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Evaluation and Zoning of Cultivated Land Quality Based on a Space–Function–Environment

Author

Listed:
  • Fei Xu

    (Institute of Land and Urban-Rural Development, Zhejiang University of Finance & Economics, Hangzhou 310018, China)

  • Yaping Shao

    (Institute of Land and Urban-Rural Development, Zhejiang University of Finance & Economics, Hangzhou 310018, China)

  • Baogen Xu

    (Institute of Land and Urban-Rural Development, Zhejiang University of Finance & Economics, Hangzhou 310018, China)

  • Huan Li

    (Department of Land Resources Management, School of Public Administration, Zhejiang Gongshang University, Hangzhou 310018, China)

  • Xuefeng Xie

    (College of Geography and Environmental Sciences, Zhejiang Normal University, Jinhua 321004, China)

  • Yan Xu

    (School of Geography Science and Geomatics Engineering, Suzhou University of Science and Technology, Suzhou 215009, China)

  • Lijie Pu

    (Key Laboratory of the Coastal Zone Exploitation and Protection, Ministry of Natural Resources, Nanjing 210023, China
    School of Geography and Ocean Science, Nanjing University, Nanjing 210023, China)

Abstract

The multi-function characteristics of cultivated land have been widely recognized by researchers in China and globally, and it is important to provide a theoretical basis and practical reference for future research on the evaluation and zoning of cultivated land quality based on a space–function–environment perspective. Spearman rank correlation analysis and cluster analysis were used to categorize cultivated land by its quality. This study developed a theoretical evaluation framework of the space–function–environment quality for cultivated land and constructed a total of 23 indicators of cultivated land quality in three dimensions. The framework was applied to a case study that evaluated and zoned cultivated land quality based on a space–function–environment perspective. The results showed that the synergies and tradeoffs among spatial quality, functional quality and environmental quality, and the influences of the three on cultivated land quality are mutually restricted and act together. The cultivated land in Qujiang District can be divided into five types of areas according to the cold and hot spot analysis results of the secondary indexes of cultivated land spatial quality, functional quality and environmental quality. Based on these results, different protection schemes are proposed for different cultivated land qualities.

Suggested Citation

  • Fei Xu & Yaping Shao & Baogen Xu & Huan Li & Xuefeng Xie & Yan Xu & Lijie Pu, 2023. "Evaluation and Zoning of Cultivated Land Quality Based on a Space–Function–Environment," Land, MDPI, vol. 12(1), pages 1-20, January.
  • Handle: RePEc:gam:jlands:v:12:y:2023:i:1:p:174-:d:1025867
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    References listed on IDEAS

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    1. Coyle, Cait & Creamer, Rachel E. & Schulte, Rogier P.O. & O'Sullivan, Lilian & Jordan, Phil, 2016. "A Functional Land Management conceptual framework under soil drainage and land use scenarios," Environmental Science & Policy, Elsevier, vol. 56(C), pages 39-48.
    2. Vasu, Duraisamy & Srivastava, Rajeev & Patil, Nitin G. & Tiwary, Pramod & Chandran, Padikkal & Kumar Singh, Surendra, 2018. "A comparative assessment of land suitability evaluation methods for agricultural land use planning at village level," Land Use Policy, Elsevier, vol. 79(C), pages 146-163.
    3. Xiangbin Kong, 2014. "China must protect high-quality arable land," Nature, Nature, vol. 506(7486), pages 7-7, February.
    4. Weiwei Guo & Tao Wu & Guojun Jiang & Lijie Pu & Jianzhen Zhang & Fei Xu & Hongmei Yu & Xuefeng Xie, 2021. "Spatial Distribution, Environmental Risk and Safe Utilization Zoning of Soil Heavy Metals in Farmland, Subtropical China," Land, MDPI, vol. 10(6), pages 1-13, May.
    5. Yan Xu & Lijie Pu & Runsen Zhang & Ming Zhu & Meng Zhang & Xinguo Bu & Xuefeng Xie & Yuan Wang, 2021. "Effects of Agricultural Reclamation on Soil Physicochemical Properties in the Mid-Eastern Coastal Area of China," Land, MDPI, vol. 10(2), pages 1-11, February.
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