Hot and heterogenous high-3He/4He components: New constraints from proto-Iceland plume lavas from Baffin Island

The Icelandic hotspot has erupted the highest terrestrial mantle-derived 3He/4He over a period spanning much of the Cenozoic, from the early-Cenozoic Baffin Island-West Greenland flood basalt province (49.8 RA), to the mid-Miocene lavas in northwest Iceland (40.2 to 47.5 RA), to Pleistocene lavas in...

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Main Author: Willhite, Lori Nicole
Other Authors: Jackson, Matthew G
Format: Other/Unknown Material
Language:English
Published: eScholarship, University of California 2019
Subjects:
Online Access:https://escholarship.org/uc/item/55w3080h
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spelling ftcdlib:oai:escholarship.org/ark:/13030/qt55w3080h 2023-05-15T15:35:20+02:00 Hot and heterogenous high-3He/4He components: New constraints from proto-Iceland plume lavas from Baffin Island Willhite, Lori Nicole Jackson, Matthew G 2019-01-01 application/pdf https://escholarship.org/uc/item/55w3080h en eng eScholarship, University of California qt55w3080h https://escholarship.org/uc/item/55w3080h public Geochemistry Baffin Island hotspot Iceland mantle plume etd 2019 ftcdlib 2019-12-27T23:53:08Z The Icelandic hotspot has erupted the highest terrestrial mantle-derived 3He/4He over a period spanning much of the Cenozoic, from the early-Cenozoic Baffin Island-West Greenland flood basalt province (49.8 RA), to the mid-Miocene lavas in northwest Iceland (40.2 to 47.5 RA), to Pleistocene lavas in Iceland’s neovolcanic zone (34.3 RA). This study provides a detailed geochemical data set—He-O-Sr-Nd-Hf-Pb isotopic compositions, as well as whole rock major and trace element concentrations—for a suite of 18 Baffin Island lavas. The Baffin Island lavas transited through and potentially assimilated variable degrees of Precambrian continental basement. We therefore use geochemical indicators sensitive to continental crust assimilation (whole rock Nb/Th, Ce/Pb, MgO) to identify the least crustally-contaminated lavas in the suite. Four lavas, identified as “least crustally-contaminated”, have high MgO (>15 wt.%) and Nb/Th and Ce/Pb ratios that fall within the mantle range (Nb/Th=15.6±2.6, Ce/Pb=24.3±4.3). These four lavas have 3He/4He up to 39.9 RA and mantle-like δ18O of 5.03 to 5.21‰, 87Sr/86Sr = 0.703008–0.703021, 143Nd/144Nd = 0.513094–0.513128, 176Hf/177Hf = 0.283265–0.283284, 206Pb/204Pb = 17.7560–17.9375, and are located on or near the 4.5 Ga Pb isotope geochron. The radiogenic isotopic compositions of the least crustally-contaminated Baffin Island lavas are offset to more geochemically depleted compositions compared to high-3He/4He lavas from Iceland, a shift that cannot be explained by continental crust assimilation in the Baffin suite. While Sr-Nd-Pb isotopic heterogeneity among high-3He/4He localities has been previously observed, this is an important observation of geochemically distinct high-3He/4He endmembers within a single hotspot. Additionally, the least crustally-contaminated primary melts from Baffin Island-West Greenland have higher mantle potential temperatures (1510 to 1630 °C) than global MORB primary magmas located far from hotspots (1320 to 1480 °C), which supports a hot, buoyant plume origin for these early Iceland plume lavas. These observations support the contention that the geochemically heterogeneous high-3He/4He domain is dense, located in the deep mantle, and sampled by only the hottest plumes. Other/Unknown Material Baffin Island Baffin Greenland Iceland University of California: eScholarship Baffin Island Greenland
institution Open Polar
collection University of California: eScholarship
op_collection_id ftcdlib
language English
topic Geochemistry
Baffin Island
hotspot
Iceland
mantle plume
spellingShingle Geochemistry
