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海洋环境中锇同位素研究及意义
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作者 蓝先洪 《海洋地质动态》 1999年第1期1-3,共3页
近年来海洋环境中锇同位素研究已取得了长足的进展。在海水的锇和锇同位素组成及演化研究、运用锇同位素示踪和定年技术研究大洋玄武岩成因、大陆岩石圈地幔的演化等方面已取得了不少成果。随着锇同位素资料的不断积累和分析技术的不断... 近年来海洋环境中锇同位素研究已取得了长足的进展。在海水的锇和锇同位素组成及演化研究、运用锇同位素示踪和定年技术研究大洋玄武岩成因、大陆岩石圈地幔的演化等方面已取得了不少成果。随着锇同位素资料的不断积累和分析技术的不断完善,将为解决海洋环境中的地学难题提供有力的依据。 展开更多
关键词 锇同位素 海洋环境 全球古环境 海水
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Progress and perspective on frontiers of geobiology 被引量:11
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作者 XIE ShuCheng YIN HongFu 《Science China Earth Sciences》 SCIE EI CAS 2014年第5期855-868,共14页
Geobiology is a new discipline on the crossing interface between earth science and life science, and aims to understand the in- teraction and co-evolution between organisms and environments. On the basis of the latest... Geobiology is a new discipline on the crossing interface between earth science and life science, and aims to understand the in- teraction and co-evolution between organisms and environments. On the basis of the latest international achievements, the new data presented in the Beijing geobiology forum sponsored by Chinese Academy of Sciences in 2013, and the papers in this special issue, here we present an overview of the progress and perspectives on three important frontiers, including geobiology of the critical periods in Earth history, geomicrobes and their responses and feedbacks to global environmental changes, and geobiology in extreme environments. Knowledge is greatly improved about the close relationship of some significant biotic events such as origin, radiation, extinction, and recovery of organisms with the deep Earth processes and the resultant envi- ronmental processes among oceans, land, and atmosphere in the critical periods, although the specific dynamics of the co-evolution between ancient life and paleoenvironments is still largely unknown. A variety of geomicrobial functional groups were found to respond sensitively to paleoenvironmental changes, which enable the establishment of proxies for paleoenvi- ronmental reconstruction, and to play active roles on the Earth environmental changes via elemental biogeochemical cycles and mineral bio-transforrnations, but to be deciphered are the mechanisms of these functional groups that change paleoenvi- ronmental conditions. Microbes of potential geobiology significance were found and isolated from some extreme environments with their biological properties partly understood, but little is known about their geobiological functions to change Earth envi- ronments. The biotic processes to alter or modify the environments are thus proposed to be the very issue geobiology aims to decipher in the future. Geobiology will greatly extend the temporal and spatial scope of biotic research on Earth and beyond. It has great potential of application in the domains of resource exploration and global change. To achieve these aims needs coor- dinative multidisciplinary studies concerning geomicrobiology and related themes, database and modeling of biogeochemical cycles, typical geological environments, and coupling of biological, physical, and chemical processes. 展开更多
关键词 microbial functional group extreme environment biotic crisis PALEOBIOLOGY
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