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Three distinct Holocene intervals of stalagmite deposition and nondeposition revealed in NW Madagascar, and their paleoclimate implications

  • Ny Riavo Gilbertinie Voarintsoa
  • , Loren Bruce Railsback
  • , George Albert Brook
  • , Lixin Wang
  • , Gayatri Kathayat
  • , Hai Cheng
  • , Xianglei Li
  • , Richard Lawrence Edwards
  • , Amos Fety Michel Rakotondrazafy
  • , Marie Olga Madison Razanatseheno
  • University of Georgia
  • Hebrew University of Jerusalem
  • Xi'an Jiaotong University
  • University of Minnesota Twin Cities
  • Université d'Antananarivo

Research output: Contribution to journalArticlepeer-review

35 Scopus citations

Abstract

Petrographic features, mineralogy, and stable isotopes from two stalagmites, ANJB-2 and MAJ-5, respectively from Anjohibe and Anjokipoty caves, allow distinction of three intervals of the Holocene in NW Madagascar. The Malagasy early Holocene (between ca. 9.8 and 7.8gka) and late Holocene (after ca. 1.6gka) intervals (MEHI and MLHI, respectively) record evidence of stalagmite deposition. The Malagasy middle Holocene interval (MMHI, between ca. 7.8 and 1.6gka) is marked by a depositional hiatus of ca. 6500 years. Deposition of these stalagmites indicates that the two caves were sufficiently supplied with water to allow stalagmite formation. This suggests that the MEHI and MLHI intervals may have been comparatively wet in NW Madagascar. In contrast, the long-term depositional hiatus during the MMHI implies it was relatively drier than the MEHI and the MLHI.

The alternating wet-dry-wet conditions during the Holocene may have been linked to the long-term migrations of the Intertropical Convergence Zone (ITCZ). When the ITCZ's mean position is farther south, NW Madagascar experiences wetter conditions, such as during the MEHI and MLHI, and when it moves north, NW Madagascar climate becomes drier, such as during the MMHI. A similar wet-dry-wet succession during the Holocene has been reported in neighboring locations, such as southeastern Africa. Beyond these three subdivisions, the records also suggest wet conditions around the cold 8.2gka event, suggesting a causal relationship. However, additional Southern Hemisphere high-resolution data will be needed to confirm this.

Original languageEnglish
Pages (from-to)1771-1790
Number of pages20
JournalClimate of the Past
Volume13
Issue number12
DOIs
StatePublished - 4 Dec 2017

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