Please use this identifier to cite or link to this item: https://geoscience.nt.gov.au/gemis/ntgsjspui/handle/1/76614
Export to Endnote
Full metadata record
DC FieldValueLanguage
dc.contributor.authorJenkins, Den_US
dc.contributor.authorLee, Men_US
dc.date.accessioned2013-10-28T07:11:36Z-
dc.date.issued2011en_US
dc.identifier.govdocCR2011-0883en_US
dc.identifier.urihttps://geoscience.nt.gov.au/gemis/ntgsjspui/handle/1/76614en_US
dc.description.abstractThe tenement is entirely with Moroak Station. It has been explored by Tianda Resources (Australia) Pty Ltd for uranium and iron ore since being granted in September 2007. Initial Uranium exploration work completed in the 2008 showed little potential. The outcrop lithology in the tenement is comprised mostly of Proterozoic Roper River Group sediments, being sandstone and siltstone of the Velkerri, Moroak Sandstone and Kyalla Members of the McMinn Formation. The Sherwin Ironstone Member is sometimes found between the Moroak and Kyalla Members, and was the focus of the iron ore search. During July 2010, geologists of both Tianda Resources (Australia) Pty Ltd and the consultancy, Terra Search Pty Ltd, worked on the tenement. Exploration was conducted with the assistance of Google Earth imagery, seeking out hilltops that might be ferruginized. Seventeen geochemical samples, about a hundred geological observation points and fourteen outcrops of Sherwin Ironstone Member were recorded. Magnetic susceptibility readings were made on fourteen rockchip samples and at another five outcrop locations. These determined the parameter to vary between 0.3 and 310 SI units in the Sherwin Ironstone, with the highest readings being associated with the highest iron concentrations. This variability in the parameter gives an impetus to use ground magnetic survey to assist in mapping the ironstone outcrop. ICP-OES analysis of the seventeen rockchip samples gave values in the range of 12.7% Fe (in ferruginised sandstone) up to a maximum of 48% in oolitic ironstone. The median grade was 36.6%. Phosphate concentrations were in the range of 0.03% up to 0.36% with a median of 0.09% P. The fourteen outcrops of Sherwin Ironstone Member varied in area from less than 0.1Ha to a maximum of 39 Ha, with a median of 0.1Ha. They were located on or near the tops of hills comprised of Moroak Sandstone Member. In some cases, they were only about half a metre thick, while in one instance, it appeared to be about two metres thick. The outcrops are estimated to contain over two million tonnes of ironstone, of grade ranging from 30% to 48%. Due to poor quality and small amount of iron ore, it has been decided that no more exploration work will be carried out in this tenement during this reporting period, and the exploration license was surrendered on 29 August 2011.en_US
dc.subject.classificationUranium explorationen_US
dc.subject.classificationBase metalsen_US
dc.subject.classificationIron oresen_US
dc.subject.classificationGeochemical explorationen_US
dc.subject.classificationRock chip samplingen_US
dc.subject.classificationAssay valueen_US
dc.titleFinal report for EL 25692 High Black Range year ending 27 September 2011en_US
dc.relation.isatmap100Moroak 5668en_US
dc.relation.isatmap250Urapunga SD5310en_US
dc.relation.isatgeolprovinceMcArthur Basinen_US
dc.description.stratnameMoroak Sandstoneen_US
dc.description.geochemicalsampling17 Rock chip samplesen_US
dc.identifier.tenureEL25692en_US
dc.description.modifyhistory29/11/2011en_US
dc.description.modifyhistory22/12/2011en_US
dc.description.modifyhistory07/06/2013en_US
dc.description.modifyhistory16/09/2013en_US
dc.contributor.holderTianda Uraniumen_US
dc.identifier.collectionnameMinerals Exploration Reports (MEX)en_US
dc.identifier.govdocprefixCR2011en_US
local.flag.notified1
Appears in Collections:Minerals Exploration Reports (MEX)

Files in this Report:
File SizeFormat Add to
Download
EL25692_2011_AS_01.pdf3.48 MBPDF Add
EL25692_2011_AS_02_SurfaceGeochem.txt4.38 kBText Add
EL25692_2011_AS_03_FileListing.txt353 BText Add


Items in GEMIS are protected by copyright unless otherwise indicated.

Get Adobe Reader