Color reflectance and XRF drill core scanner data of ANDRILL core AND-2A


Autoria(s): Kuhn, Gerhard; Hoffmann, Stefan; von Eynatten, Hilmar
Cobertura

LATITUDE: -77.758141 * LONGITUDE: 165.276765 * DATE/TIME START: 2007-10-10T12:00:00 * DATE/TIME END: 2007-11-30T12:00:00

Data(s)

27/07/2014

Resumo

The compositional record of the AND-2A drillcore is examined using petrological, sedimentological, volcanological and geochemical analysis of clasts, sediments and pore waters. Preliminary investigations of basement clasts (granitoids and metasediments) indicate both local and distal sources corresponding to variable ice-volume and ice-flow directions. Low abundance of sedimentary clasts (e.g., arkose, litharenite) suggests reduced contributions from sedimentary covers while intraclasts (e.g., diamictite, conglomerate) attest to intrabasinal reworking. Volcanic material includes pyroclasts (e.g., pumice, scoria), sediments and lava. Primary and reworked tephra layers occur within the Early Miocene interval (1093 to 640 metres below sea floor mbsf). The compositions of volcanic clasts reveal a diversity of alkaline types derived from the McMurdo Volcanic Group. Finer-grained sediments (e.g., sandstone, siltstone) show increases in biogenic silica and volcanic glass from 230 to 780 mbsf and higher proportions of terrigenous material c. 350 to 750 mbsf and below 970 mbsf. Basement clast assemblages suggest a dominant provenance from the Skelton Glacier - Darwin Glacier area and from the Ferrar Glacier - Koettlitz Glacier area. Provenance of sand grains is consistent with clast sources. Thirteen Geochemical Units are established based on compositional trends derived from continuous XRF scanning. High values of Fe and Ti indicate terrigenous and volcanic sources, whereas high Ca values signify either biogenic or diagenic sources. Highly alkaline and saline pore waters were produced by chemical exchange with glass at moderately elevated temperatures.

Formato

application/zip, 6 datasets

Identificador

https://doi.pangaea.de/10.1594/PANGAEA.834418

doi:10.1594/PANGAEA.834418

Idioma(s)

en

Publicador

PANGAEA

Relação

Panter, Kurt S; Talarico, Franco M; Bassett, K; Del Carlo, Paola; Field, B; Frank, T; Hoffmann, Stefan; Kuhn, Gerhard; Reichelt, Lucia; Sandroni, Sonja; Taviani, Marco; Bracciali, Laura; Cornamusini, G; von Eynatten, Hilmar; Rocchi, Sergio; SMS Science Team (2009): Petrologic and geochemical composition of the AND-2A Core, ANDRILL Southern McMurdo Sound Project, Antarctica. Terra Antartica, 15(1), 147-192, hdl:10013/epic.36329.d001

Direitos

CC-BY-NC-ND: Creative Commons Attribution-NonCommercial-NoDerivs 3.0 Unported

Access constraints: unrestricted

Palavras-Chave #10 kV; 50 kV; a*; Al chi-sqr; Al count; Al std dev; Aluminium, area, total counts; Aluminium, chi-square; Aluminium, standard deviation; ANDRILL; Antarctic Geological Drilling; Ar chi-sqr; Ar count; Argon, area, total counts; Argon, chi-square; Argon, standard deviation; Ar std dev; b*; Ba chi-sqr; Ba count; Barium, area, total counts; Barium, chi-square; Barium, standard deviation; Ba std dev; blue; Ca chi-sqr; Ca count; Calcium, area, total counts; Calcium, chi-square; Calcium, standard deviation; Ca std dev; Chloride, area, total counts; Chloride, chi-square; Chlorine, standard deviation; Chromium, area, total counts; Chromium, chi-square; Chromium, standard deviation; Cl chi-sqr; Cl count; Cl std dev; Color, a*; Color, b*; Color, L*, lightness; Color, X; Color, Y; Color, Z; Color 400; Color 410; Color 420; Color 430; Color 440; Color 450; Color 460; Color 470; Color 480; Color 490; Color 500; Color 510; Color 520; Color 530; Color 540; Color 550; Color 560; Color 570; Color 580; Color 590; Color 600; Color 610; Color 620; Color 630; Color 640; Color 650; Color 660; Color 670; Color 680; Color 690; Color 700; Color BLUE; Color code HLS-system; Color GREEN; Color HLS; Color RED; Color reflectance at 400 nm wavelength; Color reflectance at 410 nm wavelength; Color reflectance at 420 nm wavelength; Color reflectance at 430 nm wavelength; Color reflectance at 440 nm wavelength; Color reflectance at 450 nm wavelength; Color reflectance at 460 nm wavelength; Color reflectance at 470 nm wavelength; Color reflectance at 480 nm wavelength; Color reflectance at 490 nm wavelength; Color reflectance at 500 nm wavelength; Color reflectance at 510 nm wavelength; Color reflectance at 520 nm wavelength; Color reflectance at 530 nm wavelength; Color reflectance at 540 nm wavelength; Color reflectance at 550 nm wavelength; Color reflectance at 560 nm wavelength; Color reflectance at 570 nm wavelength; Color reflectance at 580 nm wavelength; Color reflectance at 590 nm wavelength; Color reflectance at 600 nm wavelength; Color reflectance at 610 nm wavelength; Color reflectance at 620 nm wavelength; Color reflectance at 630 nm wavelength; Color reflectance at 640 nm wavelength; Color reflectance at 650 nm wavelength; Color reflectance at 660 nm wavelength; Color reflectance at 670 nm wavelength; Color reflectance at 680 nm wavelength; Color reflectance at 690 nm wavelength; Color reflectance at 700 nm wavelength; Connectivity between photosystem II, standard deviation; Core; Cr chi-sqr; Cr count; Cr std dev; Damage rate, standard deviation; Depth; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; Depth bot; Depth top; Difference weighing of wet and dry sediment mass; Fe chi-sqr; Fe count; Fe std dev; File size; green; Iron, area, total counts; Iron, chi-square; Iron, standard deviation; JPG; K chi-sqr; K count; k std dev; L*; of core; P chi-sqr; P count; Phosphorus, area, total counts; Phosphorus, chi-square; Potassium, area, total counts; Potassium, chi-square; p std dev; red; Rh chi-sqr; Rh count; Rhodium, area, total counts; Rhodium, chi-square; Rhodium, standard deviation; Rh std dev; S chi-sqr; S count; Si chi-sqr; Si count; Silicon, area, total counts; Silicon, chi-square; Silicon, standard deviation; Si std dev; Spectrophotometer Minolta CM-2002; S std dev; Sulfur, area, total counts; Sulfur, chi-square; Sulfur, standard deviation; Ti chi-sqr; Ti count; Ti std dev; Titanium, area, total counts; Titanium, chi-square; Titanium, standard deviation; Type; Uniform resource locator/link to image; Uniform resource locator/link to raw data file; URL image; URL raw; Water content of wet mass; Water wm; X; X-ray fluorescence core scanner (XRF), AWI; Y; Z
Tipo

Dataset