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A U-Th Dating Approach to Understanding Past Coral Reef Dynamics and Geomorphological Constraints on Future Reef Growth Potential; Mazie Bay, Southern Great Barrier Reef

机译:一种了解过去珊瑚礁动力学和地貌约束对未来珊瑚礁增长潜力的第五次约会方法; Mazie Bay,南方大堡礁

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摘要

Reconstructing coral reef histories provides a window of understanding into reef response to changing environmental and climatic conditions over various temporal scales. Here we present the results of 117 U-Th dates from emergent reef flat and slope cores and surface death assemblages, combined with previously published fossil microatoll data, to capture the entire sequence of reef growth at Mazie Bay, inshore Southern Great Barrier Reef (GBR). Coral U-Th dates indicate that Mazie Bay reef initiated ~6,900 years before present (yr. BP) quickly filling accommodation space. While rates of vertical reef accretion (5.3 ± 1.0 mm year~(-1)) were comparable to the GBR average during the mid-Holocene (~5.0 mm year~(-1)), reef flat progradation occurred at a rate 1.5- to 6-fold previous GBR rates until 5,100 yr. BP (~70.4 cm year~(-1)). Average progradation slowed to ~7.1 cm year~(-1) in the subsequent ~4,000 years and reef slope cores indicate this reef had largely "turned-off" by 400 yr. BP, with modern coral communities existing as a veneer over the largely senescent framework. Death assemblage dates highlight coral disturbance and recovery regimes in response to increased cyclone activity 1960-1985 AD and recent extreme sea surface temperature and flood events post 2000 AD. U-Th dating of mid-Holocene to modern coral deposits from Mazie Bay reef provides a unique insight into past reef development, response to recent disturbance regimes, and potential for future reef growth. In the case of Mazie Bay, our data suggest limited accommodation space and increased occurrence of sea surface temperature extremes will restrict future reef growth at this site.
机译:重建珊瑚礁历史为了解珊瑚礁在不同时间尺度上对不断变化的环境和气候条件的反应提供了一个窗口。在这里,我们展示了117个U-Th年代的结果,这些年代来自出露的礁滩和斜坡岩芯以及表面死亡组合,结合之前发表的化石微体数据,以捕捉大堡礁南部近岸海域马子湾(Mazie Bay,GBR)的整个珊瑚礁生长序列。珊瑚U-Th日期表明,马兹湾珊瑚礁在距今约6900年前(年BP)开始形成,迅速填满了居住空间。虽然垂直珊瑚礁增生率(5.3±1.0 mm year-1)与全新世中期(~5.0 mm year-1))的GBR平均值相当,但在5100年前(约70.4 cm year-1),珊瑚礁滩的前积速率是之前GBR速率的1.5到6倍。在随后的约4000年中,平均进积放缓至约7.1厘米-年-1,珊瑚礁斜坡岩芯表明,该珊瑚礁在400年前基本上“关闭”,现代珊瑚群落作为一个单板存在于基本衰老的框架之上。死亡组合日期强调了珊瑚扰动和恢复机制,以应对1960-1985年的气旋活动增加,以及公元2000年后最近的极端海表温度和洪水事件。马兹湾珊瑚礁中全新世至现代珊瑚沉积物的U-Th测年提供了对过去珊瑚礁发育、对最近扰动机制的响应,以及未来珊瑚礁生长的潜力。就马兹湾而言,我们的数据表明,有限的可容纳空间和不断增加的海面极端温度将限制该地点未来的珊瑚礁生长。

著录项

  • 来源
    《Paleoceanography》 |2020年第2期|共13页
  • 作者单位

    Radiogenic Isotope Facility School of Earth and Environmental Sciences The University of Queensland Brisbane Australia;

    Centre for Marine Science Australian Research Council Centre of Excellence for Coral Reef Studies School of Biological Sciences The University of Queensland Brisbane Australia;

    Radiogenic Isotope Facility School of Earth and Environmental Sciences The University of Queensland Brisbane Australia;

    Centre for Marine Science Australian Research Council Centre of Excellence for Coral Reef Studies School of Biological Sciences The University of Queensland Brisbane Australia;

    Centre for Marine Science Australian Research Council Centre of Excellence for Coral Reef Studies School of Biological Sciences The University of Queensland Brisbane Australia;

    Radiogenic Isotope Facility School of Earth and Environmental Sciences The University of Queensland Brisbane Australia;

    Centre for Marine Science Australian Research Council Centre of Excellence for Coral Reef Studies School of Biological Sciences The University of Queensland Brisbane Australia;

    Centre for Marine Science Australian Research Council Centre of Excellence for Coral Reef Studies School of Biological Sciences The University of Queensland Brisbane Australia;

    Radiogenic Isotope Facility School of Earth and Environmental Sciences The University of Queensland Brisbane Australia;

    Radiogenic Isotope Facility School of Earth and Environmental Sciences The University of Queensland Brisbane Australia;

    Centre for Marine Science Australian Research Council Centre of Excellence for Coral Reef Studies School of Biological Sciences The University of Queensland Brisbane Australia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 海洋学;
  • 关键词

    histories provides; understanding; changing environmental;

    机译:历史提供;理解;改变环境;

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