Lead isotopes in North Pacific deep water – implications for past changes in input sources and circulation patterns
The sources of non-anthropogenic Pb in seawater have been the subject of debate. Here we present Pb isotope time-series that indicate that the non-anthropogenic Pb budget of the northernmost Pacific Ocean has been governed by ocean circulation and riverine inputs, which in turn have ultimately been...
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Published in | Earth and planetary science letters Vol. 209; no. 1; pp. 149 - 164 |
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Main Authors | , , , , , , |
Format | Journal Article |
Language | English |
Published |
Elsevier B.V
01.04.2003
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Subjects | |
Online Access | Get full text |
ISSN | 0012-821X 1385-013X |
DOI | 10.1016/S0012-821X(03)00069-4 |
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Abstract | The sources of non-anthropogenic Pb in seawater have been the subject of debate. Here we present Pb isotope time-series that indicate that the non-anthropogenic Pb budget of the northernmost Pacific Ocean has been governed by ocean circulation and riverine inputs, which in turn have ultimately been controlled by tectonic processes. Despite the fact that the investigated locations are situated within the Asian dust plume, and proximal to extensive arc volcanism, eolian contributions have had little impact. We have obtained the first high-resolution and high-precision Pb isotope time-series of North Pacific deep water from two ferromanganese crusts from the Gulf of Alaska in the NE Pacific Ocean, and from the Detroit Seamount in the NW Pacific Ocean. Both crusts were dated applying
10Be/
9Be ratios and yield continuous time-series for the past 13.5 and 9.6 Myr, respectively. Lead isotopes show a monotonic evolution in
206Pb/
204Pb from low values in the Miocene (≤18.57) to high values at present day (≥18.84) in both crusts, even though they are separated by more than 3000 km along the Aleutian Arc. The variation exceeds the amplitude found in Equatorial Pacific deep water records by about three-fold. There also is a striking similarity in
207Pb/
204Pb and
208Pb/
204Pb ratios of the two crusts, indicating the existence of a local circulation cell in the sub-polar North Pacific, where efficient lateral mixing has taken place but only limited exchange (in terms of Pb) with deep water from the Equatorial Pacific has occurred. Both crusts display well-defined trends with age in Pb–Pb isotope mixing plots, which require the involvement of at least four distinct Pb sources for North Pacific deep water. The Pb isotope time-series reveal that eolian supplies (volcanic ash and continent-derived loess) have only been of minor importance for the dissolved Pb budget of marginal sites in the deep North Pacific over the past 6 Myr. The two predominant sources have been young volcanic arcs, one located in the northeastern part and one located in the northwestern part of the Pacific margin, from where material has been eroded and delivered to the ocean, most likely via riverine pathways. |
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AbstractList | The sources of non-anthropogenic Pb in seawater have been the subject of debate. Here we present Pb isotope time-series that indicate that the non- anthropogenic Pb budget of the northernmost Pacific Ocean has been governed by ocean circulation and riverine inputs, which in turn have ultimately been controlled by tectonic processes. Despite the fact that the investigated locations are situated within the Asian dust plume, and proximal to extensive arc volcanism, eolian contributions have had little impact. We have obtained the first high-resolution and high-precision Pb isotope time-series of North Pacific deep water from two ferromanganese crusts from the Gulf of Alaska in the NE Pacific Ocean, and from the Detroit Seamount in the NW Pacific Ocean. Both crusts were dated applying super 10Be/ super 9Be ratios and yield continuous time- series for the past 13.5 and 9.6 Myr, respectively. Lead isotopes show a monotonic evolution in super 206Pb/ super 204Pb from low values in the Miocene ( < =18.57) to high values at present day ([greater-than or equal to]18.84) in both crusts, even though they are separated by more than 3000 km along the Aleutian Arc. The variation exceeds the amplitude found in Equatorial Pacific deep water records by about three-fold. There also is a striking similarity in super 207Pb/ super 204Pb and super 208Pb/ super 204Pb ratios of the two crusts, indicating the existence of a local circulation cell in the sub- polar North Pacific, where efficient lateral mixing has taken place but only limited exchange (in terms of Pb) with deep water from the Equatorial Pacific has occurred. Both crusts display well-defined trends with age in Pb-Pb isotope mixing plots, which require the involvement of at least four distinct Pb sources for North Pacific deep water. The Pb isotope time-series reveal that eolian supplies (volcanic ash and continent-derived loess) have only been of minor importance for the dissolved Pb budget of marginal sites in the deep North Pacific over the past 6 Myr. The two predominant sources have been young volcanic arcs, one located in the northeastern part and one located in the northwestern part of the Pacific margin, from where material has been eroded and delivered to the ocean, most likely via riverine pathways. The sources of non-anthropogenic Pb in seawater have been the subject of debate. Here we present Pb isotope time-series that indicate that the non- anthropogenic Pb budget of the northernmost Pacific Ocean has been governed by ocean circulation and riverine inputs, which in turn have ultimately been controlled by tectonic processes. Despite the fact that the investigated locations are situated within the Asian dust plume, and proximal to extensive arc volcanism, eolian contributions have had little impact. We have obtained the first high-resolution and high-precision Pb isotope time-series of North Pacific deep water from two ferromanganese crusts from the Gulf of Alaska in the NE Pacific Ocean, and from the Detroit Seamount in the NW Pacific Ocean. Both crusts were