U-Th dating of lake sediments: Lessons from the 700 ka sediment record of Lake Junín, Peru

© 2020 Elsevier Ltd Deep sediment cores from long-lived lake basins are fundamental records of paleoenvironmental history, but the power of these reconstructions has been often limited by poor age control. Uranium-thorium (U-Th) dating has the potential to fill a gap in current geochronological tool...

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Main Authors: Chen, Christine Y, McGee, David, Woods, Arielle, Pérez, Liseth, Hatfield, Robert G, Edwards, R Lawrence, Cheng, Hai, Valero-Garcés, Blas L, Lehmann, Sophie B, Stoner, Joseph S, Schwalb, Antje, Tal, Irit, Seltzer, Geoffrey O, Tapia, Pedro Miguel, Abbott, Mark B, Rodbell, Donald T
Format: Article
Language:English
Published: Elsevier BV 2021
Online Access:https://hdl.handle.net/1721.1/133802
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author Chen, Christine Y
McGee, David
Woods, Arielle
Pérez, Liseth
Hatfield, Robert G
Edwards, R Lawrence
Cheng, Hai
Valero-Garcés, Blas L
Lehmann, Sophie B
Stoner, Joseph S
Schwalb, Antje
Tal, Irit
Seltzer, Geoffrey O
Tapia, Pedro Miguel
Abbott, Mark B
Rodbell, Donald T
author_facet Chen, Christine Y
McGee, David
Woods, Arielle
Pérez, Liseth
Hatfield, Robert G
Edwards, R Lawrence
Cheng, Hai
Valero-Garcés, Blas L
Lehmann, Sophie B
Stoner, Joseph S
Schwalb, Antje
Tal, Irit
Seltzer, Geoffrey O
Tapia, Pedro Miguel
Abbott, Mark B
Rodbell, Donald T
author_sort Chen, Christine Y
collection MIT
description © 2020 Elsevier Ltd Deep sediment cores from long-lived lake basins are fundamental records of paleoenvironmental history, but the power of these reconstructions has been often limited by poor age control. Uranium-thorium (U-Th) dating has the potential to fill a gap in current geochronological tools available for such sediment archives. We present our systematic approach to U-Th date carbonate-rich sediments from the ∼100m drill core from Lake Junín, Peru. The results form the foundation of an age-depth model spanning ∼700 kyrs. High uranium concentrations (0.3–4 ppm) of these sediments allow us to date smaller amounts of material, giving us the opportunity to improve sample selection by avoiding detrital contamination, the greatest factor limiting the success of previous U-Th dating efforts in other lake basins. Despite this advantage, the dates from 174 analyses on 55 bulk carbonate samples reveal significant scatter that cannot be resolved with traditional isochrons, suggesting that at least some of the sediments have not remained closed systems. To understand the source of noise in the geochronological data, we first apply threshold criteria that screen samples by their U/Th ratio, reproducibility, and δ234Uinitial value. We then compare these results with facies types, trace element concentrations, carbonate and total organic carbon content, color reflectance, mineralogy, and ostracode shell color to investigate the causes of open system behavior. Alongside simulations of the isotopic evolution of our samples, we find that the greatest impediment to U-Th dating of these sediments is not detrital contamination, but rather post-depositional remobilization of uranium. Examining U-Th data in these contexts, we identify samples that have likely experienced the least amount of alteration, and use dates from those samples as constraints for the age-depth model. Our work has several lessons for future attempts to U-Th date lake sediments, namely that geologic context is equally as important as the accuracy and precision of analytical measurements. In addition, we caution that significant geologic scatter may remain undetected if not for labor intensive tests of reproducibility achieved through replication. As a result of this work, the deep sediment core from Lake Junín is the only continuous record in the tropical Andes spanning multiple glacial cycles that is constrained entirely by independent radiometric dates.
