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Diagenetic Effect on Planktic Foraminiferal Mg/Ca Records in the Arctic Ocean

  • B. J. Jong
  • , L. Lo
  • , Y. Iizuka
  • , C. C. Shen
  • , C. K. Chuang
  • , A. Bahr
  • , H. S. Mii
  • , H. C. Li
  • , L. Löwemark*
  • *此作品的通信作者

研究成果: 雜誌貢獻期刊論文同行評審

摘要

Mg/Ca ratios in planktic foraminifera have long been used as a thermometer to reconstruct the past climate. However, this study revealed that in certain intervals, the Mg/Ca ratios of the planktic foraminifer Neogloboquadrina pachyderma, a widespread species in the Arctic Ocean, displayed anomalously high values which could severely bias paleo-temperature reconstructions. Therefore, in this study, we analyzed the spatial and temporal distribution of Mg/Ca ratios of N. pachyderma in sediment cores of the Arctic Ocean to address the causes of these anomalies. Authigenic carbonate overgrowth was revealed under Scanning Electron Microscope, while Mg intensities from Energy Dispersive Spectroscopy and Electron Probe Micro Analyzer indicated high-Mg bands on the inner and outer surfaces of N. pachyderma causing the non-ontogenetic anomalously high Mg/Ca ratios. The distribution of these high-Mg bands on N. pachyderma did not match descriptions of biological alteration or methanogenic calcite overgrowth. In contrast, the authigenic overgrowth on foraminiferal tests was most likely due to the dissolution and reprecipitation of detrital high-Mg calcite within the marine sediment. Our work thus adds support for the observation that dissolution and reprecipitation of calcite from Mg/Ca-rich ice rifted debris can be an important process altering the calcium carbonate chemistry of foraminiferal shells in the Arctic Ocean. This authigenic overgrowth is difficult to remove without damaging the original foraminiferal shell during the cleaning processes. Consequently, specimens exhibiting authigenic overgrowth should be excluded from Mg/Ca temperature reconstructions; alternatively, in situ micro-domain analytical methods might be used to specifically target the unaltered parts of the foraminiferal shell.

原文英語
文章編號e2025GC012302
期刊Geochemistry, Geophysics, Geosystems
27
發行號3
DOIs
出版狀態已發佈 - 2026 3月

UN SDG

此研究成果有助於以下永續發展目標

  1. SDG 14 - 水下生命
    SDG 14 水下生命

ASJC Scopus subject areas

  • 地球物理
  • 地球化學與岩石學

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