dated applying super(10)Be/ super(9)Be ratios and yield continuous time- series for the past 13.5 and 9.6 Myr, respectively. Lead isotopes show a monotonic evolution in super(206)Pb/ super(204)Pb from low values in the Miocene (<=18.57) to high values at present day ([greater-than or equal to]18.84) in both crusts, even though they are separated by more than 3000 km along the Aleutian Arc. The variation exceeds the amplitude found in Equatorial Pacific deep water records by about three-fold. There also is a striking similarity in super(207)Pb/ super(204)Pb and super(208)Pb/ super(204)Pb ratios of the two crusts, indicating the existence of a local circulation cell in the sub- polar North Pacific, where efficient lateral mixing has taken place but only limited exchange (in terms of Pb) with deep water from the Equatorial Pacific has occurred. Both crusts display well-defined trends with age in Pb-Pb isotope mixing plots, which require the involvement of at least four distinct Pb sources for North Pacific deep water. The Pb isotope time-series reveal that eolian supplies (volcanic ash and continent-derived loess) have only been of minor importance for the dissolved Pb budget of marginal sites in the deep North Pacific over the past 6 Myr. The two predominant sources have been young volcanic arcs, one located in the northeastern part and one located in the northwestern part of the Pacific margin, from where material has been eroded and delivered to the ocean, most likely via riverine pathways. The sources of non-anthropogenic Pb in seawater have been the subject of debate. Here we present Pb isotope time-series that indicate that the non-anthropogenic Pb budget of the northernmost Pacific Ocean has been governed by ocean circulation and riverine inputs, which in turn have ultimately been controlled by tectonic processes. Despite the fact that the investigated locations are situated within the Asian dust plume, and proximal to extensive arc volcanism, eolian contributions have had little impact. We have obtained the first high-resolution and high-precision Pb isotope time-series of North Pacific deep water from two ferromanganese crusts from the Gulf of Alaska in the NE Pacific Ocean, and from the Detroit Seamount in the NW Pacific Ocean. Both crusts were dated applying 10Be/ 9Be ratios and yield continuous time-series for the past 13.5 and 9.6 Myr, respectively. Lead isotopes show a monotonic evolution in 206Pb/ 204Pb from low values in the Miocene (≤18.57) to high values at present day (≥18.84) in both crusts, even though they are separated by more than 3000 km along the Aleutian Arc. The variation exceeds the amplitude found in Equatorial Pacific deep water records by about three-fold. There also is a striking similarity in 207Pb/ 204Pb and 208Pb/ 204Pb ratios of the two crusts, indicating the existence of a local circulation cell in the sub-polar North Pacific, where efficient lateral mixing has taken place but only limited exchange (in terms of Pb) with deep water from the Equatorial Pacific has occurred. Both crusts display well-defined trends with age in Pb–Pb isotope mixing plots, which require the involvement of at least four distinct Pb sources for North Pacific deep water. The Pb isotope time-series reveal that eolian supplies (volcanic ash and continent-derived loess) have only been of minor importance for the dissolved Pb budget of marginal sites in the deep North Pacific over the past 6 Myr. The two predominant sources have been young volcanic arcs, one located in the northeastern part and one located in the northwestern part of the Pacific margin, from where material has been eroded and delivered to the ocean, most likely via riverine pathways. |
Author | Hattendorf, Bodo Hein, James R. Günther, Detlef Frank, Martin Kubik, Peter W. van de Flierdt, Tina Halliday, Alex N. |
Author_xml | – sequence: 1 givenname: Tina surname: van de Flierdt fullname: van de Flierdt, Tina email: tina.vandeflierdt@erdw.ethz.ch organization: Institute for Isotope Geology and Mineral Resources, Department of Earth Sciences, ETH-Zentrum, Sonneggstrasse 5, CH-8092 Zürich, Switzerland – sequence: 2 givenname: Martin surname: Frank fullname: Frank, Martin organization: Institute for Isotope Geology and Mineral Resources, Department of Earth Sciences, ETH-Zentrum, Sonneggstrasse 5, CH-8092 Zürich, Switzerland – sequence: 3 givenname: Alex N. surname: Halliday fullname: Halliday, Alex N. organization: Institute for Isotope Geology and Mineral Resources, Department of Earth Sciences, ETH-Zentrum, Sonneggstrasse 5, CH-8092 Zürich, Switzerland – sequence: 4 givenname: James R. surname: Hein fullname: Hein, James R. organization: U.S. Geological Survey, 345 Middlefield Road, MS-999, Menlo Park, CA 94025, USA – sequence: 5 givenname: Bodo surname: Hattendorf fullname: Hattendorf, Bodo organization: Laboratory of Inorganic Chemistry, Department of Chemistry, ETH Hönggerberg, HCI, Wolfgang-Pauli-Strasse 10, CH-8093 Zürich, Switzerland – sequence: 6 givenname: Detlef surname: Günther fullname: Günther, Detlef organization: Laboratory of Inorganic Chemistry, Department of Chemistry, ETH Hönggerberg, HCI, Wolfgang-Pauli-Strasse 10, CH-8093 Zürich, Switzerland – sequence: 7 givenname: Peter W. surname: Kubik fullname: Kubik, Peter W. organization: Paul Scherrer Institute, c/o Institute for Particle Physics, ETH Hönggerberg, CH-8093 Zürich, Switzerland |
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Keywords | ferromanganese crusts eolian input ocean circulation Pb isotopes North Pacific riverine input |
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Snippet | The sources of non-anthropogenic Pb in seawater have been the subject of debate. Here we present Pb isotope time-series that indicate that the... The sources of non-anthropogenic Pb in seawater have been the subject of debate. Here we present Pb isotope time-series that indicate that the non-... |
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SubjectTerms | eolian input ferromanganese crusts Marine North Pacific ocean circulation Pb isotopes riverine input |
Title | Lead isotopes in North Pacific deep water – implications for past changes in input sources and circulation patterns |
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