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首页> 外文期刊>Journal of Cleaner Production >Obligatory inclusion of uncertainty avoids systematic underestimation of Danish pork water use and incentivizes provision of specific inventory data
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Obligatory inclusion of uncertainty avoids systematic underestimation of Danish pork water use and incentivizes provision of specific inventory data

机译:强制性地包含不确定性可以避免系统地低估丹麦猪肉的用水量,并鼓励提供具体的库存数据

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Livestock production is one of the most water-use-intensive economic sectors globally, and pork is the biggest of all meat sectors, necessitating continuous improvement of the sector's water use. Environmental product declarations are one way of incentivizing environmental performance, but with the majority of the water use occurring in primary pig and feed production, methods are required that quantify the water use over the entire value chain. Life Cycle Assessment applies such an approach, and the European Commission's Product Environmental Footprint framework uses this methodology. Product Environmental Footprint studies can use generic data for the pig production and feed cultivation stages and results communicated without uncertainty. Current study aimed to test if using database water footprint inventories could lead to a systematic underestimation of the water use in Danish pork production. A probabilistic surface- and groundwater footprint inventory assessment of the production of 100 g pork in Denmark was carried out. Danish average industry data was used to assess the possible range of water use for domestic Danish processes and FAOSTAT- and Water Footprint Network data for imported feed. Monte Carlo simulations were used to create water footprint inventory intervals, which were compared with intervals for three inventory databases: Ecolnvent, Agribalyse, and Agri-footprint. The water footprint inventory intervals for Danish pork ranged from 3.8 to 9.2 L/100 g with a coefficient of variation of 21%. Database values were significantly (p 0.001) left-shifted by 3.0-3.9 L/100 g and 4.4-6.6 L/100 g with significantly different (p 0.001) coefficients of variation of 6.4% and 12.3% for Agri-footprint and Agribalyse respectively. This makes using generic data preferable to using primary data for producers with low water efficiency. Instead of demanding primary data, it is recommended that uncertainties in databases capture the observable variability, and that environmental product declaration results must be communicated with their associated uncertainty. This could incentivize provision of primary data and avoid deliberate underestimations of water use. (C) 2019 Elsevier Ltd. All rights reserved.
机译:畜牧生产是全球用水最密集的经济部门之一,猪肉是所有肉类行业中最大的,因此必须不断改善该行业的用水量。宣布环保产品是激励环境绩效的一种方法,但是由于大部分用水发生在生猪和饲料生产中,因此需要在整个价值链中量化用水的方法。生命周期评估采用了这种方法,而欧洲委员会的产品环境足迹框架则采用了这种方法。产品环境足迹研究可以使用生猪生产和饲料养殖阶段的通用数据,并传达结果而没有不确定性。当前的研究旨在测试使用数据库水足迹清单是否会导致系统地低估丹麦猪肉生产中的用水量。对丹麦100克猪肉的产量进行了概率地表和地下水足迹清单评估。丹麦的平均行业数据用于评估丹麦国内流程的用水范围,而FAOSTAT和进口饲料的水足迹网络数据则用于评估。蒙特卡罗模拟用于创建水足迹清单间隔,并将其与三个清单数据库(EcoInvent,Agribalyse和Agri-footprint)的间隔进行比较。丹麦猪肉的水足迹清单间隔在3.8至9.2 L / 100 g之间,变异系数为21%。数据库值显着(p <0.001)左移3.0-3.9 L / 100 g和4.4-6.6 L / 100 g,Agri-footprint和Agri-footprint的变异系数显着不同(p <0.001)分别为6.4%和12.3%。 Agribalyse分别。这对于节水效率低的生产商而言,使用通用数据优于使用原始数据。建议不要使用原始数据,而应使用数据库中的不确定性捕获可观察到的可变性,并且必须将环境产品声明结果与相关的不确定性进行通信。这可以激励提供原始数据,避免故意低估用水量。 (C)2019 Elsevier Ltd.保留所有权利。

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