东北太平洋竹珊瑚记录Ba/Ca变化的可重复性

G. S. Marks, M. LaVigne, T. Hill, W. Sauthoff, T. Guilderson, E. Roark, R. Dunbar, T. Horner
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引用次数: 7

摘要

保存在竹珊瑚钙化骨骼中的微量元素比例已被证明是过去海洋条件的档案。溶解钡(BaSW)是一种具有生物活性的类营养元素,其浓度与营养物质的循环和输出等生物地球化学过程有关。最近的工作校准了竹珊瑚Ba/Ca,这是一种新的BaSW替代物,使用的珊瑚跨越了加利福尼亚洋流系统下的氧气最低区。然而,此前尚不清楚Ba/Cacaral记录是否具有内部可复制性。在这里,我们研究了使用激光消融电感耦合等离子体质谱法进行Ba/Ca分析的准确性,并测试了在阿拉斯加湾(643–720米)和加利福尼亚边缘(870–2054米)采集的九种竹珊瑚的方解石中重复径向样带中Ba/Ca的内部再现性。使用可见生长带对来自重复Ba/Ca样带的数据进行比对,以解释非中心生长;对于8种珊瑚(n=3半径/珊瑚),平滑数据的可重复性在~4%以内。这种口腔内再现性进一步验证了使用竹珊瑚Ba/Ca重建BaSW。Ba/Ca记录中可能受到非碳酸盐结合的Ba相影响的部分出现在Mg/Ca或Pb/Ca升高的区域,并与显微照片上的异常区域重合。在删除这些记录区域后,在约800米至1500米的珊瑚中,Ba/Cacaral变异性明显增加。这些发现支持额外的代理验证,以了解BaSW在年际时间尺度上的变化,这可能会对过去几个世纪的深海生物地球化学产生新的见解。
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Reproducibility of Ba/Ca variations recorded by northeast Pacific bamboo corals
Trace elemental ratios preserved in the calcitic skeleton of bamboo corals have been shown to serve as archives of past ocean conditions. The concentration of dissolved barium (BaSW), a bioactive nutrientlike element, is linked to biogeochemical processes such as the cycling and export of nutrients. Recent work has calibrated bamboo coral Ba/Ca, a new BaSW proxy, using corals spanning the oxygen minimum zone beneath the California Current System. However, it was previously unclear whether Ba/Cacoral records were internally reproducible. Here we investigate the accuracy of using laser ablation inductively coupled plasma mass spectrometry for Ba/Cacoral analyses and test the internal reproducibility of Ba/Ca among replicate radial transects in the calcite of nine bamboo corals collected from the Gulf of Alaska (643–720 m) and the California margin (870–2054 m). Data from replicate Ba/Ca transects were aligned using visible growth bands to account for nonconcentric growth; smoothed data were reproducible within ~4% for eight corals (n = 3 radii/coral). This intracoral reproducibility further validates using bamboo coral Ba/Ca for BaSW reconstructions. Sections of the Ba/Ca records that were potentially influenced by noncarbonate bound Ba phases occurred in regions where elevated Mg/Ca or Pb/Ca and coincided with anomalous regions on photomicrographs. After removing these regions of the records, increased Ba/Cacoral variability was evident in corals between ~800 and 1500 m. These findings support additional proxy validation to understand BaSW variability on interannual timescales, which could lead to new insights into deep sea biogeochemistry over the past several centuries.
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来源期刊
Paleoceanography
Paleoceanography 地学-地球科学综合
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