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Tu Chun, Luo Weiqun, Chen Yaqi, Wu Zeyan, Hu Zhaoxin, Liu Shaohua, Ma Qi, Qin Litang. 2024. Zoning management of karst landscape resources in Guilin based on ecosystem sensitivity and service function[J]. Geology in China, 51(6): 1839−1854. DOI: 10.12029/gc20230906001
Citation: Tu Chun, Luo Weiqun, Chen Yaqi, Wu Zeyan, Hu Zhaoxin, Liu Shaohua, Ma Qi, Qin Litang. 2024. Zoning management of karst landscape resources in Guilin based on ecosystem sensitivity and service function[J]. Geology in China, 51(6): 1839−1854. DOI: 10.12029/gc20230906001

Zoning management of karst landscape resources in Guilin based on ecosystem sensitivity and service function

Funds: Supported by the Science and Technology Major Project of Guangxi (No.Guike AA20161004−3), Natural Science Foundation of Guangxi (No.2022GXNSFAA026471), National Key Research and Development Program (No.2019YFC0507504), the project of China Geological Survey (No.DD20230453).
More Information
  • Author Bio:

    TU Chun, male, born in 1986, assistant researcher, engaged in evaluating the effects of karst ecosystem resource and environmental effects; E-mail: tuc.13b@igsnrr.ac.cn

  • Corresponding author:

    LUO Weiqun, male, born in 1980, researcher, engaged in ecological restoration and land spatial planning in karst areas; E-mail: lweiqun@mail.cgs.gov.cn.

  • Received Date: September 05, 2023
  • Revised Date: September 10, 2024
  • This paper is the result of environmental geological survey engineering.

    Objective 

    Guilin is a typical and representative karst landform and an important ecological fragile area in China. In recent years, the degradation of karst landscape resources caused by human activities has become severe. Research on the evaluation and management Guilin’s karst landscape resources is of great significance for achieving regional ecological protection, restoration, and high−quality socio−economic development.

    Methods 

    Taking the national innovation demonstration zone for sustainable development goals of Guilin as the research area, ecosystem sensitivity was evaluated based on factors such as soil erosion, rocky desertification, land use, and lithology, while ecosystem service functions were assessed suing indicators like water conservation, soil conservation, biodiversity, and landform landscape.

    Results 

    In the study area, the sensitivity of soil erosion and rocky desertification was mainly mild or general, accounting for 67.04%−76.24% of the total karst area.Land use and lithology were predominantly categorized as highly or extremely sensitive, accounting for 52.12%−62.21%. The functional importance of water conservation and soil conservation were generally moderate, representing 36.23%−51.87%, while the conservation of biodiversity and landform landscape were rated as highly important, accounting for 37.99%−44.26%. Based on the comprehensive calculation of ecosystem sensitivity and service function, the importance of landscape protection determined to be at least moderate across 83.57% of karst area.

    Conclusions 

    Based on the evaluation results, the study areas are divided into zones for enhancing agricultural and forestry landscape function, restoring wetland and water landscapes, rehabilitating mine and geological landscapes, and addressing rocky desertification. The proposed management models include landscape restoration and water resource regulation, as well as karst geological landscape protection and ecological recycling industry collaborative development. This study provides a scientific basis for sustainable utilization of karst landscape resources, ecological environment protection, and comprehensive planning in Guilin City.

    Highlights
    By combining ecosystem sensitivity and service function, this study comprehensively evaluated the situation of karst landscape resource and it’s ecological space in Guilin, and put forward measures and suggestions for regional governance, which can provide reference for landscape resource protection and restoration in Guilin and national innovation demonstration zone for sustainable development goals.
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