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Urban ecosystem services: Tree diversity and stability of tropospheric ozone removal

机译:城市生态系统服务:对流层臭氧去除的树木变化和稳定性

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摘要

Urban forests provide important ecosystem services, such as urban air quality improvement by removing pollutants. While robust evidence exists that plant physiology, abundance, and distribution within cities are basic parameters affecting the magnitude and efficiency of air pollution removal, little is known about effects of plant diversity on the stability of this ecosystem service. Here, by means of a spatial analysis integrating system dynamic modeling and geostatistics, we assessed the effects of tree diversity on the removal of tropospheric ozone (O _3) in Rome, Italy, in two years (2003 and 2004) that were very different for climatic conditions and ozone levels. Different tree functional groups showed complementary uptake patterns, related to tree physiology and phenology, maintaining a stable community function across different climatic conditions. Our results, although depending on the city-specific conditions of the studied area, suggest a higher function stability at increasing diversity levels in urban ecosystems. In Rome, such ecosystem services, based on published unitary costs of externalities and of mortality associated with O _3, can be prudently valued to roughly US$2 and $3 million/year, respectively.
机译:城市森林提供重要的生态系统服务,例如通过去除污染物来改善城市空气质量。虽然有稳健的证据存在植物生理学,丰富和城市内的分布是影响空气污染除去的幅度和效率的基本参数,但对于植物多样性对该生态系统服务稳定性的影响几乎是众所周知的。在这里,通过空间分析整合系统动态建模和地统计数据,我们评估了树多的影响对意大利的罗马的去除对流层臭氧(O _3),两年(2003年和2004年)非常不同气候条件和臭氧水平。不同的树官能团显示与树生理学和候选有关的互补摄取模式,在不同气候条件下保持稳定的社区功能。我们的结果虽然根据所研究的地区的特定情况,但在城市生态系统中增加了多样性水平时提出了更高的功能稳定性。在罗马,根据出版的外部性和与o _3相关的死亡率的这种生态系统服务可以谨慎地评估为大约2美元至300万美元/年。

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