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Modeling the provision of air-quality regulation ecosystem service provided by urban green spaces using lichens as ecological indicators

机译:使用地衣作为生态指标,建模城市绿地提供的空气质量监管生态系统服务

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The UN Sustainable Development Goals states that urban air pollution must be tackled to create more inclusive, safe, resilient and sustainable cities. Urban green infrastructures can mitigate air pollution, but a crucial step to use this knowledge into urban management is to quantify how much air-quality regulation can green spaces provide and to understand how the provision of this ecosystem service is affected by other environmental factors. Considering the insufficient number of air quality monitoring stations in cities to monitor the wide range of natural and anthropic sources of pollution with high spatial resolution, ecological indicators of air quality are an alternative cost-effective tool. The aim of this work was to model the supply of air-quality regulation based on urban green spaces characteristics and other environmental factors. For that, we sampled lichen diversity in the centroids of 42 urban green spaces in Lisbon, Portugal. Species richness was the best biodiversity metric responding to air pollution, considering its simplicity and its significative response to the air pollutants concentration data measured in the existent air quality monitoring stations. Using that metric, we then created a model to estimate the supply of air quality regulation provided by green spaces in all green spaces of Lisbon based on the response to the following environmental drivers: the urban green spaces size and its vegetation density. We also used the unexplained variance of this model to map the background air pollution. Overall, we suggest that management should target the smallest urban green spaces by increasing green space size or tree density. The use of ecological indicators, very flexible in space, allow the understanding and the modeling of the provision of air-quality regulation by urban green spaces, and how urban green spaces can be managed to improve air quality and thus improve human well-being and cities resilience. (c) 2019 Elsevier B.V. All rights reserved.
机译:联合国可持续发展目标指出,必须解决城市空气污染,以创造更具包容性,安全,可持续和可持续的城市。城市绿色基础设施可以减轻空气污染,但将这种知识的关键步骤在城市管理中使用,是量化绿色空间可以提供多少空气质量,并了解这种生态系统服务的提供方式受其他环境因素的影响。考虑到城市空气质量监测站数量不足,以监测具有高空间分辨率的广泛自然和人类污染源,空气质量的生态指标是一种替代性成本效益的工具。这项工作的目的是根据城市绿地特征和其他环境因素建模供应空气质量监管。为此,我们在葡萄牙里斯本42个城市绿地的质心中取样了地衣多样性。物种丰富性是最佳的生物多样性度量,响应空气污染,考虑到其在存在的空气质量监测站中测量的空气污染物浓度数据的简单性和重要的反应。使用该指标,我们创建了一种模型来估计基于对内容的所有绿色空间中的绿色空间提供的空气质量调节,基于对以下环境司机的响应:城市绿地尺寸及其植被密度。我们还使用了这种模型的无法解释的方差来映射背景空气污染。总体而言,我们建议管理应通过增加绿地空间尺寸或树密度来定位最小的城市绿地。使用生态指标,在太空中非常灵活,允许了解城市绿地提供空气质量规模,以及城市绿地如何管理以提高空气质量,从而改善人类福祉城市弹性。 (c)2019 Elsevier B.v.保留所有权利。

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