首页> 外文期刊>Chemical geology >Beyond 500ka: Progress and prospects in the UPb chronology of speleothems, and their application to studies in palaeoclimate, human evolution, biodiversity and tectonics
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Beyond 500ka: Progress and prospects in the UPb chronology of speleothems, and their application to studies in palaeoclimate, human evolution, biodiversity and tectonics

机译:超过500ka:鞘翅目UPb年表的进展和前景及其在古气候,人类进化,生物多样性和构造学研究中的应用

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摘要

This review summarises current research aimed at extending the chronology and thus scientific utility of speleothems beyond the 500. ka limit previously imposed by conventional U. Th dating methods. The U. Pb decay scheme is familiar to all geoscientists but its application to speleothems is a relatively recent development, and one set to revolutionise their use in studies of climate change, human evolution and migration, biodiversity, tectonics and landscape evolution. Technological advances, such as the introduction of multi-collector ICPMS instruments, have played a key role in this breakthrough and multiple inter-laboratory and inter-method comparisons provide evidence that the methodology is now mature and that the ages obtained are robust. Some impediments remain, in particular with respect to corrections for initial isotopic disequilibrium (younger samples) and the construction of internal chronologies (older samples) but these are areas of intense research activity and are likely to see significant advances in the near future. The coupling of speleothem U. Pb dating with other nascent technologies, offering the prospect of precise palaeotemperature estimation, is an exciting development in palaeoclimate science, while U. Pb chronologies of archaeological sites are producing important new insights into human evolution. Although less well developed at this point, the methodology appears equally well suited and significant for future studies of past faunal change, and landscape evolution.
机译:这篇综述总结了当前的研究,旨在扩大年代学,从而将鞘翅目的科学实用性扩展到以前由常规U.Th测年方法施加的500.ka限制。 U. Pb衰变方案是所有地球科学家都熟悉的方法,但其在蛇鞘菌丝中的应用是相对较新的发展,旨在彻底改变其在气候变化,人类进化与迁移,生物多样性,构造和景观演化研究中的用途。技术上的进步,例如引入多收集器ICPMS仪器,在这一突破中发挥了关键作用,并且多次实验室间和方法间的比较提供了证据,证明该方法学已经成熟,并且所获得的年龄是可靠的。仍然存在一些障碍,特别是在校正初始同位素不平衡(年轻的样本)和内部年代学(较老的样本)方面,但这些都是研究活跃的领域,并且在不久的将来可能会取得重大进展。蝶骨U. Pb与其他新生技术的结合,提供了精确的古温度估计的前景,是古气候科学中令人振奋的发展,而考古遗址的U. Pb年表正在为人类进化提供重要的新见识。尽管在这一点上尚不完善,但该方法似乎同样适用于未来动物区系变化和景观演变的研究,对今后的研究具有重要意义。

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