Regional-scale input of dispersed and discrete volcanic ash to the Izu-Bonin and Mariana subduction zones.

Scudder, Rachel P., Murray, Richard W., Schindlbeck, Julie , Kutterolf, Steffen , Hauff, Folkmar and McKinley, Claire C. (2014) Regional-scale input of dispersed and discrete volcanic ash to the Izu-Bonin and Mariana subduction zones. Open Access Geochemistry, Geophysics, Geosystems, 15 (11). pp. 4369-4379. DOI 10.1002/2014GC005561.

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Abstract

We have geochemically and statistically characterized bulk marine sediment and ash layers at Ocean Drilling Program Site 1149 (Izu-Bonin Arc) and Deep Sea Drilling Project Site 52 (Mariana Arc), and have quantified that multiple dispersed ash sources collectively comprise ~30-35% of the hemipelagic sediment mass entering the Izu-Bonin-Mariana subduction system. Multivariate statistical analyses indicate that the bulk sediment at Site 1149 is a mixture of Chinese Loess, a second compositionally distinct eolian source, a dispersed mafic ash, and a dispersed felsic ash. We interpret the source of these ashes as respectively being basalt from the Izu-Bonin Front Arc (IBFA) and rhyolite from the Honshu Arc. Sr-, Nd-, and Pb isotopic analyses of the bulk sediment are consistent with the chemical/statistical-based interpretations. Comparison of the mass accumulation rate of the dispersed ash component to discrete ash layer parameters (thickness, sedimentation rate, and number of layers) suggests that eruption frequency, rather than eruption size, drives the dispersed ash record. At Site 52, the geochemistry and statistical modeling indicates that Chinese Loess, IBFA, dispersed BNN (boninite from Izu-Bonin), and a dispersed felsic ash of unknown origin are the sources. At Site 1149 the ash layers and the dispersed ash are compositionally coupled, whereas at Site 52 they are decoupled in that there are no boninite layers, yet boninite is dispersed within the sediment. Changes in the volcanic and eolian inputs through time indicate strong arc- and climate-related controls.

Document Type: Article
Additional Information: WOS:000348060800014
Keywords: dispersed ash; sediment chemistry; Ocean Drilling Program; multivariate statistics; marine geochemistry
Research affiliation: OceanRep > GEOMAR > FB4 Dynamics of the Ocean Floor > FB4-MUHS Magmatic and Hydrothermal Systems
Refereed: Yes
Open Access Journal?: No
Publisher: Wiley
Projects: Future Ocean
Date Deposited: 11 Nov 2014 11:19
Last Modified: 27 Feb 2018 10:50
URI: https://oceanrep.geomar.de/id/eprint/26007

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