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Tree-ring stable carbon isotope-based April–June relative humidity reconstruction since ad 1648 in Mt. Tianmu, China

  • Yu Liu
  • , Weiyuan Ta
  • , Qiang Li
  • , Huiming Song
  • , Changfeng Sun
  • , Qiufang Cai
  • , Han Liu
  • , Lu Wang
  • , Sile Hu
  • , Junyan Sun
  • , Wenbiao Zhang
  • , Wenzhu Li
  • CAS - Institute of Earth Environment
  • Beijing Normal University
  • Xi'an Jiaotong University
  • University of Chinese Academy of Sciences
  • Shaanxi Appraisal Center for Environmental Engineering
  • Zhejiang Agriculture and Forestry University

Research output: Contribution to journalArticlepeer-review

36 Scopus citations

Abstract

Based on accurate dating, we have determined the stable carbon isotope ratios (δ13C) of five Cryptomeria fortunei specimens from Mt. Tianmu, a subtropical area in southern China. The five δ13C time series records are combined into a single representative δ13C time series using a “numerical mix method.” These are normalized to remove temporal variations of δ13 C in atmospheric CO2 to obtain a carbon isotopic discrimination (Δ13C) time series, in which we observe a distinct correlation between Δ13C and local April to June mean relative humidity (RHAMJ) (n = 64, r = 0.858, p OpenSPiltSPi 0.0001). We use this relationship to reconstruct RHAMJ variations from ad 1648 to 2014 at Mt. Tianmu. The reconstructed sequence show that over the past 367 years, Mt. Tianmu area was relatively wet, but in the latter part of the twentieth century, under the influence of increasing global warming, it has experienced a sharp reduction in relative humidity. Spatial correlation analysis reveals a significant negative correlation between RHAMJ at Mt. Tianmu and Sea Surface Temperature (SSTs) in the western equatorial Pacific and Indian Ocean. In other words, there is a positive correlation between tree-ring δ13C in Mt. Tianmu and SSTs. Both observed and reconstructed RHAMJ show significant positive correlations with East Asian and South Asian monsoons from 1951 to 2014, which indicate that RHAMJ from Mt. Tianmu reflects the variability of the Asian summer monsoon intensity to a great extent. The summer monsoon has weakened since 1960. However, an increase in relative humidity since 2003 implies a recent enhancement in the summer monsoon.

Original languageEnglish
Pages (from-to)1733-1745
Number of pages13
JournalClimate Dynamics
Volume50
Issue number5-6
DOIs
StatePublished - 1 Mar 2018

Keywords

  • Asian summer monsoon
  • Cryptomeria fortunei
  • Mt. Tianmu, China
  • Relative humidity
  • Tree-ring δC

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