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Novel Application of 210Po-210Pb Disequilibria to Date Snow, Melt Pond, Ice Core, and Ice-Rafted Sediments in the Arctic Ocean

Mark Baskaran; Katherine Krupp
Frontiers in Marine Science · Vol. 8 · 2021

Abstract

We collected surface ocean water, snow, grab ice, ice core, melt pond and ice-rafted sediment (IRS) from 5 ice stations during the Western Arctic US GEOTRACES cruise (USGCG Healy; August 10 – October 7, 2015) and analyzed for 210 Po (T 1/2 = 138.4 days) and 210 Pb (T 1/2 = 22.3 years) in dissolved and particulate phases (snow, grab ice, ice core, surface seawater) to investigate the 210 Po: 210 Pb disequilibria in these matrices. Thirteen aerosol samples, using a large-volume aerosol sampler (PM10), from Dutch Harbor, AK to North Pole, were also collected and analyzed for 210 Po/ 210 Pb to quantify the atmospheric depositional input to the snow and surface waters. Falling snowfall is tagged with 210 Po/ 210 Pb ratio (AR) similar to that in the air column from the cloud condensation height to air-sea interface. From the measured AR in aerosol and snow, modeling the sources of 210 Po and 210 Pb input to the melt pond, and measured disequilibrium in ice core and ice-rafted sediment, we show 210 Po/ 210 Pb AR is a novel chronometer to date snow, ice core, melt pond, and IRS. The calculated mean ages of aerosol, snow, melt pond and IRS are 12 ± 7 ( n = 13), 13 ± 11 ( n = 6), 60 ± 14 ( n = 4), and 87 ± 23 ( n = 6) days, respectively. The average IRS age corresponds to an average drift velocity of sediment-laden ice of 0.18 ± 0.06 ( n = 6) m s –1 . We report highly elevated levels of 210 Po and 210 Pb in snow and melt pond compared to those in Arctic surface seawater and enrichment of 210 Po compared to 210 Pb onto particles extracted from snow, ice and melt ponds. The observed disequilibrium between 210 Po and 210 Pb in ice could serve as a quantitative tool in delineating multiple-year ice from seasonal ice as well as a metric in quantifying the speed of ice/snow melting and delay in autumn freeze.

Bibliographic Information

JournalFrontiers in Marine Science
PublisherFrontiers
Publication Date2021-07-30
Publication Year2021
Volume8
Document TypeJournal Article
eISSN2296-7745
DOI10.3389/fmars.2021.692631
SubjectMarine science; fisheries; aquaculture; pollution; ocean observation; policy

Access Information

NARA Access CoverageOA / free full text
Journal Homepagehttps://www.frontiersin.org/journals/marine-science
Publisher PageOpen Publisher Page
This article is openly available from the publisher.