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排序方式: 共有1115条查询结果,搜索用时 125 毫秒
81.
14C measurement of forest soils in Dinghushan Biosphere Reserve   总被引:2,自引:0,他引:2  
Shen  Chengde  Liu  Dongsheng  Peng  Shaolin  Sun  Yanmin  Jiang  Mantao  Yi  Weixi  Xing  Changping  Gao  Quanzhou  Li  Zhi’an  Zhou  Guoyi 《科学通报(英文版)》1999,44(3):251-251
Organic carbon in forest soils of Qingyunsi and Wukesong profiles can be divided into fast and slow components. Δ 14C values of these profiles decrease with increasing of depth. The Δ 14C values in 30-40 cm depth interval of Wukesong profile are decreasing sharply until a very low value, showing that a strong geological environment change occurred about 1 560 years ago. The 14C apparent ages of Wukesong profile show that the coniferous and broad-leaf mixed forests around Wukesong profile have been developing since 425 a BP, which is consistent with historical documents. The penetrating depths of "bomb 14C" in Qingyunsi and Wukesong profiles are 10 and 20 cm, respectively.  相似文献   
82.
在利用信息化的语言诠释艺术理念的今天,艺术是否依然能够保留其原始的内涵和质朴的特征成为人们关注的热点。本文通过分析新时代艺术的若干特点,指出经典艺术面临的挑战。倡导艺术家积极应对信息化浪潮的冲击,用新的思维方式推动新世纪中华传统文艺的复兴。  相似文献   
83.
在太原地区,树麻雀幼鸟头骨骨化的完成约需130-180天,最早离巢的个体骨化过程结束于10月下旬,最晚离巢的个体结束于翌年2月上旬。用未骨化区域的面积可以估计离巢的时间。腔上囊的消失和骨化的完成基本同步,喙斑的褪却则比它们晚50天左右。所以,依喙斑确定种群中成、幼鸟比例时,8-11月可得到较为准确的结果,而腔上囊和骨化程度仅宜在8-9月使用。  相似文献   
84.
Genesis of zircon and its constraints on interpretation of U-Pb age   总被引:242,自引:10,他引:232  
Zircon U-Pb dating is the most commonly used method for isotopic geochronology. However, it has been a difficult issue when relating zircon U-Pb ages to metamorphic conditions in complex metamorphic rocks. Much progress has been made in the past decade with respect to the genesis of zircon and its constraints on interpretation of U-Pb age. Three methods have been proposed to link zircon U-Pb age to metamorphic conditions: ( i ) internal structure; ( ii ) trace element feature; (iii) mineral inclusion composition. Magmatic zircon shows typical oscillatory zoning and/or sector zoning, whereas metamorphic zircon has internal structures such as no zoned, weakly zoned, cloudy zoned, sector zoned, planar zoned, and patched zoned ones. Zircons formed in different geological environments generally have characteristic internal structures. Magmatic zircons from different rock types have variable trace element abundances, with a general trend of increasing trace element abundances in zircons from ultramafic through mafic to granitic rocks. Zircons formed under different metamorphic conditions have different trace element characteristics that can be used to relate their formation to metamorphic conditions. It is an effective way to relate zircon growth to certain P-T conditions by studying the trace element partitioning between coexisting metamorphic zircon and garnet in high-grade metamorphic rocks containing both zircon and garnet. Primary mineral inclusions in zircon can also provide unambiguous constraints on its formation conditions. Therefore, interpretation of zircon U-Pb ages can be constrained by its internal structure, trace element composition, mineral inclusion and so on.  相似文献   
85.
中国传统休闲文化与西方休闲价值观   总被引:11,自引:0,他引:11  
通过对我国悠久休闲历史文化的介绍,以及对西方休闲理论演进的分析,揭示了人类即将迈入的"休闲时代"以及休闲时代的特征、休闲时代人类的价值观念等。旨在引起社会更多人的关注,提高人们的休闲意识,享受休闲,在休闲中体会生命的价值和意义。  相似文献   
86.
论弘扬"红军精神" --兼论发展先进文化   总被引:2,自引:0,他引:2  
“红军精神”是川陕苏区历史留给我们的宝贵精神财富,是重要的苏区文化现象和自己时代精神的精华,是中国先进文化重要的生成因素,今天仍然是推动实践发展的强大精神动力,弘扬“红军精神”要与时俱进,弘扬“红军精神”就是发展先进文化,打造新世纪老区发展的精神文化竞争力。  相似文献   
87.
