriculture. Evaluating the sustainability of cropping systems is a complex task due to the conflicting objectives underlying its economic, social and environmental dimensions. Multi-criteria assessment of different Integrated Pest Management (IPM) scenarios and evaluation of the most sustainable options at regional, national and European level is essential. Within the EU Network of Excellence ENDURE, two expert-based surveys were conducted (i.e. interviews), where experts from four European regions (northern region, Denmark and The Netherlands; central-eastern, Tolna and Bekes counties in Hungary; south-western, Ebro Valley in Spain; southern, Po Valley in Italy) determined which are the main current maize-based cropping systems (MBCSs) in their region and proposed innovative IPM-based systems. The DEXiPMReg. (DEXi Pest Management) model for arable cropping systems was used to evaluate and compare the economic and environmental sustainability of these systems. The social sustainability was evaluated by adapting indicators of this model to the specificities of maize systems. The assessments showed that all innovative rotated MBCSs proposed in the four regions can have a higher environmental sustainability than and maintain the same economic sustainability as current rotated systems. These cropping systems are thus acceptable for testing under "real" field conditions. Only the innovative continuous maize system proposed in the central-eastern region was both economically and environmentally more sustainable than the current system. All innovative systems had a positive impact on work safety but according to local expert opinion producers and consumers are not ready to implement them or to accept their higher-priced products, with the exception of consumers in the northern region. These results suggest the need for European and regional policies to encourage the adoption of innovative rotated MBCSs that have positive agronomic and environmental impact through IPM implementation. The major constraints that inhibit this adoption were predominantly relating to (1) the lack of access that farmers have to the practical knowledge needed to effectively manage these systems and (2) the insufficient consumer awareness and acceptance of product improvements associated with IPM. To overcome these constraints supportive policy environments, well-functioning knowledge management systems (including good farmer support networks) and effective marketing is required.
机译:减少欧洲农业使用农药的社会和政治压力很大。由于经济,社会和环境方面的目标相互矛盾,因此评估作物系统的可持续性是一项复杂的任务。必须对不同的病虫害综合防治方案进行多标准评估,并在区域,国家和欧洲各级评估最可持续的选择。在欧盟卓越网络ENDURE中,进行了两次基于专家的调查(即访谈),来自四个欧洲地区(北部地区,丹麦和荷兰;中东部,匈牙利的托尔纳和贝克斯县;西南部的匈牙利,西班牙的埃布罗谷(Ebro Valley),南部的意大利波谷(Italian Po Valley))确定了该地区当前基于玉米的主要种植系统(MBCS),并提出了基于IPM的创新系统。 DEXiPMReg。 (DEXi害虫管理)耕作系统模型用于评估和比较这些系统的经济和环境可持续性。通过使该模型的指标适应玉米系统的特殊性来评估社会可持续性。评估显示,在四个地区提出的所有创新的轮换MBCS都可以具有比当前轮换系统更高的环境可持续性,并保持相同的经济可持续性。因此,这些种植系统对于“真实”田间条件下的测试是可以接受的。仅中东部地区提出的创新型连续玉米系统在经济和环境上都比目前的系统更具可持续性。所有创新系统都对工作安全产生了积极影响,但根据当地专家的意见,生产者和消费者(北部地区的消费者除外)不愿意实施或接受价格较高的产品。这些结果表明,欧洲和地区政策需要鼓励采用创新的轮换MBCS,这些创新的MBCS通过IPM的实施对农业和环境产生积极影响。阻碍采用该系统的主要限制因素主要是(1)农民缺乏有效管理这些系统所需的实践知识,以及(2)消费者对IPM相关产品的认识不足和对产品改进的接受程度不足。为了克服这些限制,需要支持性的政策环境,需要运行良好的知识管理系统(包括良好的农民支持网络)和有效的营销。

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