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Stratigraphic and paleoenvironmental variations in Rare Earth Element (REE) composition and crystallography of fossil bioapatite.

机译:化石生物磷灰石的稀土元素(REE)组成和晶体学中的地层和古环境变化。

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摘要

Rare Earth Elements (REE) and unit cell dimension (UCDA) analyses of fossil bioapatite from Cretaceous, Tertiary and Pleistocene age vertebrates were used to identify and interpret changes occurring in the paleoenvironment over time and for stratigraphic correlation. REE composition and the UCD in bioapatite are dependent upon the composition of diagenetic waters, concentrations of REE and other species incorporated into bioapatite during permineralization. REE signature and UCD differences in bioapatite identify distinct intervals in lithologic units. These differences reflect changes in the depositional environment, and can be used to interpret paleoenvironments. Because these distinct intervals represent an averaging of periods of certain depositional environments, they can be correlated over significant areas.; Fossil vertebrate samples were obtained from the Upper Cretaceous, Campanian and Maastrictian deposits of the Pierre Shale, from the Sharon Springs, Gregory, Crow Creek, DeGrey and Verendrye members. These samples were collected in an area between Chamberlain and Pierre, South Dakota, at localities along the banks of the Missouri River. REE signatures and UCD variations were found to be consistent within individual lithostratigraphic units, but are significantly different between these units. Variations in REE signatures and UCD in the Pierre Shale represent changes in the depositional environment and have been used successfully to interpret events during diagenesis. Specific REE signatures and UCD have been shown to extend laterally and act as markers for their units. These markers can be used to discriminate among units for purposes of stratigraphic correlation in the Pierre Shale.; Analysis of REE in fossils from the Pleistocene Fossil Lake, Oregon, also revealed that REE signatures are laterally constant over many km, but differ among the thin lithostratigraphic units. Paleoenvironmental interpretations from REE analysis were consistent with those from other geologic data.; Preliminary research was conducted in the fluvial deposits of the Upper Cretaceous Judith River and Lance Formations and the Tertiary deposits of the Fort Union Formation in Wyoming. Unique REE signatures and UCD variations were found for each tested lithostratigraphic unit.; REE and UCD analyses resulting from this research provides a finer scale of resolution for stratigraphic correlation and a proxy for paleoenvironmental interpretation.
机译:白垩纪,第三纪和更新世时期脊椎动物的生物磷灰石化石的稀土元素(REE)和单位细胞尺度(UCDA)分析被用于识别和解释古环境随时间变化以及地层相关性。生物磷灰石中的REE组成和UCD取决于成矿水的成分,REE的浓度以及在矿化过程中掺入生物磷灰石中的其他物种。 REE签名和生物磷灰石中的UCD差异确定了岩性单元中的不同区间。这些差异反映了沉积环境的变化,可以用来解释古环境。因为这些不同的间隔代表了某些沉积环境周期的平均数,所以它们可以在重要的区域上关联起来。化石的脊椎动物样本是从皮埃尔页岩的上白垩纪,坎帕尼亚和马勒安地亚矿床,沙龙泉,格雷戈里,乌鸦溪,德格雷和韦伦德里成员那里获得的。这些样本是在密苏里河两岸的南达科他州张伯伦和皮埃尔之间的地区收集的。发现REE签名和UCD变化在各个岩相地层单位内是一致的,但在这些单位之间却存在显着差异。皮埃尔页岩中稀土元素特征和UCD的变化代表沉积环境的变化,并已成功地用于解释成岩过程中的事件。特定的REE标记和UCD已显示横向延伸并充当其单元的标记。这些标记可用于在Pierre页岩中区分地层单位。对俄勒冈更新世化石湖化石中稀土元素的分析还显示,稀土元素特征在许多公里上横向恒定,但在薄岩相地层单元之间却有所不同。 REE分析的古环境解释与其他地质数据的解释一致。对怀俄明州上白垩纪朱迪思河和兰斯地层的河床沉积物和Fort Union组的第三系沉积物进行了初步研究。对于每个测试的岩石地层学单位,发现了唯一的REE特征和UCD变化。这项研究得出的REE和UCD分析为地层对比提供了更精细的分辨率,并为古环境解释提供了替代。

著录项

  • 作者

    Patrick, Doreena M.;

  • 作者单位

    University of Pennsylvania.;

  • 授予单位 University of Pennsylvania.;
  • 学科 Geology.; Paleontology.; Geochemistry.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 226 p.
  • 总页数 226
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地质学;古生物学;地质学;
  • 关键词

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