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塔里木盆地西南缘表土碳同位素组成特征分析
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作者 琚立 冉敏 +1 位作者 杨运鹏 王馨 《干旱区地理》 CSCD 北大核心 2022年第6期1805-1813,共9页
土壤碳同位素可以反映生长植被的同位素组成,从而进一步反映当时的植被类型以及气候环境状况。已有的研究显示,不同地区碳同位素与气候因子的关系存在显著差异,因此在不同区域开展土壤碳同位素与气候因子之间相关性关系分析对古气候的... 土壤碳同位素可以反映生长植被的同位素组成,从而进一步反映当时的植被类型以及气候环境状况。已有的研究显示,不同地区碳同位素与气候因子的关系存在显著差异,因此在不同区域开展土壤碳同位素与气候因子之间相关性关系分析对古气候的重建至关重要。通过采集塔里木盆地西缘帕米尔地区和盆地南缘和田地区策勒县的表土沉积物,分析测定后获得其有机碳同位素,并将该表土有机碳同位素数据与气候因子进行相关性分析,以探明研究区有机碳同位素组成特征及其潜在的气候意义。结果表明:帕米尔地区和策勒地区的表土碳同位素变化对气候因子的响应存在明显差异。气温方面,帕米尔地区与气温呈正相关,其中与冷季气温相关性最好(r=0.598,P<0.01);策勒地区与气温呈负相关,其中与暖季气温相关性最好(r=-0.684,P<0.01)。降水方面,帕米尔地区与降水量的相关性不显著;策勒地区与年均降水量呈弱负相关,与暖季降水量呈弱正相关,与冷季降水量呈显著的负相关关系(r=-0.632,P<0.01)。上述分析表明基于沉积物有机碳同位素来重建古气候时应充分考虑区域差异的影响。 展开更多
关键词 ^表土δ^(13)c_(org) 气温 降水量 相关性分析 干旱区
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Holocene climate change in the Central Tibetan Plateau inferred by lacustrine sediment geochemical records 被引量:16
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作者 Andreas LüCKE Bernd WüNNEMANN 《Science China Earth Sciences》 SCIE EI CAS 2007年第10期1548-1555,共8页
Multi-proxies of lacustrine sediments, such as total carbon (TC), total organic carbon (TOC), total inorganic carbon (TIC), total nitrogen (TN), total sulfur (TS), hydrogen index (HI), oxygen index (OI) and stable car... Multi-proxies of lacustrine sediments, such as total carbon (TC), total organic carbon (TOC), total inorganic carbon (TIC), total nitrogen (TN), total sulfur (TS), hydrogen index (HI), oxygen index (OI) and stable carbon isotopic composition of organic matter (δ^(13)C_(org)), were analyzed using a 7.3 m core from Zige Tangco. The source of the organic matter in the sediment was mainly from autochthonous phyto-plankton, therefore the significances of proxies can be interpreted as that high TOC, TOC/TS, HI and δ^(13)C_(org) values, low TC, TIC values corresponded to warm and wet climatic condition, and vice versa. The process of climatic development in the Zige Tangco region was hence recovered. During the early and Mid-Holocene, the climate was warm and wet and intensive cold events occurred during the periods of 8600 to 8400 cal a BP and 7400 to 7000 cal a BP. In the second half of Holocene, the climate became cold and dry gradually. The palaeoclimatic process during Holocene in Zige Tangco region matched well with that in Co Ngoin region which is ca 40 km to the south-east. Therefore this palaeoclimatic process represents the Holocene climatic feature in the Central Tibetan Plateau which has the same pattern in the Northern Tibetan Plateau, but the time and duration of some climatic events might be different. We can conclude that in Holocene solar insolation controlled the climatic pattern on the central Tibetan Plateau. 展开更多
关键词 lacustrine sediment hydrogen index (HI) stable carbon isotopic composition ^(δ^(13)c_(org)) PALAEOcLIMATE central Tibetan Plateau
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