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基于MODIS/NDVI的锡林郭勒草原植被变化及其归因 被引量:28
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作者 阿荣 毕其格 董振华 《资源科学》 CSSCI CSCD 北大核心 2019年第7期1374-1386,共13页
在国家“生态文明”战略背景下,蒙古高原作为中国北方重要生态屏障的作用更加凸显。锡林郭勒作为蒙古高原南端的典型内流区与生态敏感区,其草原植被覆盖变化规律在一定程度上能表征中国北方整体生态系统功能的变化态势。本文采用MODIS1... 在国家“生态文明”战略背景下,蒙古高原作为中国北方重要生态屏障的作用更加凸显。锡林郭勒作为蒙古高原南端的典型内流区与生态敏感区,其草原植被覆盖变化规律在一定程度上能表征中国北方整体生态系统功能的变化态势。本文采用MODIS13Q1的产品NDVI数据集,运用势分析法、偏相关性及残差分析法,分析锡林郭勒草原2000—2015年生长期植被覆盖度时空演变特征,探讨草原植被变化的归因。研究结果表明:16年来锡林郭勒草原的生长期植植被覆盖每年以0.0021的速率缓慢增长,但其变化趋势存在明显地域差异性;比较发现,降水因子是影响锡林郭勒地区植被覆盖变化的主要因素;人类活动对该地区植被覆盖变化的改善促进和破坏抑制作用并存,总体是正向干扰效应大于负向干扰效应,人类活动对植被覆盖度改善作用的面积占34.911%,京津风沙源地治理工程等在草原生态环境改善中发挥重要作用;而人类活动导致生态环境遭到破坏的面积占19.348%,尤其是草原露天煤矿开采严重破坏草原植被系统。 展开更多
关键词 草原植被变化 残差分析 MODIS/NDVI数据集 人类活动 草原露天煤矿 锡林郭勒草原
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Abrupt vegetation shifts caused by gradual climate changes in central Asia during the Holocene 被引量:4
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作者 ZHAO Yan LIU YaoLiang +3 位作者 GUO ZhengTang FANG KeYan LI Quan CAO XianYong 《Science China Earth Sciences》 SCIE EI CAS CSCD 2017年第7期1317-1327,共11页
Understanding the response of ecosystems to past climate is critical for evaluating the impacts of future climate changes.A large-scale abrupt shift of vegetation in response to the Holocene gradual climate changes ha... Understanding the response of ecosystems to past climate is critical for evaluating the impacts of future climate changes.A large-scale abrupt shift of vegetation in response to the Holocene gradual climate changes has been well documented for the Sahara-Sahel ecosystem. Whether such a non-linear response is of universal significance remains to be further addressed. Here,we examine the vegetation-climate relationships in central Asia based on a compilation of 38 high-quality pollen records. The results show that the Holocene vegetation experienced two major abrupt shifts, one in the early Holocene(Shift I, establishing shift) and another in the late Holocene(Shift II, collapsing shift), while the mid-Holocene vegetation remained rather stable. The timings of these shifts in different regions are asynchronous, which are not readily linkable with any known abrupt climate shifts,but are highly correlated with the local rainfalls. These new findings suggest that the observed vegetation shifts are attributable to the threshold effects of the orbital-induced gradual climate changes. During the early Holocene, the orbital-induced precipitation increase would have first reached the threshold for vegetation "establishment" for moister areas, but significantly later for drier areas. In contrast, the orbital-induced precipitation decrease during the late Holocene would have first reached the threshold, and led to the vegetation "collapse" for drier areas, but delayed for moister areas. The well-known 4.2 kyr BP drought event and human intervention would have also helped the vegetation collapses at some sites. These interpretations are strongly supported by our surface pollen-climate analyses and ecosystem simulations. These results also imply that future climate changes may cause abrupt changes in the dry ecosystem once the threshold is reached. 展开更多
关键词 Fossil pollen Vegetation response Threshold effects Holocene climate Central Asia
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