New Perspectives on Agricultural Land Reallocation: An Integrated Framework Based on Scale, Structure, and Prioritization

农用地 农业 土地利用 农业生产力 环境资源管理 自然资源经济学 业务 比例(比率) 土地管理 环境科学 农林复合经营 地理 农业经济学 生态学 经济 生物 地图学 考古
作者
Shilei Wang,Xiaobin Jin,Xinyuan Liang,Jing Liu,Jingping Liu,Kunyu Liang,Yinkang Zhou
出处
期刊:Land Degradation & Development [Wiley]
卷期号:36 (14): 4897-4913
标识
DOI:10.1002/ldr.5675
摘要

ABSTRACT The rapid growth of the global population and the transformation and upgrading of dietary structures have led to a widening gap in the demand for cropland resources. Research on agricultural land reallocation that seeks to maximize cropland availability and increase grain production while also considering the preservation of natural ecosystems still has gaps. Following the theoretical assumptions of the agricultural land reallocation process, this study constructs a comprehensive framework for integrating scale, structure, and prioritization. Sichuan Province, China's main grain‐producing region, is used as an example for a case study. The results demonstrate that the scale of agricultural land reallocation decreased from 56,742.01 to 44,965.52 km 2 after correcting the evaluation of ecological conservation importance and crop production suitability under spatial and non‐spatial constraints. There are significant differences in crop production suitability for agricultural land reallocation structures. Despite the wide spatial distribution of forest land, its utilization is challenging. Therefore, cropland, garden land, and grassland are prioritized for exploitation and utilization. In the eight priority zones for agricultural land reallocation, the main obstacles are constituted by single or composite factors of utilization convenience, spatial agglomeration, and facility stability. In general, agricultural land reallocation needs to be supported by considering different dimensions of resource availability, structural convertibility, and spatial compatibility. This approach maximizes the availability of resources for grain production while minimizing damage to natural ecosystems.
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