西太平洋暖池现代表层沉积物中浮游有孔虫的稳定氧同位素和Mg/Ca:对温跃层重建的意义

M. Hollstein, M. Mohtadi, Y. Rosenthal, P. M. Sanchez, D. Oppo, G. Méndez, S. Steinke, D. Hebbeln
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引用次数: 46

摘要

浮游有孔虫试验的Mg/Ca和稳定氧同位素组成(δ18O)通常被用作重建过去海洋条件的替代指标,包括垂直水柱结构的变化。由于浮游有孔虫的钙化深度和温度等参数取决于当地的环境条件,因此准确的代理校准需要进行彻底的区域研究。本文介绍了来自西太平洋暖池的放射性碳定年的现代地表沉积物样本和水柱数据(温度、盐度、海水δ18O)。海水δ18O (δ18OSW)和盐度用于计算西太平洋表层和温跃层海水的个体回归(δ18OSW = 0.37*S-12.4和δ18OSW = 0.33*S-11.0)。结合壳δ18O和Mg/Ca与水柱数据估算了几种浮游有孔虫的钙化深度,并建立了区域Mg/Ca温度校准。橡胶球、长形球和糖化球反映了混合层条件。斜叶扁豆(Pulleniatina obliquiloculata)、新红毛扁豆(negloboquadrina dutrei)和红毛扁豆(Globorotalia tumida)分别保持上温跃层和下温跃层条件。我们的多物种Mg/Ca温度校准(Mg/Ca = 0.26exp0.097*T)符合已发表的回归。假设所有物种的温度敏感性相同,我们提出了可用于重建上层水柱温度的物种特异性校准。G. ruber、G. elongatus和G. tumida的Mg/ ca温度依赖性与已发表的方程相似。然而,我们的数据表明,G. sacullifer, P. obliquiloculata和N. duterte的钙化温度在热带太平洋西部异常温暖,因此,被先前发表的校准低估了。区域Mg/Ca-温关系最适合用Mg/Ca = 0.24exp0.097*T来描述,用Mg/Ca = 0.21exp0.097*T来描述斜叶扁豆和白叶扁豆。
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Stable oxygen isotopes and Mg/Ca in planktic foraminifera from modern surface sediments of the Western Pacific Warm Pool: Implications for thermocline reconstructions
Mg/Ca and stable oxygen isotope compositions (δ18O) of planktic foraminifera tests are commonly used as proxies to reconstruct past ocean conditions including variations in the vertical water column structure. Accurate proxy calibrations require thorough regional studies, since parameters such as calcification depth and temperature of planktic foraminifera depend on local environmental conditions. Here we present radiocarbon-dated, modern surface sediment samples and water column data (temperature, salinity, seawater δ18O) from the Western Pacific Warm Pool. Seawater δ18O (δ18OSW) and salinity are used to calculate individual regressions for western Pacific surface and thermocline waters (δ18OSW = 0.37*S-12.4 and δ18OSW = 0.33*S-11.0). We combine shell δ18O and Mg/Ca with water column data to estimate calcification depths of several planktic foraminifera and establish regional Mg/Ca-temperature calibrations. Globigerinoides ruber, Globigerinoides elongatus and Globigerinoides sacculifer reflect mixed layer conditions. Pulleniatina obliquiloculata and Neogloboquadrina dutertrei and Globorotalia tumida preserve upper and lower thermocline conditions, respectively. Our multispecies Mg/Ca-temperature calibration (Mg/Ca = 0.26exp0.097*T) matches published regressions. Assuming the same temperature sensitivity in all species, we propose species-specific calibrations that can be used to reconstruct upper water column temperatures. The Mg/Ca-temperature dependencies of G. ruber, G. elongatus and G. tumida are similar to published equations. However, our data imply that calcification temperatures of G. sacculifer, P. obliquiloculata and N. dutertrei are exceptionally warm in the western tropical Pacific, and thus, underestimated by previously published calibrations. Regional Mg/Ca-temperature relations are best described by Mg/Ca = 0.24exp0.097*T for G. sacculifer and by Mg/Ca = 0.21exp0.097*T for P. obliquiloculata and N. dutertrei.
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Paleoceanography
Paleoceanography 地学-地球科学综合
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