Suppr超能文献

考虑加拿大养猪系统环境影响量化中的不确定性。

Accounting for uncertainty in the quantification of the environmental impacts of Canadian pig farming systems.

作者信息

Mackenzie S G, Leinonen I, Ferguson N, Kyriazakis I

出版信息

J Anim Sci. 2015 Jun;93(6):3130-43. doi: 10.2527/jas.2014-8403.

Abstract

The objective of the study was to develop a life cycle assessment (LCA) for pig farming systems that would account for uncertainty and variability in input data and allow systematic environmental impact comparisons between production systems. The environmental impacts of commercial pig production for 2 regions in Canada (Eastern and Western) were compared using a cradle-to-farm gate LCA. These systems had important contrasting characteristics such as typical feed ingredients used, herd performance, and expected emission factors from manure management. The study used detailed production data supplied by the industry and incorporated uncertainty/variation in all major aspects of the system including life cycle inventory data for feed ingredients, animal performance, energy inputs, and emission factors. The impacts were defined using 5 metrics-global warming potential, acidification potential, eutrophication potential (EP), abiotic resource use, and nonrenewable energy use-and were expressed per kilogram carcass weight at farm gate. Eutrophication potential was further separated into marine EP (MEP) and freshwater EP (FEP). Uncertainties in the model inputs were separated into 2 types: uncertainty in the data used to describe the system (α uncertainties) and uncertainty in impact calculations or background data that affects all systems equally (β uncertainties). The impacts of pig production in the 2 regions were systematically compared based on the differences in the systems (α uncertainties). The method of ascribing uncertainty influenced the outcomes. In eastern systems, EP, MEP, and FEP were lower (P < 0.05) when assuming that all uncertainty in the emission factors for leaching from manure application was β. This was mainly due to increased EP resulting from field emissions for typical ingredients in western diets. When uncertainty in these emission factors was assumed to be α, only FEP was lower in eastern systems (P < 0.05). The environmental impacts for the other impact categories were not significantly different between the 2 systems, despite their aforementioned differences. In conclusion, a probabilistic approach was used to develop an LCA that systematically dealt with uncertainty in the data when comparing multiple environmental impacts measures in pig farming systems for the first time. The method was used to identify differences between Canadian pig production systems but can also be applied for comparisons between other agricultural systems that include inherent variation.

摘要

本研究的目的是开发一种用于养猪系统的生命周期评估(LCA),该评估将考虑输入数据中的不确定性和变异性,并允许对生产系统之间的环境影响进行系统比较。使用从摇篮到农场大门的生命周期评估方法,比较了加拿大两个地区(东部和西部)商业化养猪生产的环境影响。这些系统具有重要的对比特征,如使用的典型饲料成分、猪群性能以及粪便管理的预期排放因子。该研究使用了行业提供的详细生产数据,并在系统的所有主要方面纳入了不确定性/变异性,包括饲料成分的生命周期清单数据、动物性能、能源投入和排放因子。使用五个指标来定义影响——全球变暖潜势、酸化潜势、富营养化潜势(EP)、非生物资源利用和不可再生能源利用——并以农场大门每千克胴体重来表示。富营养化潜势进一步细分为海洋富营养化潜势(MEP)和淡水富营养化潜势(FEP)。模型输入中的不确定性分为两种类型:用于描述系统的数据中的不确定性(α不确定性)和影响所有系统的影响计算或背景数据中的不确定性(β不确定性)。基于系统差异(α不确定性),系统地比较了两个地区养猪生产的影响。不确定性的归因方法影响了结果。在东部系统中,当假设粪便施用淋溶排放因子中的所有不确定性为β时,EP、MEP和FEP较低(P < 0.05)。这主要是由于西部日粮中典型成分的田间排放导致东部系统的EP增加。当假设这些排放因子中的不确定性为α时,东部系统中只有FEP较低(P < 0.05)。尽管两个系统存在上述差异,但其他影响类别的环境影响在两个系统之间没有显著差异。总之,首次使用概率方法开发了一种生命周期评估,在比较养猪系统的多种环境影响措施时,该评估系统地处理了数据中的不确定性。该方法用于识别加拿大养猪生产系统之间的差异,但也可用于包括固有变异性的其他农业系统之间的比较。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验