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首页> 外文期刊>Environmental Modeling & Assessment >Exploring Environmental and Economic Trade-offs Associated with Aggregate Recycling from Decommissioned Forest Roads
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Exploring Environmental and Economic Trade-offs Associated with Aggregate Recycling from Decommissioned Forest Roads

机译:探索与退役林道的总体回收相关的环境和经济权衡

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摘要

Forest road decommissioning is a pro-active mechanism for preventing future habitat degradation and for increasing the likelihood of endangered salmonid survival in the western U.S. High implementation costs however preclude many desirable projects from being undertaken, especially on federally owned land. Previous research and real-world applications have demonstrated the cost savings potential of reusing aggregate recovered from forest roads during decommissioning. These cost savings can effectively subsidize decommissioning projects, sug gesting an economic benefit associated with improving environmental benefit. We present a mixed integer, multiple objective formulation to identify the efficient trade-off surface between conflicting economic and environmental criteria, where environmental benefit is defined as the hazard weighted length of roads decommissioned. We compare nondominated frontiers identified with and with out the opportunity to recycle aggregate. Our results suggest that aggregate recycling promotes a synergistic relationship between cost savings (subsidy) and environ mental performance, where subsidies generally increase with increasing environmental performance. Effective sub sidy values can reach 31% of total expenditure, at the maximum level of environmental benefit. Transportation managers are therefore able to recover and reuse a nonrenewable resource, while at the same time promoting economic and environmental efficiency.
机译:林道退役是一种预防未来生境退化和增加美国西部鲑鱼生存受到威胁的可能性的积极机制。然而,高昂的实施成本使许多可取的项目无法开展,尤其是在联邦拥有的土地上。先前的研究和实际应用表明,在退役期间重新使用从林道中回收的骨料可以节省成本。这些节省的成本可以有效地补贴退役项目,建议与改善环境效益相关的经济效益。我们提出了一个混合的,多目标的表述,以识别冲突的经济和环境标准之间的有效权衡面,其中环境收益定义为退役道路的危险加权长度。我们比较了有回收机会和没有回收机会的非主导领域。我们的研究结果表明,总回收可促进成本节省(补贴)与环境绩效之间的协同关系,其中补贴通常随着环境绩效的提高而增加。在最大的环境效益水平下,有效的补贴价值可以达到总支出的31%。因此,运输经理能够回收和再利用不可再生资源,同时提高经济和环境效率。

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