Optimizing the water-ecosystem-food nexus using nature-based solutions at the basin scale

Antonia Maragkaki, Evangelia A. Koukianaki, Maria A. Lilli, D. Efstathiou, Nikolaos P. Nikolaidis
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Abstract

The water ecosystem food (WEF) nexus duly acknowledges the complex interdependencies among water, ecosystems, and food production, underscoring nature based solutions (NBS) as an efficacious strategy for navigating these interconnections. In this research, four different NBS (terraces, riparian forest, livestock management and agro ecological practices) were assessed in terms of their impact to WEF nexus. The Karst-SWAT and the one-dimensional integrated critical zone (1D-ICZ) models were used to simulate the impact of NBS on water quantity and quality as well as on soil ecosystem services of Koiliaris River Basin, which serves as an illustrative example of a basin that has experienced severe soil and biodiversity degradation. The Karst-SWAT model showed that a combination of NBS of terraces and riparian forest can reduce soil erosion and the sediment load by 97%. The 1D-ICZ model successfully simulated the soil-plant-water system and showed that agro ecological practices affect biomass production, carbon and nutrient sequestration, soil structure and geochemistry.
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在流域范围内利用基于自然的解决方案优化水-生态系统-粮食之间的关系
水-生态系统-食物(WEF)关系充分认识到水、生态系统和食物生产之间复杂的相互依存关系,强调基于自然的解决方案(NBS)是驾驭这些相互关系的有效策略。本研究评估了四种不同的 NBS(梯田、河岸森林、牲畜管理和农业生态实践)对水与环境的关系的影响。采用喀斯特-SWAT 模型和一维综合临界区 (1D-ICZ) 模型模拟了非核心基础结构对 Koiliaris 河流域水量和水质以及土壤生态系统服务的影响,该流域是土壤和生物多样性严重退化的典型例子。喀斯特-SWAT 模型显示,将梯田和河岸林的泥沙淤积结合起来,可减少 97% 的土壤侵蚀和泥沙负荷。1D-ICZ 模型成功地模拟了土壤-植物-水系统,并表明农业生态实践会影响生物量生产、碳和养分固存、土壤结构和地球化学。
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