How to transform cultivated land protection on the Northeast Tibetan Plateau? A multifunctional path exploration

高原(数学) 地理 路径(计算) 耕地 农林复合经营 环境科学 生态学 土地利用 环境保护 生物 数学 计算机科学 数学分析 程序设计语言
作者
Rongrong Ma,Yuhan Huang,Wei Zhou,Jun Ren,Hongyu Wang,Ziliang Shi,Juan Wang
出处
期刊:Ecological Indicators [Elsevier BV]
卷期号:170: 112988-112988 被引量:6
标识
DOI:10.1016/j.ecolind.2024.112988
摘要

The coordinated development of ecological services, food production, and human survival presents new challenges for protecting cultivated land (CL) in the ecologically fragile region of the Tibetan Plateau (TPEFR). There is an urgent need to explore transformative pathways for conserving CL in the region. In this study, a multifunctional supply and demand perspective is taken to explore such pathways. Correlation analysis and a coupled coordination degree model are used to understand the intrinsic structural characteristics that impact the multifunctionality of CLs. The K-means clustering algorithm is utilized to identify the alignment between the supply and demand of multiple CL functions and determine dominant and deficient CL functions. Finally, a comprehensive zoning approach is employed to enhance the dominant functions of CL, and transformation zones and the corresponding directions of these functions are identified, along with proposed countermeasures. The findings indicate the following: (1) There were disparities between the supply and demand of production, life, and ecological functions in Qinghai Province from 2000 to 2020. (2) A trade-off relationship exists between the supply and demand of CL production and ecological functions. (3) The degree of coordination between CL functions decreases from east to west in Qinghai Province. (4) CL resources in Qinghai Province can be categorized into eight zones. Among these, four zones undergo function-enhancing transformation to enhance production function, life function, ecological function, and multifunctional synergistic enhancement and protection. The remaining four zones prioritize the protection of ecological functions. In this study, a new paradigm is provided for the protection of CL in the TPEFR. The intrinsic mechanism and extrinsic aggregation of multifunctional supply–demand relationships are considered for comprehensive multifunctional zoning of CL, and the different transformation areas and their transformation directions are clarified.
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