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Internalising the costs of fragmentation and nutrient deposition in spatial planning: extending a decision support tool for the Netherlands.

机译:在空间规划中内部化破碎和养分沉积的成本:将决策支持工具扩展到荷兰。

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摘要

The Land Use Scanner (LUS) is a decision support system for land use planning that is widely used in the Netherlands. The model yields solutions that have a high resolution (500x500 m) and reflect economic equilibrium in the land market, in which eighteen types of land use and nine aggregated habitat types competitively bid for locations. Here, an extension to the LUS is presented that enables the internalisation of environmental externalities. The focus in this study is on two important externalities, namely ammonia emissions from agriculture and habitat fragmentation. We simulate four IPCC-based land use scenarios and assess the level of fragmentation of the nine habitat types. We also perform sensitivity analyses in the most market-oriented scenario on the effectiveness of market-based instruments in promoting more efficient land allocation. The simulation results suggest that particularly the habitat type 'rain-fed mires and bogs' is susceptible to fragmentation. The sensitivity analyses show that internalising the damage costs of fragmentation resulted in smaller changes in land allocation than internalising those of nitrogen deposition. For both instruments, the policy effort was large in relation to the efficiency gains in land allocation.
机译:土地使用扫描仪(LUS)是荷兰土地使用规划的决策支持系统。该模型产生的解决方案具有高分辨率(500x500 m),反映了土地市场上的经济平衡,其中有18种土地利用类型和9种聚集栖息地类型竞争性地竞标地点。在此,提出了对LUS的扩展,它可以实现环境外部性的内部化。这项研究的重点是两个重要的外部因素,即农业排放的氨和生境破碎化。我们模拟了四种基于IPCC的土地利用方案,并评估了9种栖息地类型的破碎程度。我们还将在最面向市场的情况下进行敏感性分析,以市场为基础的工具在促进更有效的土地分配方面的有效性。模拟结果表明,特别是栖息地类型的“雨养沼泽和沼泽”易碎裂。敏感性分析表明,内部化破碎的破坏成本所导致的土地分配变化比内部化氮沉降的变化要小。对于这两种工具,就土地分配效率的提高而言,政策努力都是巨大的。

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