典型山地-绿洲-荒漠地区生态系统服务功能动态变化及其相互关系评价

IF 7 2区 环境科学与生态学 Q1 ENVIRONMENTAL SCIENCES
Hejie Wei , Zihan Xu , Huiming Liu , Jiahui Ren , Weiguo Fan , Nachuan Lu , Xiaobin Dong
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引用次数: 23

摘要

研究多种生态系统服务功能的历史动态、相互作用及其驱动因素是实现生态系统可持续性的关键。山地-绿洲-荒漠系统是一个耦合的社会生态系统,玛纳斯河流域是山地-绿洲-荒漠系统的典型代表,面临着社会经济发展与生态保护的尖锐矛盾。基于历史文献、气象资料、水文资料和遥感资料,我们确定了研究区8个ES的长时间变化(约60 年)和相互关系。采用灰色关联分析(GRA)定量分析了气候和人为因素对8个ES的影响。结果表明,自1949年大规模垦殖以来,研究区粮食、棉花和牲畜等供给服务和大部分调节服务(沙尘暴控制和气候调节)显著改善,但土壤保持和生境等配套服务有所下降。线性拟合图显示了供应服务与大多数调节服务之间的协同作用,但提供服务与支持服务(特别是栖息地服务)之间的权衡。人口的急剧增长和人类活动的加剧(如大规模开垦和森林砍伐)是大多数生态系统的主要驱动因素,而气候波动(如温度和大风日数)是影响某些调节服务(如水文调节和沙尘暴控制)的主要因素。人类活动加剧导致的支持服务和生态系统权衡的下降威胁到其他生态系统的可持续性,应引起密切关注。研究玛纳斯河流域生态系统的历史动态,有助于进一步了解典型山地-绿洲-荒漠地区的社会生态系统发展,为生态系统管理提供有价值的信息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation on dynamic change and interrelations of ecosystem services in a typical mountain-oasis-desert region

Investigating the historical dynamics, interactions and driving factors of multiple ecosystem services (ES) is crucial to realize ES sustainability. The mountain-oasis-desert system (MODS) is a coupled socio-ecological system, and the Manas River Basin is a typical representative of the MODS and faces a sharp conflict between socioeconomic development and ecological conservation. Based on historical documents, meteorological data, hydrological data and remote sensing data, we identified long temporal variations (approximately 60 years) and relationships of eight ES in the study area. A gray relational analysis (GRA) was applied to quantify the influence of climate and anthropogenic factors on eight ES. The results showed, since the large-scale reclamation of the study area in 1949, that the provisioning services (i.e., grain, cotton and livestock) and most regulating services (i.e., sandstorm control and climate regulation) improved markedly, but the supporting services (i.e., soil conservation and habitats) had declined. The linear fit charts indicated the synergies between the provisioning services and most regulating services but tradeoffs between provisioning services and supporting services (especially the habitats service). The dramatic population growth and intensified human activities (e.g., large-scale reclamation and the deforestation) were the main drivers of most ES, while climate fluctuation (e.g., temperature and strong wind days) was the main factor affecting certain regulating services (e.g., hydrological regulation and sandstorm control). The declines in supporting services and ES tradeoffs caused by the intensified human activities threatened the sustainability of other ES and should attract close attention. Investigating the ES historical dynamic in the Manas River Basin can help us further understand the socio-ecological system development of the typical mountain-oasis-desert region and provide valuable information for ES management.

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来源期刊
Ecological Indicators
Ecological Indicators 环境科学-环境科学
CiteScore
11.80
自引率
8.70%
发文量
1163
审稿时长
78 days
期刊介绍: The ultimate aim of Ecological Indicators is to integrate the monitoring and assessment of ecological and environmental indicators with management practices. The journal provides a forum for the discussion of the applied scientific development and review of traditional indicator approaches as well as for theoretical, modelling and quantitative applications such as index development. Research into the following areas will be published. • All aspects of ecological and environmental indicators and indices. • New indicators, and new approaches and methods for indicator development, testing and use. • Development and modelling of indices, e.g. application of indicator suites across multiple scales and resources. • Analysis and research of resource, system- and scale-specific indicators. • Methods for integration of social and other valuation metrics for the production of scientifically rigorous and politically-relevant assessments using indicator-based monitoring and assessment programs. • How research indicators can be transformed into direct application for management purposes. • Broader assessment objectives and methods, e.g. biodiversity, biological integrity, and sustainability, through the use of indicators. • Resource-specific indicators such as landscape, agroecosystems, forests, wetlands, etc.
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