U‐Pb Geochronology of Paleosol Carbonate Cements by LA‐ICP‐MS: A Proof of Concept and Strategy for Dating the Terrestrial Record

Abstract This study investigates the potential of laser ablation inductively coupled plasma mass spectrometry (LA‐ICP‐MS) U‐Pb dating for carbonate nodules in the Late Triassic Ischigualasto Formation of northwestern Argentina. We establish a fully characterized paragenetic sequence to guide the ana...

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Main Authors: L. E. Aguirre Palafox, A. Möller, N. M. McLean, G. A. Ludvigson, C. E. Colombi, I. P. Montañez
Format: Article
Language:English
Published: Wiley 2024-06-01
Series:Geochemistry, Geophysics, Geosystems
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Online Access:https://doi.org/10.1029/2024GC011488
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author L. E. Aguirre Palafox
A. Möller
N. M. McLean
G. A. Ludvigson
C. E. Colombi
I. P. Montañez
author_facet L. E. Aguirre Palafox
A. Möller
N. M. McLean
G. A. Ludvigson
C. E. Colombi
I. P. Montañez
author_sort L. E. Aguirre Palafox
collection DOAJ
description Abstract This study investigates the potential of laser ablation inductively coupled plasma mass spectrometry (LA‐ICP‐MS) U‐Pb dating for carbonate nodules in the Late Triassic Ischigualasto Formation of northwestern Argentina. We establish a fully characterized paragenetic sequence to guide the analysis of three pedogenic carbonates and compare the U‐Pb ages with published geochronology from volcanic ashes within the sedimentary succession. Our findings demonstrate the importance of interpreting U‐Pb data within a well‐defined paragenetic framework for accurate age interpretation of pedogenic carbonates. We observe variations in U‐Pb isotopic signatures across different generations of carbonate precipitates and identify syn‐pedogenic and early burial calcite cements as most suitable for precise dating. Respectively, these two calcite cements are interpreted as microcodium and crack‐lining calcite cements formed early in the paragenetic sequence during pedogenesis to early burial of the paleosols as they transitioned from the unsaturated vadose to saturated phreatic zone below the water table. The U‐Pb ages obtained from the carbonate nodules agree with the radioisotopic ages of volcanic ashes, supporting the validity of our dating strategy. These results contribute to advancing U‐Pb carbonate geochronology and highlight its increased potential for dating sedimentary records in the terrestrial realm. Future research should focus on replicating similar work on different carbonate nodules within the Ischigualasto Fm and expanding the application of LA‐ICP‐MS U‐Pb dating to other carbonate‐bearing formations, especially in successions with limited absolute ages or where volcanic ashes are sparse or absent.
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series Geochemistry, Geophysics, Geosystems
spelling doaj-art-9a49a76a2e1d4e68959d3c1e839ab08c2025-08-20T03:51:09ZengWileyGeochemistry, Geophysics, Geosystems1525-20272024-06-01256n/an/a10.1029/2024GC011488U‐Pb Geochronology of Paleosol Carbonate Cements by LA‐ICP‐MS: A Proof of Concept and Strategy for Dating the Terrestrial RecordL. E. Aguirre Palafox0A. Möller1N. M. McLean2G. A. Ludvigson3C. E. Colombi4I. P. Montañez5Department of Earth and Planetary Sciences University of California Davis Davis CA USADepartment of Geology University of Kansas Lawrence KS USADepartment of Geology University of Kansas Lawrence KS USAKansas Geological Survey University of Kansas Lawrence KS USACIGEOBIO‐Instituto y Museo de Ciencias Naturales Universidad Nacional de San Juan San Juan ArgentinaDepartment of Earth and Planetary Sciences University of California Davis Davis CA USAAbstract This study investigates the potential of laser ablation inductively coupled plasma mass spectrometry (LA‐ICP‐MS) U‐Pb dating for carbonate nodules in the Late Triassic Ischigualasto Formation of northwestern Argentina. We establish a fully characterized paragenetic sequence to guide the analysis of three pedogenic carbonates and compare the U‐Pb ages with published geochronology from volcanic ashes within the sedimentary succession. Our findings demonstrate the importance of interpreting U‐Pb data within a well‐defined paragenetic framework for accurate age interpretation of pedogenic carbonates. We observe variations in U‐Pb isotopic signatures across different generations of carbonate precipitates and identify syn‐pedogenic and early burial calcite cements as most suitable for precise dating. Respectively, these two calcite cements are interpreted as microcodium and crack‐lining calcite cements formed early in the paragenetic sequence during pedogenesis to early burial of the paleosols as they transitioned from the unsaturated vadose to saturated phreatic zone below the water table. The U‐Pb ages obtained from the carbonate nodules agree with the radioisotopic ages of volcanic ashes, supporting the validity of our dating strategy. These results contribute to advancing U‐Pb carbonate geochronology and highlight its increased potential for dating sedimentary records in the terrestrial realm. Future research should focus on replicating similar work on different carbonate nodules within the Ischigualasto Fm and expanding the application of LA‐ICP‐MS U‐Pb dating to other carbonate‐bearing formations, especially in successions with limited absolute ages or where volcanic ashes are sparse or absent.https://doi.org/10.1029/2024GC011488U‐Pb geochronologypedogenic carbonatepaleosolsLA‐ICP‐MSLate Triassiccarbonate geochronology
spellingShingle L. E. Aguirre Palafox
A. Möller
N. M. McLean
G. A. Ludvigson
C. E. Colombi
I. P. Montañez
U‐Pb Geochronology of Paleosol Carbonate Cements by LA‐ICP‐MS: A Proof of Concept and Strategy for Dating the Terrestrial Record
Geochemistry, Geophysics, Geosystems
U‐Pb geochronology
pedogenic carbonate
paleosols
LA‐ICP‐MS
Late Triassic
carbonate geochronology
title U‐Pb Geochronology of Paleosol Carbonate Cements by LA‐ICP‐MS: A Proof of Concept and Strategy for Dating the Terrestrial Record
title_full U‐Pb Geochronology of Paleosol Carbonate Cements by LA‐ICP‐MS: A Proof of Concept and Strategy for Dating the Terrestrial Record
title_fullStr U‐Pb Geochronology of Paleosol Carbonate Cements by LA‐ICP‐MS: A Proof of Concept and Strategy for Dating the Terrestrial Record
title_full_unstemmed U‐Pb Geochronology of Paleosol Carbonate Cements by LA‐ICP‐MS: A Proof of Concept and Strategy for Dating the Terrestrial Record
title_short U‐Pb Geochronology of Paleosol Carbonate Cements by LA‐ICP‐MS: A Proof of Concept and Strategy for Dating the Terrestrial Record
title_sort u pb geochronology of paleosol carbonate cements by la icp ms a proof of concept and strategy for dating the terrestrial record
topic U‐Pb geochronology
pedogenic carbonate
paleosols
LA‐ICP‐MS
Late Triassic
carbonate geochronology
url https://doi.org/10.1029/2024GC011488
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