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Analyzing the Land Use and Cover Change Inside and Outside China’s Ecological Function Area

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  • Yajuan Wang

    (School of Public Administration, Sichuan University, Chengdu 610065, China)

  • Yongheng Rao

    (School of Public Administration, Sichuan University, Chengdu 610065, China)

  • Hongbo Zhu

    (School of Public Administration, Sichuan University, Chengdu 610065, China)

Abstract

The establishment of nature reserves and ecological function areas is crucial for preserving the natural environment and the invaluable services provided by ecosystems. In our study, we conducted a comprehensive analysis using the 2011–2020 Chinese land cover dataset to examine the impact of ecological function areas on regional land use and cover change. This analysis allowed us to quantify and visualize the intensity, aggregation effects, and transformation paths of land cover change while considering China’s ecological function areas. Our findings highlight notable disparities in land cover types between the ecological function area and its surroundings. Within the ecological function area, forest and grassland dominate, constituting 67% of the total land cover. In contrast, outside the ecological function area, there is a greater presence of wasteland, in addition to forest and grassland. Moreover, the abundance of impervious surfaces, which are closely linked to human activities, is significantly higher outside the ecological function area, almost double the amount found inside. By examining specific land cover types, we observed that forests exhibit the least change within the ecological function area, whereas croplands experience the least change outside. Throughout the study period, approximately 8.1% of land cover pixels underwent changes, with some areas displaying a frequency of change reaching up to 2. Interestingly, the number of high-frequency land use and cover change pixels inside the ecological function area is only half of the outside. Notably, a higher percentage of impervious surfaces within the ecological function area (0.13%) were converted into cropland compared to the outside (0.07%). Understanding the dynamics of land cover change within China’s ecological function areas provides valuable insights for effective land resource management and planning. It enables us to make informed decisions to ensure the sustainable development and conservation of these areas.

Suggested Citation

  • Yajuan Wang & Yongheng Rao & Hongbo Zhu, 2023. "Analyzing the Land Use and Cover Change Inside and Outside China’s Ecological Function Area," Land, MDPI, vol. 12(7), pages 1-14, July.
  • Handle: RePEc:gam:jlands:v:12:y:2023:i:7:p:1447-:d:1198371
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    References listed on IDEAS

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    1. Shannon M. Sterling & Agnès Ducharne & Jan Polcher, 2013. "The impact of global land-cover change on the terrestrial water cycle," Nature Climate Change, Nature, vol. 3(4), pages 385-390, April.
    2. Fuwei Qiao & Yongping Bai & Lixia Xie & Xuedi Yang & Shuaishuai Sun, 2021. "Spatio-Temporal Characteristics of Landscape Ecological Risks in the Ecological Functional Zone of the Upper Yellow River, China," IJERPH, MDPI, vol. 18(24), pages 1-19, December.
    3. William F. Laurance & D. Carolina Useche & Julio Rendeiro & Margareta Kalka & Corey J. A. Bradshaw & Sean P. Sloan & Susan G. Laurance & Mason Campbell & Kate Abernethy & Patricia Alvarez & Victor Arr, 2012. "Averting biodiversity collapse in tropical forest protected areas," Nature, Nature, vol. 489(7415), pages 290-294, September.
    4. Immerzeel, Bart & Vermaat, Jan E. & Juutinen, Artti & Pouta, Eija & Artell, Janne, 2022. "Appreciation of Nordic landscapes and how the bioeconomy might change that: Results from a discrete choice experiment," Land Use Policy, Elsevier, vol. 113(C).
    5. Keyue Yuan & Fei Li & Haijuan Yang & Yiming Wang, 2019. "The Influence of Land Use Change on Ecosystem Service Value in Shangzhou District," IJERPH, MDPI, vol. 16(8), pages 1-13, April.
    6. Linlin Dai & Zixin Zhan & Yeshuo Shu & Xiao Rong, 2022. "Land Use Change in the Cross-Boundary Regions of a Metropolitan Area: A Case Study of Tongzhou-Wuqing-Langfang," Land, MDPI, vol. 11(2), pages 1-22, January.
    7. Yajuan Wang & Yongheng Rao & Hongbo Zhu, 2022. "Revealing the Impact of Protected Areas on Land Cover Volatility in China," Land, MDPI, vol. 11(8), pages 1-16, August.
    8. Wu, Jian & Gong, Yazhen & Wu, JunJie, 2018. "Spatial distribution of nature reserves in China: Driving forces in the past and conservation challenges in the future," Land Use Policy, Elsevier, vol. 77(C), pages 31-42.
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