干旱区土地利用变化对生态系统服务的敏感性评价与模拟:来自新疆的经验证据

IF 7 2区 环境科学与生态学 Q1 ENVIRONMENTAL SCIENCES Ecological Indicators Pub Date : 2025-02-01 Epub Date: 2025-01-27 DOI:10.1016/j.ecolind.2025.113150
Xiaoyun Li , Chunsheng Wu
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引用次数: 0

摘要

生态系统服务对人类生活至关重要,但近几十年来,主要由于人类引起的土地利用变化,生态系统服务发生了严重退化。新疆是中国面积最大、最典型的干旱区,生态系统服务对土地利用变化尤为敏感。结合改进的等效因子法、未来土地利用模拟(FLUS)模型和交叉敏感性分析,提出了一个改进的生态系统服务评估和模拟框架。结果表明:①1980 ~ 2020年,建设用地和耕地面积分别增加了115.66%和47.18%,主要原因是社会经济活动密集;其中,林地损失和草地损失分别减少5.84%和4.15%。此外,水体略有扩张,主要原因是气候变化。(2)生态系统服务价值(ESV)虽然在研究期间上升了3.2%,但由于土地利用方式的频繁变化,ESV呈现波动趋势。根据目前的发展势头,根据模拟,到2030年,ESV总量将呈现下降趋势。③生态系统价值变化呈现出明显的空间差异,生态系统价值减少主要集中在两大经济带,而生态系统价值增加主要集中在自然生态系统和生物多样性得到有效保护的地区。(4)交叉敏感性分析表明,生态系统价值对水体变化的敏感性极高,对建设用地和耕地变化的敏感性相对较低。(5)加强建设用地集约利用,提高耕地产量和质量,优先开发未利用地,加强水资源保护是生态脆弱干旱区的关键。本研究将从土地利用有效管理的角度进一步认识干旱区人与环境的相互作用,并最终支持干旱区可持续发展。
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Sensitivity assessment and simulation of ecosystem services in response to land use change in arid regions: Empirical evidence from Xinjiang, China
Ecosystem services are essential for human life, but they have undergone significant degradation in recent decades, mainly due to human-induced land use change. This research focuses on Xinjiang, the largest and most typical arid region in China, where ecosystem services are particularly sensitive to land use change. An improved framework for assessing and simulating ecosystem services combining a modified equivalent factor method, a future land use simulation (FLUS) model, and a cross-sensitivity analysis is proposed. The main results are obtained as follows: (1) During 1980 and 2020, construction land and cultivated land expanded by 115.66% and 47.18%, respectively, primarily owing to intensive socio-economic activities. The expense was the losses of forest land and grassland, with reductions of 5.84% and 4.15%, respectively. Besides, the water body expanded slightly, primarily owing to climate change. (2) The total ecosystem service value (ESV), despite a 3.2% rise during the research period, exhibited a fluctuating pattern as a result of frequent changes in land use. Given the current development momentum, the total ESV will present a downward trend by 2030 according to the simulation. (3) The ESV change revealed a notable spatial difference, wherein the loss of ESV was concentrated primarily in two major economic belts, while the rise was primarily observed in areas where the natural ecosystem and biological diversity were effectively protected. (4) The cross-sensitivity analysis demonstrated an extremely high sensitivity of ESV towards the change in water body and a relatively low sensitivity towards the change in construction land and cultivated land. (5) Enhancing intensive use of construction land, promoting yield and quality of cultivated land, prioritizing developing unused land, and strengthening water conservation are crucial for ecologically fragile arid regions. This research will enhance our understanding of the human-environment interaction in arid regions and ultimately support their sustainable development from the perspective of effective land use 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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