盐度对红海浮游有孔虫Na掺入的控制

E. Mezger, L. Nooijer, W. Boer, G. Brummer, G. Reichart
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引用次数: 57

摘要

虽然有几种成熟的替代指标可用于重建过去的温度,但盐度的评估仍然具有挑战性。基于有机温度代用物和有孔虫稳定氧同位素组合的重建导致相对较大的不确定性,可以通过应用直接盐度代用物来减小不确定性。培养的底栖和浮游有孔虫表明,Na在有孔虫壳方解石中的掺入可能是盐度的独立代表。在这里,我们提出了这种潜在代理的第一次现场校准。采用激光烧蚀四极电感耦合等离子体质谱法对红海表层浮游有孔虫活体标本进行了Na/Ca含量分析。利用红海作为天然实验室,校准涵盖了相同水团内陡峭梯度上的广泛盐度范围。对于gloigerinoides rubber和gloigerinoides sacculifer方解石,Na/Ca随盐度增加,尽管有相对较大的种内和种间变异性。在~36.8 ~ ~39.6的盐度范围内,这两个物种的野外标定值基本一致,而在最北端样带,白花鱼的值偏离了这一趋势。假设红海最北端的有孔虫(部分)被迁出,因此应排除在Na/ ca盐度校准之外。因此,钠在有孔虫方解石中的掺入为盐度提供了一个潜在的代表,尽管仍需要对物种进行特定的校准,并且需要对温度的影响进行更多的研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Salinity controls on Na incorporation in Red Sea planktonic foraminifera
Whereas several well-established proxies are available for reconstructing past temperatures, salinity remains challenging to assess. Reconstructions based on the combination of (in)organic temperature proxies and foraminiferal stable oxygen isotopes result in relatively large uncertainties, which may be reduced by application of a direct salinity proxy. Cultured benthic and planktonic foraminifera showed that Na incorporation in foraminiferal shell calcite provides a potential independent proxy for salinity. Here we present the first field calibration of such a potential proxy. Living planktonic foraminiferal specimens from the Red Sea surface waters were collected and analyzed for their Na/Ca content using laser ablation quadrupole inductively coupled plasma mass spectrometry. Using the Red Sea as a natural laboratory, the calibration covers a broad range of salinities over a steep gradient within the same water mass. For both Globigerinoides ruber and Globigerinoides sacculifer calcite Na/Ca increases with salinity, albeit with a relatively large intraspecimen and interspecimen variability. The field-based calibration is similar for both species from a salinity of ~36.8 up to ~39.6, while values for G. sacculifer deviate from this trend in the northernmost transect. It is hypothesized that the foraminifera in the northernmost part of the Red Sea are (partly) expatriated and hence should be excluded from the Na/Ca-salinity calibration. Incorporation of Na in foraminiferal calcite therefore provides a potential proxy for salinity, although species-specific calibrations are still required and more research on the effect of temperature is needed.
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来源期刊
Paleoceanography
Paleoceanography 地学-地球科学综合
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