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Estimates of shifts in ecosystem service values due to changes in key factors in the Manas River basin, northwest China

机译:西北玛纳斯河流域关键因素变化引起的生态系统服务价值变化的估计

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The ecosystem service value (ESV) can be quantitatively assessed based on changes in ecosystem services. However, few studies have considered two scientific problems: (1) how to quantify the contributions of factors that drive ecosystem services, and (2) how to improve the spatial variability of ESV distributions. In this study, a geographic information system was used to investigate spatial and temporal changes in three factors, i.e., vegetation cover (VC), human disturbance index (HDI), and temperature vegetation drought index (TVDI), and their effects on the ESV in the Manas River basin. We found that high VC areas were expanding and the HDI was significantly enhanced. The contributions of VC, HDI, and TVDI to the total ESV were 38.0%, 31.6%, and 30.4%, respectively, and the total ESV increased by 3.7%. The cold spots were mainly distributed in the desert area, mountains, and the southern parts of the oasis area, whereas the hot spots occurred mainly to the north of the oasis area and southwest of the desert. VC, HDI, and TVDI reflected the spatial and temporal differences in the ESV determined in this river basin ecosystem. Furtherly, it may be possible to formulate appropriate ecological compensations by analyzing the changes in ESV cold/hot spots. The results of this study provide a scientific basis to facilitate the selection of the key factors that drive changes in the ESV in arid land areas, as well as for achieving a sustainable basin management in similar regions around the world. (c) 2018 Elsevier B.V. All rights reserved.
机译:可以基于生态系统服务的变化来定量评估生态系统服务价值(ESV)。但是,很少有研究考虑两个科学问题:(1)如何量化驱动生态系统服务的因素的贡献;(2)如何改善ESV分布的空间变异性。在这项研究中,使用了一个地理信息系统来调查植被覆盖度(VC),人为干扰指数(HDI)和温度植被干旱指数(TVDI)这三个因素的时空变化及其对ESV的影响在玛纳斯河流域。我们发现,高风险投资领域正在扩大,HDI显着增强。 VC,HDI和TVDI对ESV的贡献分别为38.0%,31.6%和30.4%,ESV的总增长率为3.7%。寒冷地区主要分布在荒漠地区,山区和绿洲南部地区,而热点主要分布在绿洲北部和沙漠西南地区。 VC,HDI和TVDI反映了该流域生态系统中确定的ESV的时空差异。此外,有可能通过分析ESV寒冷/热点的变化来制定适当的生态补偿。这项研究的结果为促进选择干旱地区ESV变化的关键因素提供了科学依据,并为全球类似地区实现流域可持续管理提供了科学依据。 (c)2018 Elsevier B.V.保留所有权利。

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