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An environmental impact calculator for greenhouse production systems

机译:温室生产系统的环境影响计算器

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Multiple web-based calculators have come on the market as tools to support sustainable decision making, but few are available to agriculture. Life cycle assessment (LCA) has proved to be an objective, transparent tool for calculating environmental impacts throughout the life cycle of products and services, but can often be too complex for non-specialists. The objective of this study was therefore to develop an environmental support tool to determine the environmental impacts of protected crops. An effort was made to provide an easy-to-use tool in order to reach a wide audience and help horticulture stakeholders choose efficient options to mitigate the environmental impacts of protected crops. Users can estimate the environmental performance of their crops by entering a limited amount of data and following a few easy steps. A questionnaire must be answered with data on the crop, greenhouse dimensions, substrate, waste management, and the consumption of water, energy, fertilisers and pesticides. The calculator was designed as a simplified LCA, based on two scenarios analysed in detail in previous tasks of the EUPHOROS project and used as reference systems in this study. Two spreadsheets were provided based on these reference scenarios: one for a tomato crop in a multi-tunnel greenhouse under Southern European climate conditions and the other for a tomato crop in a Venlo glass greenhouse under Central European climate conditions. The selected functional unit was one tonne of tomatoes. Default data were given for each reference system for users who did not have complete specific data and to provide results for comparison with users' own results.rnThe results were presented for water use as an inventory indicator and for the impact categories abiotic depletion, acidification, eutrophication, global warming, photochemical oxidation and cumulative energy demand. In the multi-tunnel greenhouse, the main contributors based on the default data were the structure, fertilisers and auxiliary equipment, whereas, for the Venlo glass greenhouse, the main contributors were energy consumption for heating and, to a lesser extent, the structure. The results were evaluated for alternative options of electricity, fertilisers, pesticides and means of transport, as these areas were found to have potential variability, depending on the characterisation model and datasets used.rnThe resulting calculator is a useful tool to simulate the environmental performance of protected horticultural production systems and is also helpful to growers and advisers for evaluating the efficiency of input reduction options.
机译:市场上有多种基于网络的计算器,它们是支持可持续决策的工具,但很少用于农业。生命周期评估(LCA)已被证明是一种客观,透明的工具,可用于计算产品和服务整个生命周期中的环境影响,但对于非专业人员而言,它往往过于复杂。因此,本研究的目的是开发一种环境支持工具,以确定受保护作物对环境的影响。努力提供一种易于使用的工具,以覆盖广泛的受众,并帮助园艺业利益相关者选择有效的方案,以减轻受保护作物对环境的影响。用户可以通过输入有限的数据并遵循一些简单的步骤来估算其作物的环境绩效。必须向调查表回答有关作物,温室尺寸,基质,废物管理以及水,能源,肥料和农药消耗的数据。该计算器被设计为简化的LCA,基于EUPHOROS项目先前任务中详细分析的两种情况,并在本研究中用作参考系统。根据这些参考方案提供了两个电子表格:一个是在南欧气候条件下的多通道温室番茄作物,另一个是在中欧气候条件下的Venlo玻璃温室中番茄作物。选择的功能单位是一吨西红柿。对于没有完全特定数据的用户,将为每个参考系统提供默认数据,并提供结果以与用户自己的结果进行比较。rn结果以水资源使用量作为清单指标以及非生物耗竭,酸化,富营养化,全球变暖,光化学氧化和累积能量需求。在多通道温室中,基于默认数据的主要贡献者是结构,肥料和辅助设备,而在Venlo玻璃温室中,主要贡献者是供暖能耗,其次是结构能耗。对结果进行了评估,以寻找电力,肥料,农药和运输工具的替代选择,因为这些区域被发现具有潜在的可变性,具体取决于所使用的表征模型和数据集。保护园艺生产系统,也有助于种植者和顾问评估减少投入的选择的效率。

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