Developing an integrated urban ecological efficiency framework for spatial ecological planning: A case on a tropical mega metropolitan area of the global south

IF 8.5 1区 地球科学 Q1 GEOSCIENCES, MULTIDISCIPLINARY Geoscience frontiers Pub Date : 2023-01-01 DOI:10.1016/j.gsf.2022.101489
Manob Das , Arijit Das , Paulo Pereira
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引用次数: 6

Abstract

Rapid urbanization has emerged as one of the most critical challenges to ecological sustainability in urban areas. In developing countries, the degradation of the ecosystem is more prominent due to the lack of urban planning. Thus, it has become urgent for researchers to identify the ecological efficiency (EE) changes imposed by urban expansion and promote sustainable land use planning. This study aims to develop a comprehensive urban ecological efficiency (UEE) framework in the Kolkata Metropolitan Area (KMA), India, from 2000 to 2020. Principal component analysis (PCA) was used to develop a remote sensing-based UEE index (UEEI) based on five effective ecological parameters (Greenness, Dryness, Heat, Wetness and vegetation health. A single sensitivity parameter was also calculated to determine the role of a single parameter based on which management strategies can be carried out. The findings showed that (i) there were substantial deteriorations of UEE in the last 20 years. In 2000 the areas with good EE were about 65.5% which declined to 53.72% in 2010 and 20.87% in 2020. The areas with good UEE decreased 68% and 61% from 2000 to 2020 and 2010 to 2020, respectively; (ii) the areas with good UEE were 52% in 2000, while 38% in 2010. Most urban centres (Bhadreshwar, Champdani, Srirampur, Bally, Howrah, Kamarhati, Baranagar, Dum Dum, South Dum Dum, Rajarhat, Bidhannagar) located around the Kolkata megacity are characterized by poor and very poor EE (ranges of 0.60–1.00). Thus, spatiotemporal pattern of UEE could assist to clarify the administrative responsibilities as well as obligations. In addition to this, the UEE framework can help for scientific guidance of urban ecosystem protection and restoration through comprehensive spatial landscape planning.

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空间生态规划的综合城市生态效率框架构建——以南半球热带特大都市为例
快速城市化已成为城市地区生态可持续性面临的最严峻挑战之一。在发展中国家,由于缺乏城市规划,生态系统的退化更为突出。因此,识别城市扩张带来的生态效率变化,促进土地利用可持续规划已成为当务之急。本研究旨在建立2000 - 2020年印度加尔各答大都市区(KMA)的综合城市生态效率(UEE)框架。利用主成分分析(PCA)建立了基于5个有效生态参数(绿度、干度、热度、湿度和植被健康度)的遥感UEE指数(UEEI)。还计算了单个灵敏度参数,以确定单个参数的作用,并在此基础上执行管理策略。结果表明:(1)在过去20年中,UEE出现了实质性的恶化。从2000年的65.5%下降到2010年的53.72%和2020年的20.87%。2000 - 2020年和2010 - 2020年,UEE优良区分别减少68%和61%;(ii)综合能源效率良好的地区在2000年为52%,2010年为38%。位于加尔各答大城市周围的大多数城市中心(Bhadreshwar, Champdani, Srirampur, Bally, Howrah, Kamarhati, Baranagar, Dum Dum, South Dum Dum, Rajarhat, Bidhannagar)的特点是低和非常低的EE(范围为0.60-1.00)。因此,电子商务的时空格局有助于明确行政责任和义务。此外,UEE框架还可以通过综合空间景观规划,为城市生态系统保护和修复提供科学指导。
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来源期刊
Geoscience frontiers
Geoscience frontiers Earth and Planetary Sciences-General Earth and Planetary Sciences
CiteScore
17.80
自引率
3.40%
发文量
147
审稿时长
35 days
期刊介绍: Geoscience Frontiers (GSF) is the Journal of China University of Geosciences (Beijing) and Peking University. It publishes peer-reviewed research articles and reviews in interdisciplinary fields of Earth and Planetary Sciences. GSF covers various research areas including petrology and geochemistry, lithospheric architecture and mantle dynamics, global tectonics, economic geology and fuel exploration, geophysics, stratigraphy and paleontology, environmental and engineering geology, astrogeology, and the nexus of resources-energy-emissions-climate under Sustainable Development Goals. The journal aims to bridge innovative, provocative, and challenging concepts and models in these fields, providing insights on correlations and evolution.
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