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Linking an Economic and a Life-cycle Analysis Biophysical Model to Support Agricultural Greenhouse Gas Mitigation Policy

机译:链接经济和生命周期分析生物物理模型以支持农业温室气体减排政策

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摘要

Greenhouse gas (GHG) mitigation is one of the main challenges facing agriculture, exacerbated by the increasing demand for food, in particular for livestock products. Production expansion needs to be accompanied by reductions in the GHG emission intensity of agricultural products, if significant increases in emissions are to be avoided. Suggested farm management changes often have systemic effects on farm, therefore their investigation requires a whole farm approach. At the same time, changes in GHG emissions arising off-farm in food supply chains (pre- or post-farm) can also occur as a consequence of these management changes. A modelling framework that quantifies the whole-farm, life-cycle effects of GHG mitigation measures on emissions and farm finances has been developed. It is demonstrated via a case study of sexed semen on Scottish dairy farms. The results show that using sexed semen on dairy farms might be a cost-effective way to reduce emissions from cattle production by increasing the amount of lower emission intensity 'dairy beef' produced. It is concluded that a modelling framework combining a GHG life cycle analysis model and an economic model is a useful tool to help designing targeted agri-environmental policies at regional and national levels. It has the flexibility to model a wide variety of farm types, locations and management changes, and the LCA-approach adopted helps to ensure that GHG emission leakage does not occur in the supply chain.
机译:减少温室气体排放是农业面临的主要挑战之一,对食品尤其是对畜产品的需求不断增加,加剧了这一挑战。如果要避免排放量的显着增加,则必须在扩大生产的同时减少农产品的温室气体排放强度。建议的农场管理变更通常会对农场产生系统性影响,因此,他们的调查需要采用整个农场的方法。同时,由于这些管理上的变化,在食品供应链(农场前后)中的农场外产生的温室气体排放变化也可能发生。已经建立了一个模型框架,该框架量化了温室气体缓解措施对排放和农场财务的整个农场,生命周期的影响。苏格兰奶牛场的性精液案例研究证明了这一点。结果表明,在奶牛场使用性精液可能是增加牛的较低排放强度“奶牛”的数量来减少牛生产排放的一种经济有效的方法。结论是,结合温室气体生命周期分析模型和经济模型的建模框架是帮助设计区域和国家级目标农业环境政策的有用工具。它具有对各种农场类型,地点和管理变化进行建模的灵活性,采用的LCA方法有助于确保供应链中不会发生温室气体排放泄漏。

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