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A re-evaluation of Holocene relative sea-level change along the Fujian coast, southeastern China

  • Fengling Yu*
  • , Nannan Li*
  • , Ganghua Tian
  • , Zhaoquan Huang
  • , Haixian Xiong
  • , Tanghua Li
  • , Shengtao Liu
  • , Yuze Liu
  • *Corresponding author for this work

Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review

Abstract

The southeastern China coast is a region of special interest in the study of past and present relative sea-level change, given its distal location from giant ice sheets (far-field regions). During the past decades, a large number of biological, geological, and archaeological sea-level indicators have been retrieved from the Fujian coastal region which allows for recalibration and recalculation of sea-level index points (SLIPs). This study constructs a database of Holocene relative sea-level (RSL) observations for the Fujian coast, southeastern China. The database contains 59 quality-controlled SLIPs which show that RSL for the Fujian coast did not exceed present (0 m) during the Holocene, except potentially during 7.5–5.5 cal. kyr BP and 1.8–0.7 cal. kyr BP. Rates of RSL change were highest during the early Holocene and have decreased over time, due to the diminishing response of the Earth's mantle to glacial isostatic adjustment (GIA) and reduction of meltwater input. A series of sea-level oscillations were recorded in our SLIPs-based reconstructions which might correspond to global climate warming or cooling events. We assessed the spatial variability of RSL histories and compared these with the ICE-6G_C and ANU-ICE GIA model predictions. Substantial misfits between GIA predictions and regional RSL reconstructions were recognized: (1) the deceleration of the early-Holocene sea-level rise ended about one millennia earlier in the ICE-6G_C model than in the SLIPs-based reconstructions; (2) GIA model predictions show a mid-Holocene sea-level highstand of 1–3 m which is absent from our SLIPs-based reconstructions; and (3) all GIA model predicted a gradual RSL fall to 0 m since the middle Holocene, while our reconstruction displays significant RSL oscillations. It is presently unknown whether these misfits are caused by uncertainties in regional tectonic movement estimation or parameters used in the GIA models. Future applications of spatiotemporal statistical techniques are required to better quantify the gradient of the isostatic contribution and to provide improved context for the assessment of the ongoing acceleration of sea-level rise. © 2023 Elsevier B.V.
Original languageEnglish
Article number111577
Number of pages13
JournalPalaeogeography, Palaeoclimatology, Palaeoecology
Volume622
Online published20 Apr 2023
DOIs
Publication statusPublished - 15 Jul 2023
Externally publishedYes

Funding

This work was financially supported by the National Natural Science Foundation of China (Grant No. 42076207 to Fengling Yu); the Fundamental Research Funds for the Central Universities of Xiamen University (Grant No. 20720190096 to Fengling Yu); the China Postdoctoral Science Foundation (Grant No. 2021M691862 to Nannan Li); the Singapore Ministry of Education Academic Research Fund MOE2019-T3-1-004 and MOE-T2EP50120-0007, the National Research Foundation Singapore, and the Singapore Ministry of Education, under the Research Centers of Excellence initiative (to Tanghua Li). Prof. Steven A. Kuehl is acknowledged for kindly reading and commenting on an early version of the manuscript and language corrections. We thank W. Richard Peltier for providing the ICE-4G and ICE-6G_C ice model and Kurt Lambeck and Anthony Purcell for providing the ANU-ICE ice model. The global ANU-ICE combination model used in this study was kindly provided by Holger Steffen. The GIA modelling is conducted in part using the research computing facilities and/or advisory services offered by Information Technology Services, the University of Hong Kong. This work is Earth Observatory of Singapore contribution 523.

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 13 - Climate Action
    SDG 13 Climate Action

Research Keywords

  • Far-field
  • Fujian
  • GIA
  • Holocene
  • Sea-level change
  • Tectonic effects

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