Ma Yuhe, Chen Hai, Yang Miaomiao, Aihemaiti Gulibaiheremu, Wei Zheng, Li Huiqiang
College of Urban and Environmental Sciences, Northwest University, Xi'an 710127, China.
Shaanxi Key Laboratory of Earth Surface System and Environmental Carrying Capacity, Xi'an 710127, China.
iScience. 2025 Jun 19;28(7):112940. doi: 10.1016/j.isci.2025.112940. eCollection 2025 Jul 18.
The design of ecological compensation (EC) programs from the perspectives of the supply, demand, and flow of ecosystem services (ESs) is important for promoting sustainable regional development. In this study, the supply-demand levels of carbon sequestration (CS) on the Loess Plateau (LP) in 2001, 2010, and 2020 were analyzed, interregional flows of CS were simulated, and an implementation scheme for EC was developed that takes priorities into account by establishing an ecological compensation index that considers for supply-demand risks and flows. The results revealed that the degree of deficit of CS in the LP enhanced from 2001 to 2020, and the total flow rate first increased and then decreased. Based on the prioritization of receipts and payments, an EC program combining vertical and horizontal compensation mechanisms was finally obtained. This study provides a theoretical and practical basis for understanding the flow process of ESs and formulating EC programs.
从生态系统服务的供给、需求和流动角度设计生态补偿(EC)方案对于促进区域可持续发展至关重要。本研究分析了2001年、2010年和2020年黄土高原(LP)碳固存(CS)的供需水平,模拟了CS的区域间流动,并通过建立考虑供需风险和流动的生态补偿指数制定了优先考虑的EC实施方案。结果表明,2001年至2020年LP地区CS的赤字程度增强,总流速先增加后下降。基于收支优先级,最终获得了一个结合纵向和横向补偿机制的EC方案。本研究为理解生态系统服务的流动过程和制定EC方案提供了理论和实践依据。