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dc.contributor.authorKarpinski, AK
dc.date.accessioned2020-11-05T23:22:03Z-
dc.date.issued2014
dc.identifier.govdocCR2014-0727
dc.identifier.urihttps://geoscience.nt.gov.au/gemis/ntgsjspui/handle/1/90911-
dc.description.abstractIn Year 2, work consisted of: prospecting; mapping of outcrops of Mount Deane Volcanic unit (MDV); collecting of rock chip and soil samples (10 rock chip and 20 soil samples were collected); assessing of ground conditions for ground electromagnetic, gravity and induced polarisation surveys; site verification for drilling; planning of aerial electromagnetic survey; commencing interpretation of all geochem data (rock-chips, drill chips and core drill data) with focus on pathfinder mineral and elemental ratios; digitising of past data; continuing the compilation of data base from historical and Korab generated geochemical, geophysical and geological data including data from open file and closed file reports, government data bases and private vendors; commencing of metallurgical test work on samples from Winchester to test them for calcining potential; commencing of scoping study for the development of the Winchester magnesite deposit as direct shipping ore mining operation. Review has shown the Au potential to be limited to the northern section of the licence and to the Sundance mineral leases which are wholly contained with the licence. Several Cu anomalies were confirmed proximal to major syncline and to minor faults and in the vicinity of buried conductors associated with faulting. Two of these Cu prospects are associated with Ni anomalies and potential conductors. Four Zn prospects were assessed; three of them are associated with Cu and Ni anomalism. TEMPEST data shows conductive rocks at shallow depth below these anomalies. There appears more MDV outcrop than previously assessed. Rock samples taken from MDV outcrop have not yet been assayed but visual inspection of weathered rock suggest potential for massive sulphide at depth. Where MDV outcrops it occurs in difficult terrain and mapping is difficult. Field mapping of MDV also is difficult because it is obscured by Acacia Gap quartzite.
dc.subject.classificationPrecious metals
dc.subject.classificationGold
dc.subject.classificationBase metals
dc.subject.classificationCopper
dc.subject.classificationNickel
dc.subject.classificationZinc
dc.subject.classificationIron
dc.subject.classificationCobalt
dc.subject.classificationPhosphates
dc.subject.classificationMagnesite
dc.subject.classificationData compilation
dc.subject.classificationProspecting
dc.subject.classificationMapping
dc.subject.classificationGeochemical exploration
dc.subject.classificationRock chip sampling
dc.subject.classificationSoil sampling
dc.subject.classificationPlanning
dc.subject.classificationReviews
dc.titleEL 29550 Annual Report for Year 2 Batchelor Project Period 1 August 2013 to 31 July 2014
dc.relation.isatmap100Noonamah 5172
dc.relation.isatmap100Batchelor 5171
dc.relation.isatmap250Pine Creek SD5208
dc.relation.isatgeolprovincePine Creek Orogen
dc.description.stratnameAcacia Gap Quartzite Member
dc.description.stratnameMount Deane Volcanic Member
dc.description.geochemicalsampling10 Rock hip samples (taken to Europe for analysis which is
dc.description.geochemicalsampling20 Soil samples (taken to Europe for analysis which is
dc.description.geochemicalsamplingstill pending)
dc.identifier.tenureEL29550
dc.description.modifyhistory28/10/2014
dc.description.modifyhistory03/11/2020
dc.contributor.holderKorab Resources
dc.identifier.collectionnameMinerals Exploration Reports (MEX)
dc.identifier.govdocprefixCR2014
local.flag.notified1
Appears in Collections:Minerals Exploration Reports (MEX)

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