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A Needs-Driven Multi-Objective Approach to Allocate Urban Ecosystem Services from 10000 Trees

机译:一种需求驱动的多目标方法用于从10000棵树中分配城市生态系统服务

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摘要

Urban areas face challenges including vehicular emissions, stormwater runoff, and sedentary lifestyles. Communities recognize the value of trees in mitigating these challenges by absorbing pollution and enhancing walkability. However, siting trees to optimize multiple benefits requires a systems approach that may cross sectors of management and expertise. We present a spatially-explicit method to optimize tree planting in Durham, NC, a rapidly growing urban area with an aging tree stock. Using GIS data and a ranking approach, we explored where Durham could augment its current stock of willow oaks through its plans to install 10,000 mid-sized deciduous trees. Data included high-resolution landcover metrics developed by the U.S. Environmental Protection Agency (EPA), demographics from the U.S. Census, an attributed roads dataset licensed to the EPA, and sidewalk information from the City of Durham. Census block groups (CBGs) were ranked for tree planting according to single and multiple objectives including stormwater reduction, emissions buffering, walkability, and protection of vulnerable populations. Prioritizing tree planting based on single objectives led to four sets of locations with limited geographic overlap. Prioritizing tree planting based on multiple objectives tended to favor historically disadvantaged CBGs. The four-objective strategy met the largest proportion of estimated regional need. Based on this analysis, the City of Durham has implemented a seven-year plan to plant 10,000 trees in priority neighborhoods. This analysis also found that any strategy which included the protection of vulnerable populations generated more benefits than others.
机译:城市地区面临的挑战包括车辆排放,雨水径流和久坐的生活方式。社区认识到树木通过吸收污染和增强步行能力来缓解这些挑战的价值。但是,选址树以优化多种收益需要一种可能跨越管理和专业知识领域的系统方法。我们提出了一种空间明晰的方法来优化北卡罗来纳州达勒姆市的树木种植,达勒姆市是一个快速发展的城市地区,树木种群正在老化。利用GIS数据和排名方法,我们探讨了达勒姆计划安装10,000棵中型落叶乔木的计划,在哪里可以增加其现有的柳树橡木库存。数据包括美国环境保护署(EPA)开发的高分辨率土地覆盖指标,美国人口普查的人口统计数据,EPA许可的归因道路数据集以及达勒姆市的人行道信息。人口普查街区组(CBGs)根据一项或多项目标进行了植树排序,这些目标包括减少暴雨,减少排放,步行和保护脆弱人群。根据单一目标对树木进行优先排序会导致四组地理位置重叠有限的地点。基于多个目标对树木进行优先排序往往有利于历史上处于不利地位的CBG。四目标战略满足了估计的最大区域需求。基于此分析,达勒姆市已实施了一项为期7年的计划,在优先社区种植1万棵树。该分析还发现,任何包括保护弱势群体的战略都比其他战略产生更多的利益。

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