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Geographical variations in Sr and Nd isotopic ratios of cryoconite on Asian glaciers

Bibliographic Data

ID15550280
AuthorsNaoko Nagatsuka (0000-0002-0852-447X, National Institute of Polar Research, corresponding author), Nozomu Takeuchi (0000-0002-3267-5534, Chiba University), Takanori Nakano (0000-0002-0135-1051, Research Institute for Humanity and Nature), Ki‐Cheol Shin (0000-0003-2107-4773, Research Institute for Humanity and Nature), Kicheol Shin, Emi Kokado (Research Institute for Humanity and Nature)
Year2014
Volume9
Issue4
Pages045007-045007
Publication date2014-04-01
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueEnvironmental Research Letters (JOURNAL)
Journal identifiersISSN: 1748-9326 • E-ISSN: 1748-9326
PublisherIOP Publishing (PUBLISHER • GB)
DOI10.1088/1748-9326/9/4/045007
OpenAlexW2067686170
LanguageEN
Citations received2
References cited46

Cryoconite is a dark-coloured surface dust deposited on glaciers that consists of wind-blown mineral particles, as well as organic matter derived from microbes living on glaciers. In this paper, we analyse the Sr and Nd isotopic ratios of four mineral fractions (i.e., the saline, carbonate, phosphate, and silicate mineral fractions), as well as the organic fraction, of cryoconite samples obtained from six Asian glaciers (the Altai, Pamir, Tien Shan, Qillian Shan, and Himalayan regions), and discuss their geographical variations in terms of the geological origins of the mineral particles and the biogeochemical processes on the glaciers. The silicate mineral fraction showed lower Sr and higher Nd ratios for the glaciers located to the north (Altai, ^87 Sr/ ^86 Sr: 0.713 490–0.715 284, εNd(0): −6.4 to −5.6), while higher Sr and lower Nd ratios for the glaciers located to the south (Himalayas, ^87 Sr/ ^86 Sr: 0.740 121–0.742 088, εNd(0): −16.4 to −15.7); the ratios were similar to those of desert sand, loess, and river sediments in the respective regions of the glaciers. This result suggests that the silicate minerals within the cryoconites were derived from different sources depending on the geographical locations of the glaciers. The isotopic ratios of the saline, carbonate, and phosphate mineral fractions were distinct from those of the silicate fraction, and were similar to those of evaporites and apatite deposits from the Asian deserts, but also varied geographically, indicating that they are likely to reflect their geological origin. The Sr isotopic ratios of the organic fraction were similar to those of the saline and carbonate fractions from glaciers in the central area (Tien Shan and Qillian Shan), but were higher than those of the saline and carbonate fractions, and lower than the phosphate mineral fraction, in the northern and southern areas. The ratios of organic fraction may be determined from the mixing ratio of calcium sources incorporated by microbes on the glaciers

Carbonate · Geochemistry · Geography · Geomorphology · Glacial period · Glacier · Mineral · Mineralogy · Physical geography · Provenance · Silicate · Chemistry · Geochemistry and Elemental Analysis · Geology and Paleoclimatology Research · Polar Research and Ecology · Geology

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Unique citing works2
Citations per year0,18
Citation span2015 - 2022 (8)
Citation velocityhistorical
Highly citedNo
Citation typesNeutral: 2
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