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BRACHIOPOD-BASED OXYGEN-ISOTOPE THERMOMETER: UPDATE AND REVIEW

机译:基于Brachiopod的氧 - 同位素温度计:更新和审查

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In the early 1950’s, McCrea and Epstein and co-workers laid the foundation for the oxygen isotopebased thermometers. Many variations of the thermometer have been since formulated based on synthetic and biogenic carbonates. Overall, the use and application of oxygen isotope thermometers must consider and be specific as to the mineralogy, and whether it is synthetic, abiogenic or biogenic carbonate. Here, we propose an updated and refined oxygen-isotope thermometer based on a large database of articulated brachiopods from high to low latitudes, cold to warm and shallow to deep-water regimes. In general, brachiopodbased oxygen isotopes are offset from abiogenic calcite precipitated in thermodynamic equilibrium by about -1 ‰. They maintain this offset and that allows for the determination of robust ambient water temperatures over the full marine spectrum. Thus, the specific brachiopod-based oxygen-isotope thermometer applies, with few exceptions, to most modern articulated brachiopods, and potentially their ancient counterparts, and it is as follows: T°C =17.3750 - 4.2535 (δc-δw) + 0.1473 (δc-δw)~2 (N=578, r~2 = 0.980) Furthermore, it is imperative that mineralogy and taxa be considered for their appropriateness in the application of oxygen isotope thermometers on synthetic, abiogenic and biogenic marine carbonates. Articulated brachiopods are ideal recorders of oceanographic parameters due to their sessile nature, widespread distribution, high abundance in the Paleozoic and Mesozoic, high resilience to most environmental stresses (e.g., climate change - global warming, ocean acidification), and the resistance of the calcite shell - the archive - to post-depositional diagenetic alteration.
机译:在20世纪50年代初,麦克雷亚和爱普斯坦和同事为氧同位素的温度计奠定了基础。由于合成和生物碳酸酯制备了温度计的许多变化。总体而言,氧同位素温度计的使用和应用必须考虑并对矿物学特异,以及是否是合成,致力学或生物碳酸盐。在此,我们提出了一种基于从高度到低纬度的铰接式Brachiopods的大型数据库的更新和精制的氧 - 同位素温度计,感冒到温暖和深水改造。通常,慢性缺氧的氧同位素从热力学平衡中沉淀的辐射方解石偏移约-1‰。它们保持该偏移量,并允许在完全海洋谱上确定鲁棒环境水温。因此,基于特定的Brachiopod的氧同位素温度计适用于少数例外,对大多数现代铰接式的慢性桥,并且可能是他们的古代对应物,如下:T°C = 17.3750-4.2535(ΔC-ΔW)+ 0.1473( ΔC-ΔW)〜2(n = 578,R〜2 = 0.980)此外,必须考虑矿物学和分类群,以施用氧同位素温度计对合成,致力和生物母线碳酸盐的适当性。铰接式的Brachiopods是海洋参数的理想记录仪,因为它们的术语性质,广泛的分布,古生代和中生代高度高,对大多数环境压力的高弹性(例如,气候变化 - 全球变暖,海洋酸化)以及方解石的阻力shell - 归档 - 沉积后成岩变化。

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