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Comparing Path Dependence and Spatial Targeting of Land Use in Implementing Climate Change Responses

机译:在实施气候变化对策中比较土地利用的路径依赖和空间目标

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Land use patterns are the consequence of dynamic processes that often include important legacy issues. Evaluation of past trends can be used to investigate the role of path dependence in influencing future land use through a reference “business as usual” (BAU) scenario. These issues are explored with regard to objectives for woodland expansion in Scotland as a major pillar of climate change policy. Land use changes based upon recent trends and future transient scenarios to 2050 are used to assess viability of targets for reducing greenhouse gas emissions using analysis based on net emission change factors. The BAU scenario is compared with alternative future scenarios incorporating policy targets and stronger spatial targeting of land use change. Analysis highlights recent trends in new woodland planting on lower quality agricultural land due to socioeconomic and cultural factors. This land is mainly in the wetter uplands and often on carbon-rich soils. Woodland planting following this path dependence can therefore result in net carbon emissions for many years into the future due to soil disturbance during establishment. In contrast, alternative scenarios with more lowland woodland planting have net sequestration potential, with greatest benefits when carbon-rich soils are excluded from afforestation. Spatial targeting can also enhance other co-benefits such as habitat networks and climate change adaptation.
机译:土地使用模式是动态过程的结果,该过程通常包括重要的遗留问题。对过去趋势的评估可用于通过参考“一切照旧”(BAU)方案调查路径依赖在影响未来土地使用中的作用。这些问题是关于苏格兰林地扩张目标的探讨,该目标是气候变化政策的主要支柱。基于最近的趋势和到2050年的未来瞬态情景的土地利用变化,将基于净排放变化因子的分析,用于评估减少温室气体排放目标的可行性。将BAU情景与包含政策目标和更严格的土地利用变化空间目标的未来替代情景进行了比较。分析强调了由于社会经济和文化因素而在劣质农业土地上进行新林地种植的最新趋势。这片土地主要在湿润的山地上,通常在富含碳的土壤上。因此,由于建立过程中的土壤扰动,遵循这种路径依赖性的林地种植会导致未来许多年的净碳排放。相比之下,低地林地种植更多的替代方案具有净固存潜力,当将高碳土壤排除在造林之外时,其收益最大。以空间为目标还可以增强其他共同利益,例如栖息地网络和适应气候变化。

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    《Land》 |2014年第3期|共页
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