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Integrating Land Market Feedbacks into Conservation Planning—A Mathematical Programming Approach

机译:将土地市场反馈纳入保护规划中-一种数学规划方法

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摘要

Nature reserves are often designated ad hoc. Despite increasing conservation efforts, loss of biodiversity is still accelerating. Considering land scarcity and demand for alternative uses, efficiency in conservation strongly correlates with efficiency in land allocation. Systematic conservation planning can effectively prioritize conservation activities. Previous studies minimize opportunity costs for given conservation targets. However, these studies assume constant marginal costs of habitat protection. We extend this cost minimization approach by also considering a dynamic representation of marginal costs. The more land is allocated to nature reserves, the higher are opportunity costs, i.e., costs of forgone agricultural production. This increase in costs results from changes in the prices of agricultural commodities. We employ a deterministic, spatially explicit mathematical optimization model to allocate species habitats by minimizing opportunity costs for setting aside land for conservation purposes. The model is designed as a mixed integer programming problem and solved with GAMS/CPLEX. Our results show the need for integrating land market feedbacks into conservation plan- ning. We find that ignoring land rent adjustments can lead to highly cost-ineffective solutions in reserve selection.
机译:自然保护区通常是临时指定的。尽管加大了保护力度,生物多样性的丧失仍在加速。考虑到土地稀缺和对替代用途的需求,保护效率与土地分配效率密切相关。系统的保护规划可以有效地确定保护活动的优先级。先前的研究将给定的保护目标的机会成本降至最低。但是,这些研究假设栖息地保护的边际成本不变。我们通过考虑边际成本的动态表示来扩展这种成本最小化方法。分配给自然保护区的土地越多,机会成本即放弃的农业生产成本就越高。成本的增加是由于农产品价格的变化所致。我们采用确定性的,空间明确的数学优化模型来分配物种栖息地,方法是将用于预留土地用于保护目的的机会成本降至最低。该模型被设计为混合整数编程问题,并使用GAMS / CPLEX进行了求解。我们的结果表明,需要将土地市场反馈意见纳入保护规划。我们发现,忽略土地租金的调整会导致储备选择中成本极低的解决方案。

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