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How do government policies promote greening? Evidence from China

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  • Feng, Dingrao
  • Bao, Wenkai
  • Yang, Yuanyuan
  • Fu, Meichen

Abstract

The large-scale greening observed across China in recent decades has been shown to be the result of human activities, and existing studies have also revealed the positive effects of policies on vegetation dynamics. However, the effects and mechanisms of detailed greening policies in China still remain unclear and targeted analyses are needed to offer scientific guidance for further policymaking in the pursuit of nationwide green development. In this study, Sen’s trend estimator and the Mann–Kendall test were used to analyze the spatiotemporal changes in vegetation cover from 2000 to 2015. The effects of five main government policies on vegetation cover (i.e., afforestation, urban greening, agricultural improvement, nature reserve, and natural forest conservation policies) were investigated by using Kendall’s tau-b correlation, as well as buffer zones and fluctuation analyses model. The results showed that China has experienced large-scale greening, despite the local degradation of vegetation in some areas. Policy-driven afforestation has played an important role in large-scale greening, while policies related to agricultural intensification have enhanced vegetation cover. Although urbanization has altered local ecosystems, the relationship between changes in vegetation cover and urban sprawl displayed a “U-shaped” curve, which indicates that urban greening policies have been effective. National nature reserve policies and the National Forest Conservation Program have provided the stable conditions needed for natural vegetation growth without negative human disturbance. It may be concluded that government policies have had a clear and positive influence on greening in China in many respects.

Suggested Citation

  • Feng, Dingrao & Bao, Wenkai & Yang, Yuanyuan & Fu, Meichen, 2021. "How do government policies promote greening? Evidence from China," Land Use Policy, Elsevier, vol. 104(C).
  • Handle: RePEc:eee:lauspo:v:104:y:2021:i:c:s0264837721001125
    DOI: 10.1016/j.landusepol.2021.105389
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    References listed on IDEAS

    as
    1. Zhang, Min & Wang, Jinman & Feng, Yu, 2019. "Temporal and spatial change of land use in a large-scale opencast coal mine area: A complex network approach," Land Use Policy, Elsevier, vol. 86(C), pages 375-386.
    2. Bette L. Otto-Bliesner & Garland R. Upchurch, 1997. "Vegetation-induced warming of high-latitude regions during the Late Cretaceous period," Nature, Nature, vol. 385(6619), pages 804-807, February.
    3. Zaichun Zhu & Shilong Piao & Ranga B. Myneni & Mengtian Huang & Zhenzhong Zeng & Josep G. Canadell & Philippe Ciais & Stephen Sitch & Pierre Friedlingstein & Almut Arneth & Chunxiang Cao & Lei Cheng &, 2016. "Greening of the Earth and its drivers," Nature Climate Change, Nature, vol. 6(8), pages 791-795, August.
    4. T. F. Keenan & W. J. Riley, 2018. "Greening of the land surface in the world’s cold regions consistent with recent warming," Nature Climate Change, Nature, vol. 8(9), pages 825-828, September.
    5. Zhou, Yang & Guo, Liying & Liu, Yansui, 2019. "Land consolidation boosting poverty alleviation in China: Theory and practice," Land Use Policy, Elsevier, vol. 82(C), pages 339-348.
    6. 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.
    7. Chi Chen & Taejin Park & Xuhui Wang & Shilong Piao & Baodong Xu & Rajiv K. Chaturvedi & Richard Fuchs & Victor Brovkin & Philippe Ciais & Rasmus Fensholt & Hans Tømmervik & Govindasamy Bala & Zaichun , 2019. "China and India lead in greening of the world through land-use management," Nature Sustainability, Nature, vol. 2(2), pages 122-129, February.
    8. Blackman, Allen, 2013. "Evaluating forest conservation policies in developing countries using remote sensing data: An introduction and practical guide," Forest Policy and Economics, Elsevier, vol. 34(C), pages 1-16.
    9. Trevor F. Keenan & David Y. Hollinger & Gil Bohrer & Danilo Dragoni & J. William Munger & Hans Peter Schmid & Andrew D. Richardson, 2013. "Increase in forest water-use efficiency as atmospheric carbon dioxide concentrations rise," Nature, Nature, vol. 499(7458), pages 324-327, July.
    10. Nathaniel D. Mueller & James S. Gerber & Matt Johnston & Deepak K. Ray & Navin Ramankutty & Jonathan A. Foley, 2012. "Closing yield gaps through nutrient and water management," Nature, Nature, vol. 490(7419), pages 254-257, October.
    Full references (including those not matched with items on IDEAS)

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    4. Jinlong Chen & Zhonglei Yu & Mengxia Li & Xiao Huang, 2023. "Assessing the Spatiotemporal Dynamics of Vegetation Coverage in Urban Built-Up Areas," Land, MDPI, vol. 12(1), pages 1-17, January.

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