Adapting to climate change in arid agricultural systems: An optimization model for water-energy-food nexus sustainability

IF 5.9 1区 农林科学 Q1 AGRONOMY Agricultural Water Management Pub Date : 2024-09-14 DOI:10.1016/j.agwat.2024.109052
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Abstract

Sustainable management of water, energy, and food (WEF) under climate change will be a significant challenge for arid agricultural systems. This study developed a fractional non-linear multi-objective programming (FNLMOP) model to optimize resource allocation and improve agricultural sustainability in these systems under climate change. The model was designed in the framework of the WEF nexus to simultaneously improved energy productivity (profit/energy), and water productivity (profit/water), while mitigating environmental damage (damage to groundwater resources/output) and ensuring food security in an arid watershed in Iran. The long Ashton research station weather generator (LARS-WG) and the coupled model intercomparison project 6 (CMIP6) were employed to project climate parameters for both future dry and wet conditions. The sustainability of the optimal solutions was then assessed using a hybrid criteria importance through intercriteria correlation (CRITIC)-VIKOR approach. The optimal solutions revealed a reduction in the land under cultivation and produced less water-intensive crops. The optimization model can ensure WEF security, enhancing agricultural system sustainability by optimizing crop cultivation patterns and resource allocation. Current crop choices were highly inefficient with the bigger changes being from the current crops to optimal crops. Climate change showed a substantial but lesser influence on optimal crop choice.

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在干旱农业系统中适应气候变化:水-能源-粮食关系可持续性优化模型
气候变化下水、能源和粮食(WEF)的可持续管理将是干旱农业系统面临的一项重大挑战。本研究开发了一个分数非线性多目标程序设计(FNLMOP)模型,以优化资源配置,提高这些系统在气候变化下的农业可持续性。该模型是在 WEF 关系框架下设计的,旨在同时提高能源生产率(利润/能源)和水生产率(利润/水),同时减轻对环境的破坏(对地下水资源的破坏/产出),并确保伊朗干旱流域的粮食安全。采用长阿什顿研究站天气生成器(LARS-WG)和耦合模式相互比较项目 6(CMIP6)来预测未来干旱和潮湿条件下的气候参数。然后,采用标准间相关性(CRITIC)-VIKOR 混合标准重要性方法对最佳解决方案的可持续性进行了评估。最佳解决方案显示,耕地面积减少了,生产的水密集型作物减少了。该优化模型可通过优化作物种植模式和资源分配,确保世界水基金的安全,增强农业系统的可持续性。目前的作物选择效率很低,从目前的作物到最优作物的变化较大。气候变化对最佳作物选择的影响很大,但较小。
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来源期刊
Agricultural Water Management
Agricultural Water Management 农林科学-农艺学
CiteScore
12.10
自引率
14.90%
发文量
648
审稿时长
4.9 months
期刊介绍: Agricultural Water Management publishes papers of international significance relating to the science, economics, and policy of agricultural water management. In all cases, manuscripts must address implications and provide insight regarding agricultural water management.
期刊最新文献
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