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青土湖近6000年来沉积气候记录研究——兼论四五世纪气候回暖 被引量:42
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作者 王乃昂 李吉均 +1 位作者 曹继秀 蔡为民 《地理科学》 CSCD 北大核心 1999年第2期119-124,共6页
对青土湖志云村剖面沉积气候记录和湖泊进退进行了研究,证实季风边缘区河西走廊东段存在暖湿、冷干气候变化的阶段性特征。根据湖相沉积的颜色、粒度、化学组成和有机质含量等气候代用指标的综合分析,提出公元四五世纪存在一次百年尺... 对青土湖志云村剖面沉积气候记录和湖泊进退进行了研究,证实季风边缘区河西走廊东段存在暖湿、冷干气候变化的阶段性特征。根据湖相沉积的颜色、粒度、化学组成和有机质含量等气候代用指标的综合分析,提出公元四五世纪存在一次百年尺度上的气候回暖,这一气候回暖事件的发现,可得到历史文献记载和青海湖自然记录的佐证。 展开更多
关键词 青土湖 全新世 湖相沉积 气候记录 古气候
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A PRELIMINARY RESEARCH ON THE CLIMATIC RECORDS OF LACUSTRINE DEPOSITS OF QINGTU LAKE IN THE LAST 6000 YEARS
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作者 王乃昂 高顺尉 《Chinese Geographical Science》 SCIE CSCD 1999年第4期48-54,共7页
A preliminary study on the advance and the retreat of Qingtu Lake and its climatic records of the Holocene lacustrine deposits has been made through comprehensive analysis. The study shows that the modes characteristi... A preliminary study on the advance and the retreat of Qingtu Lake and its climatic records of the Holocene lacustrine deposits has been made through comprehensive analysis. The study shows that the modes characteristics of climatic change in Eastern Hexi Corridor was provided with the corresponding relationship of warm moist and cold dry during the scale longer than hundred years. As a result of climatic changes and human activities, Qingtu Lake cycle has undergone four lake retreated and three lake advanced stages since 6000 a B.P. Based on the study on lacustrine sedimentary color, grain size, Fe 3+ /Fe 2+ and organic matter, the authors put forward that a warm period existed during the phase of 335-480 A.D. in the studied area. This warm period could be further testified by a lot of evidences obtained from the historical documents and the natural records of Qingtu Lake. In brief, the evolution of lakes in Eastern Hexi Corridor is characterized by sedimentary continuity, fast sedimentary rate and high resolution, it not only indicate the paleoenvironmental and climatic change in Holocene, but also can reflect the intensity of Eastern Asia monsoon. 展开更多
关键词 Qingtu LAKE HOLOCENE LACUSTRINE deposits CLIMATIC RECORDS warm period of 355-480 A.D.
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