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首页> 外文期刊>GSA Bulletin >Uppermost Campanian-Maestrichtian strontium isotopic, biostratigraphic, and sequence stratigraphic framework of the New Jersey Coastal Plain
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Uppermost Campanian-Maestrichtian strontium isotopic, biostratigraphic, and sequence stratigraphic framework of the New Jersey Coastal Plain

机译:新泽西州沿海平原的最上面的Campanian-Maestrichtian锶同位素,生物地层学和层序地层学框架

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摘要

Firm stratigraphic correlations are needed to evaluate the global significance of unconformity bounded units (sequences). We correlate the well-developed uppermost Campanian and Maestrichtian sequences of the New Jersey Coastal Plain to the geomagnetic polarity time scale (GPTS) by integrating Sr-isotopic stratigraphy and biostratigraphy. To do this, we developed a Maestrichtian (ca. 73–65 Ma) Sr-isotopic reference section at Deep Sea Drilling Project Hole 525A in the southeastern Atlantic Ocean. Maestrichtian strata can then be dated by measuring their 87Sr/86Sr composition, calibrating to the GPTS of S. C. Cande and D. V. Kent (1993, personal commun.), and using the equation Age (Ma) = 37 326.894–52 639.89 (87Sr/86Sr). Sr-stratigraphic resolution for the Maestrichtian is estimated as ±1.2 to ±2 m.y. At least two unconformity-bounded units comprise the uppermost Campanian to Maestrichtian strata in New Jersey. The lower one, the Marshalltown sequence, is assigned to calcareous nannofossil Zones CC20/21 (NC19) and CC22b (NC20). It ranges in age from 74.1 to 69.9 Ma based on Sr-isotope age estimates. The overlying Navesink sequence is assigned to calcareous nannoplankton Zones CC25–26 (NC21–23); it ranges in age from 69.3 to 65 Ma based on Sr-isotope age estimates. The upper part of this sequence, the Tinton Formation, has no calcareous planktonic control; Sr-isotopes provide an age estimate of 66 ± 1.2 Ma (latest Maestrichtian). Sequence boundaries at the base and the top of the Marshalltown sequence match boundaries elsewhere in the Atlantic Coastal Plain (Owens and Gohn, 1985) and the inferred global sea-level record of Haq et al. (1987); they support eustatic changes as the mechanism controlling depositional history of this sequence. However, the latest Maestrichtian record in New Jersey does not agree with Haq et al. (1987); we attribute this to correlation and time-scale differences near the Cretaceous/Paleogene boundary. High sedimentation rates in the latest Maestrichtian of New Jersey (Shrewsbury Member of the Red Bank Formation and the Tinton Formation) suggest tectonic uplift and/or rapid progradation during deposition of the highstand systems tract.
机译:需要牢固的地层相关性来评估不整合面有界单元(序列)的整体 意义。通过整合Sr,我们将 新泽西州沿海平原最发达的Campanian和Maestrichtian序列 与地磁极性 时间尺度(GPTS)相关。同位素地层学和 生物地层学。为此,我们在东南大西洋的Deep Sea Drilling Project Hole 525A项目中开发了Maestrichtian(约 73-65 Ma)Sr同位素参考剖面。然后可以通过测量其 87 Sr / 86 Sr组成, 校准到SC的GPTS来确定Maestrichtian 地层的日期Cande和DV Kent(1993, 个人通讯),并使用方程式Age(Ma)= 37 326.894–52 639.89( 87 Sr / 86 Sr)。 Maestrichtian 的Sr地层分辨率估计为±1.2至±2 my 至少两个不整合面界的单元构成了从上层的 Campanian到Maestrichtian新泽西的地层。较低的 Marshalltown序列被分配给钙质nannofossil 区域CC20 / 21(NC19)和CC22b(NC20)。根据Sr同位素年龄估算,其年龄范围为 74.1至69.9 Ma。上面的 Navesink序列分配给钙质纳米浮游生物区 CC25–26(NC21–23);根据Sr同位素年龄估算,其年龄范围为69.3至 65 Ma。此 序列的上部是Tinton组,没有钙质浮游 控件。 Sr同位素的年龄估计为66± 1.2 Ma(最新的Maestrichtian)。 Marshalltown 序列底部和顶部的序列边界匹配大西洋沿海 平原(Owens and Gohn,1985)的其他边界,以及推断的Haq等人的全球海平面 记录。 (1987);他们支持快变,因为 控制该序列沉积历史的机制。 但是,新泽西州最新的Maestrichtian记录与 sup> 不同,Haq等等(1987);我们将此归因于白垩纪/古生界边界附近的相关性 和时标差异。 新泽西州新 的最新Maestrichtian沉积速率高(Shrewsbury Red Bank组和 Tinton组的成员建议在高位系统道沉积期间进行构造抬升和/或快速增生。

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  • 来源
    《GSA Bulletin 》 |1995年第1期| 19-37| 共19页
  • 作者单位

    New Jersey Geological Survey, CN 427, Trenton, New Jersey 08625, and Department of Geological Sciences, Rutgers University, New Brunswick, New Jersey 08903;

    Department of Geological Sciences, Rutgers University, New Brunswick, New Jersey 08903, and Lamont-Doherty Earth Observatory of Columbia University, Palisades, New York 10964;

    U.S. Geological Survey, 345 Middlefield Road, Menlo Park, California 94025;

    Department of Geological Sciences, Rutgers University, New Brunswick, New Jersey 08903;

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