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题名: Driving force and changing trends of vegetation phenology in the Loess Plateau of China from 2000 to 2010
作者: Wang Hao; Liu Guo-hua; Li Zong-shan; Ye Xin; Wang Meng; Gong Li
刊名: JOURNAL OF MOUNTAIN SCIENCE
出版日期: 2016-05
卷号: 13, 期号:5, 页码:844-856
关键词: The Loess Plateau ; Trend analysis ; Phenology ; NDVI ; Vegetation green-up date
DOI: 10.1007/s11629-015-3465-2
部门归属: 城市与区域生态国家重点实验室
英文摘要: Changes in vegetation phenology are key indicators of the response of ecosystems to climate change. Therefore, knowledge of growing seasons is essential to predict ecosystem changes, especially for regions with a fragile ecosystem such as the Loess Plateau. In this study, based on the normalized difference vegetation index (NDVI) data, we estimated and analyzed the vegetation phenology in the Loess Plateau from 2000 to 2010 for the beginning, length, and end of the growing season, measuring changes in trends and their relationship to climatic factors. The results show that for 54.84% of the vegetation, the trend was an advancement of the beginning of the growing season (BGS), while for 67.64% the trend was a delay in the end of the growing season (EGS). The length of the growing season (LGS) was extended for 66.28% of the vegetation in the plateau. While the temperature is important for the vegetation to begin the growing season in this region, warmer climate may lead to drought and can become a limiting factor for vegetation growth. We found that increased precipitation benefits the advancement of the BGS in this area. Areas with a delayed EGS indicated that the appropriate temperature and rainfall in autumn or winter enhanced photosynthesis and extended the growth process. A positive correlation with precipitation was found for 76.53% of the areas with an extended LGS, indicating that precipitation is one of the key factors in changes in the vegetation phenology in this water-limited region. Precipitation plays an important role in determining the phenological activities of the vegetation in arid and semiarid areas, such as the Loess Plateau. The extended growing season will significantly influence both the vegetation productivity and the carbon fixation capacity in this region.
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内容类型: 期刊论文
URI标识: http://ir.rcees.ac.cn/handle/311016/35560
Appears in Collections:城市与区域生态国家重点实验室_期刊论文

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