河北高寺台超镁铁岩体中锇矿物的锇同位素组成初步研究   总被引:1,自引:0,他引:1  
报道了河北高寺台超基性岩体中的等轴锇铱矿和六方铱锇矿的Os同位素组成,两样品的187Os/188Os值分别为0.123 582±7和0.123 731±7.数据的解释有赖于年龄的和/或源区性质的制约.若已知矿物源区,可由同位素组成制约其形成时代.如上述矿物的锇来自于原始上地幔,其形成时代可能为500±10 Ma;若其源区为亏损的岩石圈地幔,其形成时代可能年轻到晚中生代;若源区为富集的地幔柱,其形成时代可能老到中元古代.反之,若能限定矿物形成时代,则可制约其源区性质.若上述锇矿物形成于印支期,则很可能源于亏损的岩石圈地幔.若它们形成于中元古代,则其源区很可能来源于富集的地幔柱性质的地幔.根据区域地质情况,我们倾向于这些Os来自富集地幔、高寺台岩体形成于中元古代的解释,但进一步解释有待于新的独立证据.尽管如此,这些数据对今后高寺台岩体的成因或年龄研究有参考价值.  相似文献   
88.
Ages of the stratigraphic boundary MIS1/2 and MIS3/4 of the Yuanbu loess section in Linxia are used as the basis of the nodal control age. The age of MIS1/2 and MIS3/4 are obtained from the latest international research result—the climatic events recorded in the stalagmite in the Hulu Cave in Nanjing, that MIS1/2 is 11.5 kaB.P. and MIS3/4 is 59.8 kaB.P.. The ages of the two climatic events contain three nodal age control models (Model 1: 0 kaB.P.—59.8 kaB.P.; Model 2: 0 kaB.P.—11.5 kaB.P. and 11.5 kaB.P.—59.8 kaB.P.; Model 3: 11.5 kaB.P.—59.8 kaB.P.), which are used as the nodal control age separately. The deposition times of various stratigraphic horizons are calculated by using the magnetic susceptibility age model and grain-size age model, and then compared with each other. In addition, the AMS14C age, OSL age and the ages of YD and H events are compared with the ages of the corresponding horizons calculated by the three models of nodal control ages. From the analyses of lithologic characters and climatic stages it has been found that both the magnetic susceptibility age model and the grain-size age model have some defects. Because the accurate control ages are selected as the nodal points of the glacial period or interglacial period, the stratigraphic deposition times determined by the high resolution of magnetic susceptibility age model and grain-size age model approximate to the actual ages. As for the relative accuracy of the two age models, the magnetic susceptibility age model is more accurate than the grain-size age model.  相似文献   
89.
Ages of the stratigraphic boundary MIS1/2 and MIS3/4 of the Yuanbu loess section in Linxia are used as the basis of the nodal control age. The age of MIS1/2 and MIS3/4 are obtained from the latest international research result—the climatic events recorded in the stalagmite in the Hulu Cave in Nanjing, that MIS1/2 is 11.5 kaB.P. and MIS3/4 is 59.8 kaB.P.. The ages of the two climatic events contain three nodal age control models (Model 1: 0 kaB.P.—59.8 kaB.P.; Model 2: 0 kaB.P.—11.5 kaB.P. and 11.5 kaB.P.—59.8 kaB.P.; Model 3: 11.5 kaB.P.—59.8 kaB.P.), which are used as the nodal control age separately. The deposition times of various stratigraphic horizons are calculated by using the magnetic susceptibility age model and grain-size age model, and then compared with each other. In addition, the AMS14C age, OSL age and the ages of YD and H events are compared with the ages of the corresponding horizons calculated by the three models of nodal control ages. From the analyses of lithologic characters and climatic stages it has been found that both the magnetic susceptibility age model and the grain-size age model have some defects. Because the accurate control ages are selected as the nodal points of the glacial period or interglacial period, the stratigraphic deposition times determined by the high resolution of magnetic susceptibility age model and grain-size age model approximate to the actual ages. As for the relative accuracy of the two age models, the magnetic susceptibility age model is more accurate than the grain-size age model.  相似文献   
90.
High-precision U-Pb dating by in situ LA-ICP-MS yields an age of 4079±5 Ma for a xenocrystal zircon from Ordovician volcanics of the Caotangou Group in western part of the North Qinling Orogenic Belt. As a result, the North Qinling Orogenic Belt becomes one of a few localities in the world that contain Hadean age records (4276±6 Ma and 4404±8 Ma detrital zircons from Jack Hill of the Yilgarn craton, 4016 Ma Acasta gneisses of the Wopmay Orogeny and Burang quartzite with detrital zircon of 4103 Ma in Tibet). It is also the first report of the Hadean age in Phanerozoic volcanics. The finding of the 4.1 Ga xenocrystal zircon provides not only the geochronological record of the oldest crustal materials in China, but also the condition for further search for rocks forming in the region during the early time of the Earth's evolution. Thirty-six zircon U-Pb dates from the Ordovician volcanic rocks are subgrouped into seven generations that represent different tectono-magmatic events in the North Qinling Orogenic Belt. Among them, two periods of 0.9--1.5 Ga and 0.4--0.5 Ga are consistent with Mesoproterozoic and Early Paleozoic orogenies, respectively.  相似文献   
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