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Journal Article

Tree-ring oxygen isotopes record a decrease in Amazon dry season rainfall over the past 40 years

Bruno B. L. Cintra; Manuel Gloor; Arnoud Boom; Jochen Schöngart; Jessica C. A. Baker; Francisco W. Cruz; Santiago Clerici; Roel J. W. Brienen
Climate Dynamics · Vol. 59, Issue 5-6 · pp. 1401-1414 · 2022

Abstract

Extant climate observations suggest the dry season over large parts of the Amazon Basin has become longer and drier over recent decades. However, such possible intensification of the Amazon dry season and its underlying causes are still a matter of debate. Here we used oxygen isotope ratios in tree rings (δ 18 O TR ) from six floodplain trees from the western Amazon to assess changes in past climate. Our analysis shows that δ 18 O TR of these trees is negatively related to inter-annual variability of precipitation during the dry season over large parts of the Amazon Basin, consistent with a Rayleigh rainout model. Furthermore δ 18 O TR increases by approximately 2‰ over the last four decades (~ 1970–2014) providing evidence of an Amazon drying trend independent from satellite and in situ rainfall observations. Using a Rayleigh rainout framework, we estimate basin-wide dry season rainfall to have decreased by up to 30%. The δ 18 O TR record further suggests such drying trend may not be unprecedented over the past 80 years. Analysis of δ 18 O TR with sea surface temperatures indicates a strong role of a warming Tropical North Atlantic Ocean in driving this long-term increase in δ 18 O TR and decrease in dry season rainfall.

Bibliographic Information

JournalClimate Dynamics
PublisherSpringer
Publication Date2022-09-01
Publication Year2022
Volume59
Issue5-6
Pages1401-1414
Document TypeJournal Article
Print ISSN0930-7575
eISSN1432-0894
DOI10.1007/s00382-021-06046-7

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NARA Access Coverage1986-01-01~Current
Journal Homepagehttps://www.springer.com/journal/382
Publisher PageOpen Publisher Page
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