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Spatiotemporal Changes of Terrestrial Carbon Storage in Rapidly Urbanizing Areas and Their Influencing Factors: A Case Study of Wuhan, China

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  • Shuxuan Xing

    (School of Public Administration, China University of Geosciences, Wuhan 430074, China
    Key Laboratory of Law and Government, Ministry of Natural Resources of China, Wuhan 430074, China)

  • Shengfu Yang

    (School of Public Administration, China University of Geosciences, Wuhan 430074, China
    Key Laboratory of Law and Government, Ministry of Natural Resources of China, Wuhan 430074, China)

  • Haonan Sun

    (School of Public Administration, China University of Geosciences, Wuhan 430074, China
    Key Laboratory of Law and Government, Ministry of Natural Resources of China, Wuhan 430074, China)

  • Yi Wang

    (School of Public Administration, China University of Geosciences, Wuhan 430074, China
    Key Laboratory of Law and Government, Ministry of Natural Resources of China, Wuhan 430074, China)

Abstract

Terrestrial carbon storage plays a vital role in limiting global climate change and achieving regional carbon neutrality. However, intensive human activities and rapid urbanization have led to a rapid decline in carbon storage. Understanding what causes carbon storage to decline and how this happens is important for the scientific regulation of urbanization and safeguarding of urban ecological security. This study takes Wuhan as an example and analyzes the quantity, structure, and spatial patterns of urban land-use changes in the context of human activities and natural conditions, and applies correlation methods to identify general relationships between influencing factors and carbon storage. The results of the study are as follows: over the 30-year period studied, the area devoted to construction land increased by 757 km 2 and the carbon storage decreased by 7.68 × 10 6 t. Outside Wuhan’s Third Ring Road, there was a significant increase in the carbon storage, but in the areas where construction increased, there was a reduction in carbon storage. Carbon storage in the remote suburbs was significantly higher than in the city center, and the distribution pattern was characterized by significant spatial heterogeneity. Our analysis revealed that human economic and social activities have affected Wuhan’s ecosystem carbon storage to a significant extent. Policymakers should focus on industrial optimization, strictly control the red line of ecological protection, and ultimately achieve high-quality urban development.

Suggested Citation

  • Shuxuan Xing & Shengfu Yang & Haonan Sun & Yi Wang, 2023. "Spatiotemporal Changes of Terrestrial Carbon Storage in Rapidly Urbanizing Areas and Their Influencing Factors: A Case Study of Wuhan, China," Land, MDPI, vol. 12(12), pages 1-18, December.
  • Handle: RePEc:gam:jlands:v:12:y:2023:i:12:p:2134-:d:1293778
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    References listed on IDEAS

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    1. Riccardo Privitera & Valentina Palermo & Francesco Martinico & Alberto Fichera & Daniele La Rosa, 2018. "Towards lower carbon cities: urban morphology contribution in climate change adaptation strategies," European Planning Studies, Taylor & Francis Journals, vol. 26(4), pages 812-837, April.
    2. Shilong Piao & Jingyun Fang & Philippe Ciais & Philippe Peylin & Yao Huang & Stephen Sitch & Tao Wang, 2009. "The carbon balance of terrestrial ecosystems in China," Nature, Nature, vol. 458(7241), pages 1009-1013, April.
    3. Li, Jiasheng & Guo, Xiaomin & Chuai, Xiaowei & Xie, Fangjian & Yang, Feng & Gao, Runyi & Ji, Xuepeng, 2021. "Reexamine China’s terrestrial ecosystem carbon balance under land use-type and climate change," Land Use Policy, Elsevier, vol. 102(C).
    4. D. S. Schimel & J. I. House & K. A. Hibbard & P. Bousquet & P. Ciais & P. Peylin & B. H. Braswell & M. J. Apps & D. Baker & A. Bondeau & J. Canadell & G. Churkina & W. Cramer & A. S. Denning & C. B. F, 2001. "Recent patterns and mechanisms of carbon exchange by terrestrial ecosystems," Nature, Nature, vol. 414(6860), pages 169-172, November.
    5. Zhang, Jing & Li, Sinan & Lin, Naifa & Lin, Yue & Yuan, Shaofeng & Zhang, Ling & Zhu, Jinxia & Wang, Ke & Gan, Muye & Zhu, Congmou, 2022. "Spatial identification and trade-off analysis of land use functions improve spatial zoning management in rapid urbanized areas, China," Land Use Policy, Elsevier, vol. 116(C).
    6. Ruixu Chen & Yang Chen & Oleksii Lyulyov & Tetyana Pimonenko, 2023. "Interplay of Urbanization and Ecological Environment: Coordinated Development and Drivers," Land, MDPI, vol. 12(7), pages 1-17, July.
    7. Eric A. Davidson & Ivan A. Janssens, 2006. "Temperature sensitivity of soil carbon decomposition and feedbacks to climate change," Nature, Nature, vol. 440(7081), pages 165-173, March.
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