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Integrating spatiotemporal dynamics of natural capital security and urban ecosystem carbon metabolism

机译:整合自然资本安全和城市生态系统碳代谢的时空动态

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The purpose of the study is to address and quantify the increase in urban expansion and carbon (C) metabolism burden on ecosystem service value (ESV), net ecosystem productivity (NEP), and C storage of urban footprint. Urban footprint is required to meet the demands arising from economic consumption and production as well as waste accumulation and assimilation. Spatiotemporal changes in main land covers (LCs) were detected using remotely sensed data (Landsat 5 and 8, and digital elevation model) between 1987 and 2016. Changes in ESV and C influx, efflux and pools associated with LC dynamics were approximated using global proxies for a western Mediterranean region in Turkey of 54,162km(2). Urban expansion over the 29-year period decreased ESV by 22% ($7.28 +/- 0.4 billion), NEP by 4.3% (2.3 +/- 9GgC), and total ecosystem C pool by 10.9% (1008.3 +/- 1006GgC) and led to a 62.8% appropriation of the total NEP (50.1 +/- 51GgC) of the urban footprint in 2016. The main cause of the environmental degradation across the study region was the loss of the seminatural areas. Our findings emphasize that the deterioration rate of ecosystems should be slowed down by natural capital-friendly decisions and should not exceed rehabilitation rate of damaged ecosystems in the face of rapidly increasing burdens of the cities on their footprint.
机译:这项研究的目的是解决和量化城市扩展和碳(C)代谢负担对生态系统服务价值(ESV),净生态系统生产力(NEP)和城市足迹C存储的增加。需要城市足迹来满足经济消费和生产以及废物积累和吸收所产生的需求。使用遥感数据(Landsat 5和8,以及数字高程模型)在1987年至2016年之间检测了主要土地覆被(LCs)的时空变化。ESV和C涌入量,外排量和与LC动态相关的池的变化可使用全球代理进行近似估算土耳其西部地中海地区54162公里(2)。在29年中,城市扩张使ESV下降了22%(7.28 +/- 4亿美元),NEP下降了4.3%(2.3 +/- 9GgC),生态系统总碳下降了10.9%(1008.3 +/- 1006GgC),导致2016年整个NEP(50.1 +/- 51GgC)占城市总面积的62.8%。整个研究区域环境退化的主要原因是半自然地区的丧失。我们的发现强调,应对自然资本友好的决定应减缓生态系统的恶化速度,并且在城市脚印负担迅速增加的情况下,不应超过受损生态系统的恢复速度。

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