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退化生态系统中生态系统服务供给的时空动态:伊朗乌鲁米耶湖流域的系统评估。

Spatiotemporal dynamics of ecosystem services provision in a degraded ecosystem: A systematic assessment in the Lake Urmia basin, Iran.

机构信息

Department of Combating Desertification, Faculty of Natural Resources and Earth Sciences, University of Kashan, Iran.

UFZ - Helmholtz Centre for Environmental Research, Department of Ecological Modelling, Permoserstr. 15, 04318 Leipzig, Germany.

出版信息

Sci Total Environ. 2020 May 10;716:137100. doi: 10.1016/j.scitotenv.2020.137100. Epub 2020 Feb 3.

Abstract

Lake Urmia has experienced severe environmental degradation, mainly characterized by the enormous reduction of its surface area and water level. This issue has been mainly attributed to land-use and land-cover changes, in particular related to agricultural expansion and intensification. In this study, we used the DPSIR framework (D: driving forces, P: pressures, S: states, I: impacts, and R: responses) to systematically describe the ecosystem service dynamics related to anthropogenic activities and climatic parameters in the region. We reviewed the literature and used remote sensing, agricultural, climatic and hydrological data together with expert knowledge to assess the main driving forces and pressures, resulting land-use transitions and their spatiotemporal impacts on ecosystem services and biodiversity using a matrix-based assessment approach. We identified population growth, economic incentives and climate change as the most important driving forces, leading to altered agricultural activities, numerous dam constructions and droughts. Since 1987 cropland areas doubled at the expense of bare soils and natural vegetation, the lake hast lost more than half of its surface area, urban and freshwater areas increased threefold and by 50%, respectively. This favored crop and freshwater provision, while all other ecosystem services remained nearly constant or decreased, though spatial patterns were heterogeneous. For example, regulating and cultural services, and biodiversity mainly decreased at the shorelines of the lake, while provisioning services increased along the major rivers and close to cities. To address the land-use transitions with the most profound impact on ecosystem service provision, we recommend the following measures: increase the water supply to the lake, reduce cropland expansion, manage existing croplands more sustainably and protect natural vegetation. Our study provides a comprehensive overview of the regional ecosystem service dynamics and a valuable baseline for future research and environmental management in the basin.

摘要

乌鲁米耶湖经历了严重的环境退化,主要表现为湖面面积和水位的大幅减少。这一问题主要归因于土地利用和土地覆被变化,特别是与农业扩张和集约化有关。在本研究中,我们使用 DPSIR 框架(D:驱动力,P:压力,S:状态,I:影响,R:响应)系统地描述了与该地区人为活动和气候参数相关的生态系统服务动态。我们回顾了文献,并使用遥感、农业、气候和水文数据以及专家知识,评估了主要驱动力和压力,以及由此产生的土地利用转变及其对生态系统服务和生物多样性的时空影响,采用基于矩阵的评估方法。我们确定人口增长、经济激励和气候变化是最重要的驱动力,导致农业活动改变、大量水坝建设和干旱。自 1987 年以来,耕地面积增加了一倍,而裸地和自然植被减少了,湖泊失去了一半以上的表面积,城市和淡水面积分别增加了两倍和 50%。这有利于作物和淡水供应,而其他所有生态系统服务几乎保持不变或减少,尽管空间模式存在异质性。例如,调节和文化服务以及生物多样性主要在湖泊的岸边减少,而在主要河流和靠近城市的地方,供应服务增加。为了解决对生态系统服务提供影响最大的土地利用转变,我们建议采取以下措施:增加湖泊供水、减少耕地扩张、更可持续地管理现有耕地和保护自然植被。我们的研究提供了该地区生态系统服务动态的综合概述,为该流域未来的研究和环境管理提供了有价值的基线。

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