The helium and carbon isotope characteristics of the Andean Convergent Margin

dc.contributor.author Barry, Peter H.
dc.contributor.author de Moor, J. Maarten
dc.contributor.author Chiodi, Agostina
dc.contributor.author Aguilera, Felipe
dc.contributor.author Hudak, Michael R.
dc.contributor.author Bekaert, David V.
dc.contributor.author Turner, Stephen
dc.contributor.author Curtice, Joshua
dc.contributor.author Seltzer, Alan M.
dc.contributor.author Jessen, Gerdhard L.
dc.contributor.author Osses, Esteban
dc.contributor.author Blamey, Jenny M.
dc.contributor.author Amenabar, Maximiliano J.
dc.contributor.author Selci, Matteo
dc.contributor.author Cascone, Martina
dc.contributor.author Bastianoni, Alessia
dc.contributor.author Nakagawa, Mayuko
dc.contributor.author Filipovich, Rubén
dc.contributor.author Bustos, Emilce
dc.contributor.author Schrenk, Matthew O.
dc.contributor.author Buongiorno, Joy
dc.contributor.author Ramirez, Carlos J.
dc.contributor.author Rogers, Timothy J.
dc.contributor.author Lloyd, Karen G.
dc.contributor.author Giovannelli, Donato
dc.date.accessioned 2022-10-14T15:38:45Z
dc.date.available 2022-10-14T15:38:45Z
dc.date.issued 2022-06-13
dc.description © The Author(s), 2022. This article is distributed under the terms of the Creative Commons Attribution License. The definitive version was published in Barry, P. H., De Moor, J. M., Chiodi, A., Aguilera, F., Hudak, M. R., Bekaert, D. V., Turner, S. J., Curtice, J., Seltzer, A. M., Jessen, G. L., Osses, E., Blamey, J. M., Amenabar, M. J., Selci, M., Cascone, M., Bastianoni, A., Nakagawa, M., Filipovich, R., Bustos, E., Schrenk, M. O. , Buongiorno, J., Ramírez, C. J., Rogers, T. J., Lloyd, K. G. & Giovannelli, D. The helium and carbon isotope characteristics of the Andean Convergent Margin. Frontiers in Earth Science, 10, (2022): 897267, https://doi.org/10.3389/feart.2022.897267. en_US
dc.description.abstract Subduction zones represent the interface between Earth’s interior (crust and mantle) and exterior (atmosphere and oceans), where carbon and other volatile elements are actively cycled between Earth reservoirs by plate tectonics. Helium is a sensitive tracer of volatile sources and can be used to deconvolute mantle and crustal sources in arcs; however it is not thought to be recycled into the mantle by subduction processes. In contrast, carbon is readily recycled, mostly in the form of carbon-rich sediments, and can thus be used to understand volatile delivery via subduction. Further, carbon is chemically-reactive and isotope fractionation can be used to determine the main processes controlling volatile movements within arc systems. Here, we report helium isotope and abundance data for 42 deeply-sourced fluid and gas samples from the Central Volcanic Zone (CVZ) and Southern Volcanic Zone (SVZ) of the Andean Convergent Margin (ACM). Data are used to assess the influence of subduction parameters (e.g., crustal thickness, subduction inputs, and convergence rate) on the composition of volatiles in surface volcanic fluid and gas emissions. He isotopes from the CVZ backarc range from 0.1 to 2.6 RA (n = 23), with the highest values in the Puna and the lowest in the Sub-Andean foreland fold-and-thrust belt. Atmosphere-corrected He isotopes from the SVZ range from 0.7 to 5.0 RA (n = 19). Taken together, these data reveal a clear southeastward increase in 3He/4He, with the highest values (in the SVZ) falling below the nominal range associated with pure upper mantle helium (8 ± 1 RA), approaching the mean He isotope value for arc gases of (5.4 ± 1.9 RA). Notably, the lowest values are found in the CVZ, suggesting more significant crustal inputs (i.e., assimilation of 4He) to the helium budget. The crustal thickness in the CVZ (up to 70 km) is significantly larger than in the SVZ, where it is just ∼40 km. We suggest that crustal thickness exerts a primary control on the extent of fluid-crust interaction, as helium and other volatiles rise through the upper plate in the ACM. We also report carbon isotopes from (n = 11) sites in the CVZ, where δ13C varies between −15.3‰ and −1.2‰ [vs. Vienna Pee Dee Belemnite (VPDB)] and CO2/3He values that vary by over two orders of magnitude (6.9 × 108–1.7 × 1011). In the SVZ, carbon isotope ratios are also reported from (n = 13) sites and vary between −17.2‰ and −4.1‰. CO2/3He values vary by over four orders of magnitude (4.7 × 107–1.7 × 1012). Low δ13C and CO2/3He values are consistent with CO2 removal (e.g., calcite precipitation and gas dissolution) in shallow hydrothermal systems. Carbon isotope fractionation modeling suggests that calcite precipitation occurs at temperatures coincident with the upper temperature limit for life (122°C), suggesting that biology may play a role in C-He systematics of arc-related volcanic fluid and gas emissions. en_US
dc.description.sponsorship This work was principally supported by the NSF-FRES award 2121637 to PB, KL, and JM. Field work was also supported by award G-2016-7206 from the Alfred P. Sloan Foundation and the Deep Carbon Observatory to PB, KL, DG, and JM. Additional support came from The National Fund for Scientific and Technological Development of Chile (FONDECYT) Grant 11191138 (The National Research and Development Agency of Chile, ANID Chile), and COPAS COASTAL ANID FB210021 to GJ. DG was partially supported by funding from the European Research Council (ERC) under the European Union’s Horizon 2020 research and innovation program Grant Agreement No. 948972—COEVOLVE—ERC-2020-STG. en_US
dc.identifier.citation Barry, P. H., De Moor, J. M., Chiodi, A., Aguilera, F., Hudak, M. R., Bekaert, D. V., Turner, S. J., Curtice, J., Seltzer, A. M., Jessen, G. L., Osses, E., Blamey, J. M., Amenabar, M. J., Selci, M., Cascone, M., Bastianoni, A., Nakagawa, M., Filipovich, R., Bustos, E., Schrenk, M. O. , Buongiorno, J., Ramírez, C. J., Rogers, T. J., Lloyd, K. G. & Giovannelli, D. (2022). The helium and carbon isotope characteristics of the Andean Convergent Margin. Frontiers in Earth Science, 10, 897267. en_US
dc.identifier.doi 10.3389/feart.2022.897267
dc.identifier.uri https://hdl.handle.net/1912/29422
dc.publisher Frontiers Media en_US
dc.relation.uri https://doi.org/10.3389/feart.2022.897267
dc.rights Attribution 4.0 International *
dc.rights.uri http://creativecommons.org/licenses/by/4.0/ *
dc.subject Helium en_US
dc.subject Carbon en_US
dc.subject SVZ en_US
dc.subject CVZ en_US
dc.subject Andes (Argentina and Chile) en_US
dc.title The helium and carbon isotope characteristics of the Andean Convergent Margin en_US
dc.type Article en_US
dspace.entity.type Publication
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