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首页> 外文期刊>Acta Horticulturae >Life Cycle Assessment of tomato crop production in a Mediterranean multispan tunnel greenhouse.
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Life Cycle Assessment of tomato crop production in a Mediterranean multispan tunnel greenhouse.

机译:地中海多跨隧道温室番茄生产的生命周期评估。

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The objective of this study was to identify the main bottlenecks of tomato production in a multispan tunnel greenhouse in a Mediterranean climate. This study was carried out as part of the EUPHOROS project, which aims to develop sustainable greenhouse production systems with a reduction of external inputs yet with high productivity. Life Cycle Assessment (LCA) was the methodology used to evaluate the environmental impacts of the production system. The system boundary was defined from raw materials extraction to farm gate, including materials waste disposal. The production system was modelled considering the following stages: structure, auxiliary equipment, climate control system, fertilizers, pesticides and waste. Results from the environmental assessment indicate that the burdens are the structure, auxiliary equipment and fertilizers. The structure was a major burden due to the large amount of steel in the frame. The high contribution of the auxiliary equipment was due to the substrate (perlite) manufacture and electricity consumption by the irrigation system. Fertilizers use had major environmental impacts as a result of both manufacturing processes and emissions because of their use. The main recommendations are oriented to reducing these impacts. Extension of greenhouse life span and increase in productivity could directly mitigate burdens per unit of produce, and recycling used substrate and reducing substrate volume per plant are both proposed. Since this soilless system was an open system, an efficient balance of both fertilizers and water is suggested.
机译:这项研究的目的是确定在地中海气候下多跨隧道温室番茄生产的主要瓶颈。这项研究是EUPHOROS项目的一部分,该项目旨在开发可持续的温室生产系统,减少外部投入,同时提高生产力。生命周期评估(LCA)是用于评估生产系统的环境影响的方法。系统边界是从原材料提取到农场大门的,包括材料废物处理。对生产系统进行建模时要考虑以下几个阶段:结构,辅助设备,气候控制系统,肥料,农药和废物。环境评估的结果表明,负担是结构,辅助设备和肥料。由于框架中大量钢材,结构成为主要负担。辅助设备的高贡献归因于基质(珍珠岩)的制造和灌溉系统的电力消耗。化肥的使用对制造过程和排放都造成了重大的环境影响。主要建议旨在减少这些影响。延长温室的寿命和提高生产率可以直接减轻单位产品的负担,并且都提出了回收用过的基质并减少每株植物的基质量。由于该无土系统是开放系统,因此建议有效平衡肥料和水。

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