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现代弧-陆碰撞带物源区演化和蚀顶历史 台湾东部上新—更新世砂岩的岩石学证据
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作者 R.J.Dorsey 陶国保 《海洋地质译丛》 1989年第1期29-35,共7页
引言十年来,砂岩组分与板块构造的关系已被人们广泛研究和讨论。由 Dickinson 等(1979,1980),和其他人所写的重要文章有助于我们根据主要组分类型推测物源区构造环境。这个方法的局限性是如下一些问题:构造环境的短暂变化,与沉积环境和... 引言十年来,砂岩组分与板块构造的关系已被人们广泛研究和讨论。由 Dickinson 等(1979,1980),和其他人所写的重要文章有助于我们根据主要组分类型推测物源区构造环境。这个方法的局限性是如下一些问题:构造环境的短暂变化,与沉积环境和气候有关的组分变化,从与沉积盆地无构造关系地区大规模横向搬运的砂。尽管有这些问题。 展开更多
关键词 岩石学 石少岩 上新-更新世 台湾
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Magnetic characterization and paleoclimatic significances of late Pliocene-early Pleistocene sediments at site 882A,northwestern Pacific Ocean 被引量:3
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作者 JIANG ZhaoXia LIU QingSong 《Science China Earth Sciences》 SCIE EI CAS 2012年第2期323-331,共9页
Aeolian dust, a primary terrigenous component of ocean sediments, has been widely used to reconstruct the paleoclimatic evolution because its transported distance, grain size and concentration are sensitive to climate... Aeolian dust, a primary terrigenous component of ocean sediments, has been widely used to reconstruct the paleoclimatic evolution because its transported distance, grain size and concentration are sensitive to climate changes. To further characterize the aeolian dust, the deposits at site Ocean Drilling Program (ODP) 882A in northwestern Pacific Ocean are divided into four grain-size fractions (<8, 8-16, 16-64, >64 μm) using the gravitative differentiation method. Detailed rock magnetism results show that magnetite and hematite are dominant magnetic minerals for the dust components. In addition, the aeolian dust (<8 μm) represented by the concentration of magnetic minerals increases sharply at 2.73 Ma, which corresponds to the onset of major glaciation in the Northern Hemisphere. In contrast, the ice-rafted detritus (IRD) (>64 μm) contributes little to the magnetic enhancement of the sediments at 2.73 Ma. These new results greatly improve our understanding of paleoenvironmental evolution during late Pliocene-early Pleistocene in this area. 展开更多
关键词 eolian dust sediment rock magnetism MAGNETITE HEMATITE ODP site 882A the major glaciation in the Northern Hemisphere
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Locomotor adaptations in Plio-Pleistocene large carnivores from the Italian Peninsula: Palaeoecological implications
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作者 Carlo MELORO 《Current Zoology》 SCIE CAS CSCD 北大核心 2011年第3期269-283,共15页
Mammalian carnivores are rarely considered for environmental reconstructions because they are extremely adaptable and their geographic range is usually large. However, the functional morphology of carnivore long bones... Mammalian carnivores are rarely considered for environmental reconstructions because they are extremely adaptable and their geographic range is usually large. However, the functional morphology of carnivore long bones can be indicative of locomotor behaviour as well as adaptation to specific kind of habitats. Here, different long bone ratios belonging to a subsample of extant large carnivores are used to infer palaeoecology of a comparative sample of Plio-Pleistocene fossils belonging to Italian paleo-communities. A multivariate long bone shape space reveals similarities between extant and fossil carnivores and multiple logistic regression models suggest that specific indices (the brachial and the Mt/F) can be applied to predict adaptations to grassland and tropical biomes. These functional indices exhibit also a phylogenetic signal to different degree. The brachial index is a significant predictor of adaptations to tropical biomes when phylogeny is taken into account, while Mt/F is not correlated anymore to habitat adaptations. However, the proportion of grassland-adapted carnivores in Italian paleo-communities exhibits a negative relationship with mean oxygen isotopic values, which are indicative of past climatic oscillations. As climate became more unstable during the Ice Ages, large carnivore guilds from the Italian peninsula were invaded by tropical/closed-adapted species. These species take advantage of the temperate forest cover that was more spread after 1.0 Ma than in the initial phase of the Quaternary (2.0 Ma) when the climate was more arid [Current Zoology 57 (3): 269-283, 2011]. 展开更多
关键词 CARNIVORA Long bones QUATERNARY Climate change
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