J. Sadler, G. Webb, Nicole D. Leonard, L. Nothdurft, T. Clark
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U-Th-dated samples of massive Porites suggest cooler water temperatures with reduced seasonal amplitude at ~5.2 ka (2.76–1.31i?½C cooler than present) and ~7 ka (1.26i?½C cooler than present) at Heron Reef. These results contrast the previous suggestion of a mid-Holocene Thermal Maximum in the central GBR around 5.35 ka and 4.48 ka, yet may be explained by differences in temperature of the shallow ponded reef flat (central GBR) and the deeper reef slope waters (this study) and potential large reservoir correction errors associated with early radiocarbon dates. Combining coral-based water temperature anomaly reconstructions from the tropical and subtropical western Pacific indicates a coherent temperature response across the meridional gradient from Indonesia and Papua New Guinea down to the southern GBR. 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引用次数: 18
摘要
南半球的热带和亚热带海洋在当前的气候模式中表现不佳,因此需要增加这一关键地区的古气候记录,以了解地球的气候系统并帮助限制模式模拟。本文对大堡礁(GBR)南部苍鹭礁(Heron Reef)礁前斜坡现场采集的大量孔隙石Sr/Ca记录进行了现场标定。由此产生的校准,以及先前发表的同一地点的Acropora校准,被应用于亚化石珊瑚材料,以研究Heron Reef全新世的水温。u - th定年的大质量孔隙样品表明水温较低,季节振幅在~5.2 ka (2.76-1.31i ?温度比现在低½℃)和~7 ka (1.26i?比现在低半摄氏度)在苍鹭礁。这些结果与之前关于GBR中部在5.35 ka和4.48 ka前后出现中全新世热极大值的观点形成对比,但可以用浅水礁滩(GBR中部)和较深礁坡水域(本研究)的温度差异以及与早期放射性碳测年相关的潜在大储层校正误差来解释。结合热带和副热带西太平洋的珊瑚水温异常重建,表明从印度尼西亚和巴布亚新几内亚到GBR南部的经向梯度有一个一致的温度响应。这种重建温度异常的相似性表明,在~6.8 ~ 6.0 ka之间,GBR上出现了中全新世热极大值的可能性较大。
Reef core insights into mid-Holocene water temperatures of the southern Great Barrier Reef
The tropical and subtropical oceans of the Southern Hemisphere are poorly represented in present-day climate models, necessitating an increased number of paleoclimate records from this key region to both understand the Earth's climate system and help constrain model simulations. Here we present a site-specific calibration of live collected massive Porites Sr/Ca records against concomitant in situ instrumental water temperature data from the fore-reef slope of Heron Reef, southern Great Barrier Reef (GBR). The resultant calibration, and a previously published Acropora calibration from the same site, was applied to subfossil coral material to investigate Holocene water temperatures at Heron Reef. U-Th-dated samples of massive Porites suggest cooler water temperatures with reduced seasonal amplitude at ~5.2 ka (2.76–1.31i?½C cooler than present) and ~7 ka (1.26i?½C cooler than present) at Heron Reef. These results contrast the previous suggestion of a mid-Holocene Thermal Maximum in the central GBR around 5.35 ka and 4.48 ka, yet may be explained by differences in temperature of the shallow ponded reef flat (central GBR) and the deeper reef slope waters (this study) and potential large reservoir correction errors associated with early radiocarbon dates. Combining coral-based water temperature anomaly reconstructions from the tropical and subtropical western Pacific indicates a coherent temperature response across the meridional gradient from Indonesia and Papua New Guinea down to the southern GBR. This similarity in reconstructed temperature anomalies suggests a high probability of an earlier expression of a mid-Holocene Thermal Maximum on the GBR between ~6.8 and 6.0 ka.