南方山丘区坡改梯工程的水土保持与作物增值效益评估及优化-以丹江口市为例
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作者:
作者单位:

1.湖北省水利水电科学研究院;2.武汉大学资源与环境科学学院;3.华中农业大学资源与环境学院

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中图分类号:

S157.2

基金项目:

湖北省水利重点科研项目(HBSLKY202306)


Evaluation and spatial optimization of soil and water conservation benefits and crop increment economic benefits of changing slope cropland to terrace project in southern hilly area - A case study of Danjiangkou City
Author:
Affiliation:

School of Resources and Environmental Sciences,Wuhan University

Fund Project:

Key research project of water conservancy in Hubei Province(HBSLKY202306)

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    摘要:

    [目的]坡改梯工程建设具有维护耕地资源、减少土壤流失、促进粮食生产等重要作用。在坡改梯工程的选址与建设过程中,如何协同其水土保持效益与经济效益是促进水土保持与粮食安全共赢的关键。[方法] 基于遥感和空间分析技术,识别丹江口市梯田的空间分布并划定小流域。结合中国土壤流失方程(CSLE)模型和实地调查,评估坡改梯工程中水土保持效益与作物产值提升之间的权衡关系,采用线性优化方法搜索多情景下坡改梯工程的最优空间布局。[结果] 丹江口市的梯田和坡耕地主要分布在中部以及北部的流域内,这些区域具备更高的水土保持效益及作物增值经济效益总量。对各小流域的空间优化分析的结果显示,在水土保持效益优先情景下坡改梯工程主要分布于西南部流域;而作物增值效益优先情景下,坡改梯工程则更集中于中部流域。多情景的线性优化结果表明, 水土保持效益优先与作物增值效益优先间存在显著权衡关系:各情景中最大的水土保持效益为减少侵蚀约320.7万t,而此时作物增值经济效益约为17811万元;最大的作物增值经济效益约为18745万元,而此时水土保持效益仅为约301.3万t。非劣解可以反映两者的权衡关系。[结论] 通过空间优化方法量化坡改梯工程建设中水保与作物增值经济效益间的权衡关系并为管理部门提供一系列非劣解,研究结果可为中国高标准农田建设、小流域综合治理等提供参考依据。

    Abstract:

    Abstract: [Objective] The construction of the changing slope cropland to terrace project plays a crucial role in preserving cropland resources, reducing soil erosion, and promoting grain production. In the process of selecting sites and constructing terrace projects, balancing the benefits of soil and water conservation with economic returns is key to achieving a win-win situation for both soil conservation and food security. [Methods] Using remote sensing and spatial analysis techniques, the spatial distribution of terraces in Danjiangkou City was identified, and small watersheds were delineated. By combining the Chinese Soil Loss Equation (CSLE) model with field investigations, the tradeoff between soil and water conservation benefits and crop value-added in the changing slope cropland to terrace project was evaluated. A linear optimization method was employed to search for the optimal spatial layout of the project under multiple scenarios. [Results] The terraces and slope cropland in Danjiangkou City are mainly distributed in the central and northern watersheds, where they exhibit higher total benefits in terms of soil and water conservation and crop value-added economic benefits. The results of the spatial optimization analysis for each small watershed indicate that under the soil and water conservation priority scenario, the changing slope cropland to terrace project is primarily concentrated in the southwestern watershed, whereas under the crop value-added economic benefits priority scenario, the project is more concentrated in the central watershed. The linear optimization results under multiple scenarios show a significant tradeoff between the soil and water conservation priority and the crop value-added economic benefits priority: in the scenarios, the maximum soil and water conservation benefit is a reduction of approximately 3.207 million tons of erosion, with crop value-added economic benefits of around 1.7811 billion yuan. Conversely, the maximum crop value-added economic benefit is about 1.8745 billion yuan, with soil and water conservation benefits reduced to approximately 3.013 million tons. The Pareto optimal solutions reflect the tradeoff between the two. [Conclusion] This study quantifies the tradeoff between soil and water conservation and crop value-added economic benefits in the changing slope cropland to terrace project through spatial optimization methods and provides a series of Pareto solutions for decision-makers. The research results offer valuable insights for high-standard cropland development and integrated small watershed management in China.

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  • 收稿日期:2024-09-04
  • 最后修改日期:2024-10-29
  • 录用日期:2024-10-29
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