Baffin Island
hotspot
Iceland
mantle plume
Willhite, Lori Nicole
Hot and heterogenous high-3He/4He components: New constraints from proto-Iceland plume lavas from Baffin Island
topic_facet Geochemistry
Baffin Island
hotspot
Iceland
mantle plume
description The Icelandic hotspot has erupted the highest terrestrial mantle-derived 3He/4He over a period spanning much of the Cenozoic, from the early-Cenozoic Baffin Island-West Greenland flood basalt province (49.8 RA), to the mid-Miocene lavas in northwest Iceland (40.2 to 47.5 RA), to Pleistocene lavas in Iceland’s neovolcanic zone (34.3 RA). This study provides a detailed geochemical data set—He-O-Sr-Nd-Hf-Pb isotopic compositions, as well as whole rock major and trace element concentrations—for a suite of 18 Baffin Island lavas. The Baffin Island lavas transited through and potentially assimilated variable degrees of Precambrian continental basement. We therefore use geochemical indicators sensitive to continental crust assimilation (whole rock Nb/Th, Ce/Pb, MgO) to identify the least crustally-contaminated lavas in the suite. Four lavas, identified as “least crustally-contaminated”, have high MgO (>15 wt.%) and Nb/Th and Ce/Pb ratios that fall within the mantle range (Nb/Th=15.6±2.6, Ce/Pb=24.3±4.3). These four lavas have 3He/4He up to 39.9 RA and mantle-like δ18O of 5.03 to 5.21‰, 87Sr/86Sr = 0.703008–0.703021, 143Nd/144Nd = 0.513094–0.513128, 176Hf/177Hf = 0.283265–0.283284, 206Pb/204Pb = 17.7560–17.9375, and are located on or near the 4.5 Ga Pb isotope geochron. The radiogenic isotopic compositions of the least crustally-contaminated Baffin Island lavas are offset to more geochemically depleted compositions compared to high-3He/4He lavas from Iceland, a shift that cannot be explained by continental crust assimilation in the Baffin suite. While Sr-Nd-Pb isotopic heterogeneity among high-3He/4He localities has been previously observed, this is an important observation of geochemically distinct high-3He/4He endmembers within a single hotspot. Additionally, the least crustally-contaminated primary melts from Baffin Island-West Greenland have higher mantle potential temperatures (1510 to 1630 °C) than global MORB primary magmas located far from hotspots (1320 to 1480 °C), which supports a hot, buoyant plume origin for these early Iceland plume lavas. These observations support the contention that the geochemically heterogeneous high-3He/4He domain is dense, located in the deep mantle, and sampled by only the hottest plumes.
author2 Jackson, Matthew G
format Other/Unknown Material
author Willhite, Lori Nicole
author_facet Willhite, Lori Nicole
author_sort Willhite, Lori Nicole
title Hot and heterogenous high-3He/4He components: New constraints from proto-Iceland plume lavas from Baffin Island
title_short Hot and heterogenous high-3He/4He components: New constraints from proto-Iceland plume lavas from Baffin Island
title_full Hot and heterogenous high-3He/4He components: New constraints from proto-Iceland plume lavas from Baffin Island
title_fullStr Hot and heterogenous high-3He/4He components: New constraints from proto-Iceland plume lavas from Baffin Island
title_full_unstemmed Hot and heterogenous high-3He/4He components: New constraints from proto-Iceland plume lavas from Baffin Island
title_sort hot and heterogenous high-3he/4he components: new constraints from proto-iceland plume lavas from baffin island
publisher eScholarship, University of California
publishDate 2019
url https://escholarship.org/uc/item/55w3080h
geographic Baffin Island
Greenland
geographic_facet Baffin Island
Greenland
genre Baffin Island
Baffin
Greenland
Iceland
genre_facet Baffin Island
Baffin
Greenland
Iceland
op_relation qt55w3080h
https://escholarship.org/uc/item/55w3080h
op_rights public
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