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High-Resolution Mapping of the Urban Built Environment Stocks in Beijing

机译:北京市城市建筑环境种群的高分辨率制图

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摘要

Improving our comprehension of the weight and spatial distribution of urban built environment stocks is essential for informing urban resource, waste, and environmental management, but this is often hampered by inaccuracy and inconsistency of the typology and material composition data of buildings and infrastructure. Here, we have integrated big data mining and analytics techniques and compiled a local material composition database to address these gaps, for a detailed characterization of the quantity, quality, and spatial distribution (in 500 m × 500 m grids) of the urban built environment stocks in Beijing in 2018. We found that 3621 megatons (140 ton/cap) of construction materials were accumulated in Beijing's buildings and infrastructure, equaling to 1141 Mt of embodied greenhouse gas emissions. Buildings contribute the most (63% of total, roughly half in residential and half in nonresidential) to the total stock and the subsurface stocks account for almost half. Spatially, the belts between 3 and 7 km from city center (approximately 5 t/m~2) and commercial grids (approximately 8 t/m~2) became the densest. Correlation analyses between material stocks and socioeconomic factors at a high resolution reveal an inverse relationship between building and road stock densities and suggest that Beijing is sacrificing skylines for space in urban expansion. Our results demonstrate that harnessing emerging big data and analytics (e.g., point of interest data and web crawling) could help realize more spatially refined characterization of built environment stocks and highlight the role of such information and urban planning in urban resource, waste, and environmental strategies.
机译:增强我们对城市建成环境存量的权重和空间分布的理解对于通知城市资源,废物和环境管理至关重要,但这常常由于建筑物和基础设施的类型和材料组成数据的不准确和不一致而受到阻碍。在这里,我们集成了大数据挖掘和分析技术,并编译了本地材料成分数据库来解决这些差距,以详细表征城市建筑环境的数量,质量和空间分布(在500 m×500 m网格中) 2018年北京的库存量。我们发现,北京的建筑物和基础设施中累积了3621百万吨(140吨/瓶)的建筑材料,相当于1141 Mt的体现温室气体排放量。建筑物对总存量的贡献最大(占总数的63%,其中约一半为住宅,非居民为一半),地下存量几乎占一半。在空间上,距市中心3至7公里(约5 t / m〜2)和商业网格(约8 t / m〜2)的带变得最密集。高分辨率的物质存量与社会经济因素之间的相关分析揭示了建筑密度与道路存量密度之间的反比关系,并表明北京正在牺牲城市扩张中的天际线。我们的结果表明,利用新兴的大数据和分析(例如,兴趣点数据和网络爬网)可以帮助实现对建筑环境存量的空间精细化描述,并突出显示此类信息和城市规划在城市资源,废物和环境中的作用。策略。

著录项

  • 来源
    《Environmental Science & Technology》 |2020年第9期|5345-5355|共11页
  • 作者单位

    SDU Life Cycle Engineering Department of Chemical Engineering Biotechnology and Environmental Technology University of Southern Denmark 5230 Odense Denmark;

    Institute of Remote Sensing and Geographical Information Systems and Beijing Key Lab of Spatial Information Integration & Its Applications Peking University Beijing China;

    Institute of Geographic Sciences and Natural Resources Research Chinese Academy of Sciences 100101 Beijing China;

    SDU Life Cycle Engineering Department of Chemical Engineering Biotechnology and Environmental Technology University of Southern Denmark 5230 Odense Denmark Institute of Geographic Sciences and Natural Resources Research Chinese Academy of Sciences 100101 Beijing China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 05:26:35

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