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From the LCA of food products to the environmental assessment of protected crops districts: A case-study in the south of Italy

机译:从食品的LCA到受保护农作物区的环境评估:意大利南部的案例研究

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摘要

In the present study, Life Cycle Assessment (LCA) methodology was applied to evaluate the energy consumption and environmental burdens associated with the production of protected crops in an agricultural district in the Mediterranean region. In this study, LCA was used as a 'support tool', to address local policies for sustainable production and consumption patterns, and to create a 'knowledge base' for environmental assessment of an extended agricultural production area. The proposed approach combines organisation-specific tools, such as Environmental Management Systems and Environmental Product Declarations, with the environmental management of the district. Questionnaires were distributed to producers to determine the life cycle of different protected crops (tomatoes, cherry tomatoes, peppers, melons and zucchinis), and obtain information on greenhouse usage (e.g. tunnel vs. pavilion). Ecoprofiles of products in the district were also estimated, to identify supply chain elements with the highest impact in terms of global energy requirements, greenhouse gas emissions, eutrophi-cation, water consumption and waste production. These results of this study enable selection of the 'best practices' and ecodesign solutions, to reduce the environmental impact of these products. Finally, sensitivity analysis of key LCA issues was performed, to assess the variability associated with different parameters: vegetable production; water usage; fertiliser and pesticide usage; shared greenhouse use; substitution of plastics coverings; and waste recycling.
机译:在本研究中,使用生命周期评估(LCA)方法来评估与地中海地区农业区中受保护作物的生产相关的能源消耗和环境负担。在本研究中,LCA被用作“支持工具”,以解决当地关于可持续生产和消费模式的政策,并为扩展农业生产区的环境评估创建“知识基础”。提议的方法将特定于组织的工具(例如环境管理系统和环境产品声明)与该地区的环境管理相结合。向生产者分发问卷,以确定不同受保护作物(西红柿,樱桃番茄,辣椒,甜瓜和西葫芦)的生命周期,并获取有关温室使用的信息(例如隧道与凉亭)。还估算了该地区产品的生态概况,以确定对全球能源需求,温室气体排放,富营养化,水消耗和废物产生影响最大的供应链要素。这项研究的这些结果使“最佳实践”和生态设计解决方案的选择成为可能,以减少这些产品对环境的影响。最后,对关键LCA问题进行了敏感性分析,以评估与不同参数相关的变异性:蔬菜生产;用水量;化肥和农药的使用;共同使用温室;替代塑料覆盖物;和废物回收。

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