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Determining the contributions of climate change and human activities to vegetation dynamics in agro-pastural transitional zone of northern China from 2000 to 2015

机译:从2000年至2015年从中国北方农业牧草过渡地区确定气候变化与人类活动对植被动态的贡献

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摘要

The vegetation in the agro-pastoral transitional zone of northern China (APTZNC) was significantly restored, and both climate change and ecological restoration projects contributed to vegetation activities with varied proportion. Since few decades ago, APTZNC has undergone significant land degradation and climate change, threatening regional sustainable development, and in response to such ecological crises, multiple ecological restoration projects were implemented, which have caused a profound impact on the terrestrial ecosystem. Taking agro-pastural transitional zone of northern China (APTZNC) as the study area, this study used 16-year (2000-2015) net primary productivity (NPP) as an important indicator of the arid and semi-arid ecosystem's productivity, combing meteorological data in same period to (1) monitor the vegetation dynamics affected by both climate and ecological restoration projects; (2) detect climate changing trend, including annual precipitation, air temperature, and sunlight hours; (3) explicitly distinguish driving forces of climate change and ecological restoration projects on vegetation dynamics based on correlation analysis. The results demonstrated that (1) the annual NPP indicated overall greening (48.77% significant restoration) and partial degradation (0.39% significant degradation) in APTZNC; (2) the annual precipitation was the main factor that widely influences vegetation growth, and the area with significant influence accounted for 55.53%; however, the area with significant temperature influence only accounted for 1%, and the area affected significantly by sunshine hours accounted for 14.33%; (3) In the area of significant greening with proportion of 48.77%, of 26.93% was related to climate change, of 19.80% was related to ecological conservation programs, and of 2.05% was related to multiple factors. In the significantly degraded area with proportion of 0.39%, of 0.1% is related to climate change and of 0.29% is abnormally degraded. Our study is expected to accelerate the understanding of vegetation dynamics and its driving mechanisms, and provide support for scientifically formulating and adjusting ecological restoration projects in APTZNC.
机译:中国北方农业田园过渡区(APTZNC)的植被大大恢复,气候变化和生态恢复项目都涉及不同比例的植被活动。几十年前,APTZNC经历了重大的土地退化和气候变化,威胁区域可持续发展,并根据此类生态危机,实施了多种生态修复项目,这对陆地生态系统产生了深远的影响。以中国北方(APTZNC)为研究区,这项研究采用了16年(2000-2015)净初级生产率(NPP)作为干旱和半干旱生态系统生产力,梳理气象的重要指标与(1)相同的数据监测受气候和生态修复项目影响的植被动态; (2)检测气候变化趋势,包括年降水量,空气温度和阳光小时; (3)基于相关分析,明确区分气候变化和生态修复项目的推动力和生态修复项目。结果表明,(1)年度NPP表明APTZNC中的整体绿化(显着恢复48.77%的重大恢复)和部分降解(重大降解0.39 %%); (2)年降水量是广泛影响植被生长的主要因素,其面积显着影响占55.53%;然而,具有显着的温度影响的地区仅占1%,而且阳光小时的区域显着影响14.33%; (3)在比例为48.77%的显着绿化面积,26.93%与气候变化有关,19.80%与生态保护计划有关,2.05%与多种因素有关。在比例为0.39%的显着降解的区域中,0.1%与气候变化有关,0.29%异常降解。我们的研究预计将加速对植被动态及其驱动机制的理解,并为科学制定和调整APTZNC的生态修复项目提供支持。

著录项

  • 来源
    《The Science of the Total Environment》 |2020年第may20期|134871.1-134871.14|共14页
  • 作者单位

    State Key Laboratory of Earth Surface Processes and Resource Ecology (ESPRE) Beijing Normal University Beijing 100875 China Faculty of Geographical Science Beijing Normal University Beijing 100875 China Center for Human-Environment System Sustainability (CHESS) Beijing Normal University Beijing 100875 China;

    State Key Laboratory of Earth Surface Processes and Resource Ecology (ESPRE) Beijing Normal University Beijing 100875 China Faculty of Geographical Science Beijing Normal University Beijing 100875 China Center for Human-Environment System Sustainability (CHESS) Beijing Normal University Beijing 100875 China;

    State Key Laboratory of Earth Surface Processes and Resource Ecology (ESPRE) Beijing Normal University Beijing 100875 China Faculty of Geographical Science Beijing Normal University Beijing 100875 China Center for Human-Environment System Sustainability (CHESS) Beijing Normal University Beijing 100875 China;

    State Key Laboratory of Earth Surface Processes and Resource Ecology (ESPRE) Beijing Normal University Beijing 100875 China Faculty of Geographical Science Beijing Normal University Beijing 100875 China Center for Human-Environment System Sustainability (CHESS) Beijing Normal University Beijing 100875 China;

    State Key Laboratory of Earth Surface Processes and Resource Ecology (ESPRE) Beijing Normal University Beijing 100875 China Center for Human-Environment System Sustainability (CHESS) Beijing Normal University Beijing 100875 China;

    State Key Laboratory of Earth Surface Processes and Resource Ecology (ESPRE) Beijing Normal University Beijing 100875 China Center for Human-Environment System Sustainability (CHESS) Beijing Normal University Beijing 100875 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Agro-pastural transitional zone of northern; China (APTZNC); Climate change; Ecological restoration projects; NPP; Vegetation dynamics;

    机译:北方农业过渡区;中国(APTZNC);气候变化;生态恢复项目;NPP;植被动态;

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