Framework for stratigraphic analysis of Pliocene fossiliferous deposits at Hagerman Fossil Beds National Monument, Idaho

Q3 Earth and Planetary Sciences Rocky Mountain Geology Pub Date : 2009-03-20 DOI:10.2113/GSROCKY.44.1.33
D. R. Ruez
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引用次数: 12

Abstract

Hagerman Fossil Beds National Monument (HAFO), Idaho, is internationally significant for the vertebrate fossils from its hundreds of fossil localities spanning more than a million years of the Pliocene. This study establishes the background for comparisons among localities in the Glenns Ferry Formation within HAFO by describing the nature of the fossiliferous deposits, using published data to revise age estimates for HAFO localities, and relating the relative differences in elevation of the fossil-bearing localities to particular time horizons. Fossils from the anthills and blowout localities are considered to be essentially in situ stratigraphically. Species of modern harvester ants do gather fossils from more than the immediate area, but the maximum vertical movement is probably within the resolution of elevation possible at most HAFO localities. The microstratigraphy of blowout localities is described here for the first time, with vertebrate fossils derived exclusively from layers of about 12-cm thickness. Fossils recovered as surface float should be excluded from stratigraphic comparisons. Based on a combination of paleomagnetic and radioisotopic studies, the maximum age for the top of the Glenns Ferry Formation exposed at HAFO is estimated at 3.11 Ma, and the minimum age for the lowermost exposure is estimated at 4.18 Ma. It is improbable that strata of the Glenns Ferry Formation exist at HAFO that are younger than 3.04 or older than 4.29 Ma. Finally, using marker beds and published stratigraphic sections, the differences in elevation needed to compare localities in the Glenns Ferry Formation at HAFO against a generalized composite section are established. Fossil-bearing sites within this framework can be placed in proper stratigraphic context, and faunal change thereby can be evaluated more precisely.
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爱达荷州哈格曼化石层国家纪念碑上新世化石沉积物地层分析框架
位于爱达荷州的哈格曼化石层国家纪念碑(HAFO)因其数百个化石地点的脊椎动物化石而在国际上具有重要意义,这些化石跨越了上新世一百多万年。本研究通过描述化石沉积物的性质,使用已发表的数据来修订HAFO地区的年龄估计,并将含化石地区的海拔相对差异与特定的时间范围联系起来,为HAFO地区格伦斯渡口组各地区之间的比较建立了背景。在地层学上,蚁丘和井喷地区的化石基本上被认为是原位的。现代收获蚁的种类确实从邻近地区以外的地方收集化石,但最大的垂直运动可能在大多数HAFO地点可能的海拔分辨率范围内。本文首次描述了井喷地区的微地层,脊椎动物化石完全来自约12厘米厚的地层。作为水面漂浮物回收的化石应排除在地层比较之外。结合古地磁和放射性同位素研究,估计在HAFO暴露的Glenns Ferry组顶部的最大年龄为3.11 Ma,最低暴露的最小年龄为4.18 Ma。在HAFO不可能存在小于3.04 Ma或大于4.29 Ma的Glenns Ferry组地层。最后,利用标记层和已发表的地层剖面,建立了将HAFO的Glenns Ferry组与一般合成剖面进行比较所需的高程差异。在这个框架内的化石遗址可以放置在适当的地层环境中,从而可以更准确地评估动物的变化。
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来源期刊
Rocky Mountain Geology
Rocky Mountain Geology Earth and Planetary Sciences-Geology
CiteScore
1.10
自引率
0.00%
发文量
4
期刊介绍: Rocky Mountain Geology (formerly Contributions to Geology) is published twice yearly by the Department of Geology and Geophysics at the University of Wyoming. The focus of the journal is regional geology and paleontology of the Rocky Mountains and adjacent areas of western North America. This high-impact, scholarly journal, is an important resource for professional earth scientists. The high-quality, refereed articles report original research by top specialists in all aspects of geology and paleontology in the greater Rocky Mountain region.
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