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spelling mit-1721.1/1338022021-10-28T04:30:38Z U-Th dating of lake sediments: Lessons from the 700 ka sediment record of Lake Junín, Peru Chen, Christine Y McGee, David Woods, Arielle Pérez, Liseth Hatfield, Robert G Edwards, R Lawrence Cheng, Hai Valero-Garcés, Blas L Lehmann, Sophie B Stoner, Joseph S Schwalb, Antje Tal, Irit Seltzer, Geoffrey O Tapia, Pedro Miguel Abbott, Mark B Rodbell, Donald T © 2020 Elsevier Ltd Deep sediment cores from long-lived lake basins are fundamental records of paleoenvironmental history, but the power of these reconstructions has been often limited by poor age control. Uranium-thorium (U-Th) dating has the potential to fill a gap in current geochronological tools available for such sediment archives. We present our systematic approach to U-Th date carbonate-rich sediments from the ∼100m drill core from Lake Junín, Peru. The results form the foundation of an age-depth model spanning ∼700 kyrs. High uranium concentrations (0.3–4 ppm) of these sediments allow us to date smaller amounts of material, giving us the opportunity to improve sample selection by avoiding detrital contamination, the greatest factor limiting the success of previous U-Th dating efforts in other lake basins. Despite this advantage, the dates from 174 analyses on 55 bulk carbonate samples reveal significant scatter that cannot be resolved with traditional isochrons, suggesting that at least some of the sediments have not remained closed systems. To understand the source of noise in the geochronological data, we first apply threshold criteria that screen samples by their U/Th ratio, reproducibility, and δ234Uinitial value. We then compare these results with facies types, trace element concentrations, carbonate and total organic carbon content, color reflectance, mineralogy, and ostracode shell color to investigate the causes of open system behavior. Alongside simulations of the isotopic evolution of our samples, we find that the greatest impediment to U-Th dating of these sediments is not detrital contamination, but rather post-depositional remobilization of uranium. Examining U-Th data in these contexts, we identify samples that have likely experienced the least amount of alteration, and use dates from those samples as constraints for the age-depth model. Our work has several lessons for future attempts to U-Th date lake sediments, namely that geologic context is equally as important as the accuracy and precision of analytical measurements. In addition, we caution that significant geologic scatter may remain undetected if not for labor intensive tests of reproducibility achieved through replication. As a result of this work, the deep sediment core from Lake Junín is the only continuous record in the tropical Andes spanning multiple glacial cycles that is constrained entirely by independent radiometric dates. 2021-10-27T19:56:44Z 2021-10-27T19:56:44Z 2020 2021-09-17T14:18:02Z Article http://purl.org/eprint/type/JournalArticle https://hdl.handle.net/1721.1/133802 en 10.1016/J.QUASCIREV.2020.106422 Quaternary Science Reviews Creative Commons Attribution-NonCommercial-NoDerivs License http://creativecommons.org/licenses/by-nc-nd/4.0/ application/pdf Elsevier BV EarthArXiv
spellingShingle Chen, Christine Y
McGee, David
Woods, Arielle
Pérez, Liseth
Hatfield, Robert G
Edwards, R Lawrence
Cheng, Hai
Valero-Garcés, Blas L
Lehmann, Sophie B
Stoner, Joseph S
Schwalb, Antje
Tal, Irit
Seltzer, Geoffrey O
Tapia, Pedro Miguel
Abbott, Mark B
Rodbell, Donald T
U-Th dating of lake sediments: Lessons from the 700 ka sediment record of Lake Junín, Peru
title U-Th dating of lake sediments: Lessons from the 700 ka sediment record of Lake Junín, Peru
title_full U-Th dating of lake sediments: Lessons from the 700 ka sediment record of Lake Junín, Peru
title_fullStr U-Th dating of lake sediments: Lessons from the 700 ka sediment record of Lake Junín, Peru
title_full_unstemmed U-Th dating of lake sediments: Lessons from the 700 ka sediment record of Lake Junín, Peru
title_short U-Th dating of lake sediments: Lessons from the 700 ka sediment record of Lake Junín, Peru
title_sort u th dating of lake sediments lessons from the 700 ka sediment record of lake junin peru
url https://hdl.handle.net/1721.1/133802
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