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基于过程的模拟研究:在当前和未来气候条件下城市树木的生长和生态系统服务功能。

Process based simulation of tree growth and ecosystem services of urban trees under present and future climate conditions.

机构信息

Technical University Munich, Hans-Carl-von-Carlowitz-Platz 2, 85354 Freising, Germany.

Technical University of Munich, Emil-Ramann-Straße 6, 85354 Freising, Germany.

出版信息

Sci Total Environ. 2019 Aug 1;676:651-664. doi: 10.1016/j.scitotenv.2019.04.235. Epub 2019 May 3.

Abstract

Global processes of urban growth lead to severe environmental impacts such as temperature increase with an intensification of the urban heat island effect, and hydrological changes with far reaching consequences for plant growth and human health and well-being. Urban trees can help to mitigate the negative effects of climate change by providing ecosystem services such as carbon storage, shading, cooling by transpiration or reduction of rainwater runoff. The extent of each ecosystem service is closely linked with the tree species as well as with a tree's age, size, structure and vitality. To evaluate the ecosystem services of urban trees, the process-based growth model CityTree was developed which is able to estimate not only tree growth but also the species-specific ecosystem services including carbon storage, transpiration and runoff, shading, and cooling by transpiration. The model was parametrized for the species small-leaved lime (Tilia cordata), robinia (Robinia pseudoacacia), plane (Platanus×acerifolia) and horse chestnut (Aesculus hippocastanum). The model validation for tree growth (stem diameter increment, coefficient of correlation=0.76) as well as for the water balance (transpiration, coefficient of correlation=0.92) seems plausible and realistic. Tree growth and ecosystem services were simulated and analyzed for Central European cities both under current climate conditions and for the future climate scenarios. The simulations revealed that urban trees can significantly improve the urban climate and mitigate climate change effects. The quantity of the improvements depends on tree species and tree size as well as on the specific site conditions. Such simulation scenarios can be a proper basis for planning options to mitigate urban climate changes in individual cities.

摘要

全球城市增长进程导致了严重的环境影响,如气温上升加剧了城市热岛效应,以及水文变化对植物生长和人类健康与福祉产生深远影响。城市树木可以通过提供碳储存、遮荫、蒸腾冷却或减少雨水径流等生态系统服务,帮助减轻气候变化的负面影响。每种生态系统服务的程度都与树种以及树木的年龄、大小、结构和活力密切相关。为了评估城市树木的生态系统服务,开发了基于过程的生长模型 CityTree,该模型不仅能够估计树木的生长,还能够估计包括碳储存、蒸腾和径流、遮荫和蒸腾冷却在内的特定物种的生态系统服务。该模型已针对小叶绿杨(Tilia cordata)、刺槐(Robinia pseudoacacia)、悬铃木(Platanus×acerifolia)和七叶树(Aesculus hippocastanum)等物种进行了参数化。树木生长(茎直径增量,相关系数=0.76)和水量平衡(蒸腾,相关系数=0.92)的模型验证似乎合理且现实。根据当前气候条件和未来气候情景,对中欧城市的树木生长和生态系统服务进行了模拟和分析。模拟结果表明,城市树木可以显著改善城市气候,减轻气候变化的影响。改进的数量取决于树种和树木大小以及特定的场地条件。这种模拟方案可以为个别城市缓解城市气候变化的规划方案提供适当的依据。

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