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首页> 外文期刊>Global change biology bioenergy >A multi-criteria based review of models that predict environmental impacts of land use-change for perennial energy crops on water, carbon and nitrogen cycling
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A multi-criteria based review of models that predict environmental impacts of land use-change for perennial energy crops on water, carbon and nitrogen cycling

机译:基于多月份能源作物对水,碳和氮循环预测土地利用变化环境影响的多标准综述

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摘要

Reduction in energy sector greenhouse gas GHG emissions is a key aim of European Commission plans to expand cultivation of bioenergy crops. Since agriculture makes up 10–12% of anthropogenic GHG emissions, impacts of land-use change must be considered, which requires detailed understanding of specific changes to agroecosystems. The greenhouse gas (GHG) balance of perennials may differ significantly from the previous ecosystem. Net change in GHG emissions with land-use change for bioenergy may exceed avoided fossil fuel emissions, meaning that actual GHG mitigation benefits are variable. Carbon (C) and nitrogen (N) cycling are complex interlinked systems, and a change in land management may affect both differently at different sites, depending on other variables. Change in evapotranspiration with land-use change may also have significant environmental or water resource impacts at some locations. This article derives a multi-criteria based decision analysis approach to objectively identify the most appropriate assessment method of the environmental impacts of land-use change for perennial energy crops. Based on a literature review and conceptual model in support of this approach, the potential impacts of land-use change for perennial energy crops on GHG emissions and evapotranspiration were identified, as well as likely controlling variables. These findings were used to structure the decision problem and to outline model requirements. A process-based model representing the complete agroecosystem was identified as the best predictive tool, where adequate data are available. Nineteen models were assessed according to suitability criteria, to identify current model capability, based on the conceptual model, and explicit representation of processes at appropriate resolution. FASSET, ECOSSE, ANIMO, DNDC, DayCent, Expert-N, Ecosys, WNMM and CERES-NOE were identified as appropriate models, with factors such as crop, location and data availability dictating the final decision for a given project. A database to inform such decisions is included.
机译:减少能源部门温室气体温室气体排放是欧洲委员会扩大生物能量作物培养的主要目标。由于农业占100-12%的人为温室气体排放,因此必须考虑对土地使用变化的影响,这需要详细了解农业生物系统的具体变化。温室气体(GHG)常年的平衡可能与以前的生态系统有显着差异。生物能源土地使用变化的温室气体排放的净变化可能超过避免化石燃料排放,这意味着实际的温室气体缓解效益是可变的。碳(C)和氮气(N)循环是复杂的相互连接系统,并且土地管理的变化可能在不同的位点处不同地影响,这取决于其他变量。利用土地使用变化的蒸散变化也可能对某些地点产生重大的环境或水资源影响。本文得出了一种基于多月份能源作物对土地利用变化环境影响的最合适的评估方法的多标准的决策分析方法。基于支持这种方法的文献综述和概念模型,确定了在温室气体排放和蒸发蒸腾上的常年能源作物对常年能量作物的潜在影响,以及控制变量。这些发现用于构建决策问题并概述模型要求。代表完整的Agroecosystem的基于过程的模型被标识为最佳预测工具,其中可用的数据。根据适用性标准评估了19个模型,以确定当前模型能力,基于概念模型,并在适当的分辨率下显式表示流程。 FASSET,ECOSE,ANIMO,DNDC,DOSCENT,EXPERT-N,ECOSYS,WNMM和CERES-NOE被确定为适当的模型,具有作物,位置和数据可用性等因素,要求给定项目的最终决定。包括告知此类决定的数据库。

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