Arid
DOI10.1191/0959683604hl764rp
Modern pollen-based interpretations of mid-Holocene palaeoclimate (8500 to 3000 cal. BP) at the southern margin of the Tengger Desert, northwestern China
Ma, YZ; Zhang, HC; Pachur, HJ; Wunnemann, B; Li, JJ; Feng, ZD
通讯作者Feng, ZD
来源期刊HOLOCENE
ISSN0959-6836
EISSN1477-0911
出版年2004
卷号14期号:6页码:841-850
英文摘要

The focus of this paper is on the reconstruction of the mid-Holocene climatic changes based on the pollen records contained in a 6.2 m thick section in the southern part of the Tengger Desert, northwestern China. To understand the modern analogues of the mid-Holocene changes, modern pollen spectra across different vegetation zones from the Qilian Mountains to the lowland Tengger Desert were studied first. Four pollen combinations were identified, corresponding to four different modern ecological environments: (1) a Picea-Artemisia combination in a spruce forest and its vicinity; (2) an Artemisia-Chenopodiaceae-Gramineae-Salix combination in a mixture belt of montane grassland and poplar woodland; (3) a Chenopodiaceae-Artemisia-Nitraria combination in a desert steppe belt; and (4) an Elaeagnus-Artemisia-Chenopodiaceae-Nitraria combination in a desert riparian forest. Our study also shows that a relatively low percentage of Picea pollen (30-10%) seems to be associated with water transportation (alluvial deposits) and a very low percentage of Picea pollen (10-5%) appears to be related to long-distance air transportation. With references to the modern relationships between pollen assemblages and associated bioclimates, the pollen sequence covering the period between 8500 and 3000 cal. BP was used to infer the climatic change history. The results show that a warmer and drier climate dominated between 8500 and 7950 cal. BP. Subsequent decreases in Artemisia and warm desert forbs/shrubs taxa and contemporaneous fluctuating increases in montane coniferous and aquatics elements from 7950 to 7400 cal. BP reflect a fluctuating increase in humidity and/or a fluctuating decrease in temperature. The following period from 7400 to 5650 cal. BP was generally warm with the Holocene Climate Optimum occurring between 7400 and 6500 cal. BP. A remarkably cool spell followed between 6500 and 6300 cal. BP that was then succeeded by a warmer and more humid period between 6300 and 5650 cal. BP. The period between 5650 and 4450 cal. BP was characterized by drastic oscillations in climatic conditions with three humid and probably cold spells intervened by three relatively dry and warm spells. The period between 4450 and 3500 cal. BP was cold and humid, followed by a wet spell as indicated by a very high percentage of Typha pollen.


英文关键词climatic optimum Tengger Desert climatic change modern pollen vegetation China Holocene
类型Article
语种英语
国家Peoples R China ; Germany ; USA
收录类别SCI-E
WOS记录号WOS:000225101900005
WOS关键词BASIN WESTERN TIBET ; HOLOCENE ENVIRONMENTAL-CHANGES ; CLIMATE-CHANGE ; ICE CORE ; MONSOON ; PLATEAU ; VARIABILITY ; GREENLAND ; RECORD ; OCEAN
WOS类目Geography, Physical ; Geosciences, Multidisciplinary
WOS研究方向Physical Geography ; Geology
来源机构兰州大学
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/146912
作者单位(1)Lanzhou Univ, Natl Lab Western Chinas Environm Syst, MOE, Lanzhou 730000, Peoples R China;(2)Lanzhou Univ, Dept Geog Sci, Lanzhou 730000, Peoples R China;(3)Free Univ Berlin, Inst Geog Sci, D-12249 Berlin, Germany;(4)Montclair State Univ, Dept Earth & Environm Studies, Montclair, NJ 07043 USA
推荐引用方式
GB/T 7714
Ma, YZ,Zhang, HC,Pachur, HJ,et al. Modern pollen-based interpretations of mid-Holocene palaeoclimate (8500 to 3000 cal. BP) at the southern margin of the Tengger Desert, northwestern China[J]. 兰州大学,2004,14(6):841-850.
APA Ma, YZ,Zhang, HC,Pachur, HJ,Wunnemann, B,Li, JJ,&Feng, ZD.(2004).Modern pollen-based interpretations of mid-Holocene palaeoclimate (8500 to 3000 cal. BP) at the southern margin of the Tengger Desert, northwestern China.HOLOCENE,14(6),841-850.
MLA Ma, YZ,et al."Modern pollen-based interpretations of mid-Holocene palaeoclimate (8500 to 3000 cal. BP) at the southern margin of the Tengger Desert, northwestern China".HOLOCENE 14.6(2004):841-850.
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