Gamma-ray Spectroscopy An introduction: gamma rays, detectors
RPT AMAG ARAD MECH STRIPPING & SAMP · A Cessna 180 CF-PKL was used to fly the survey. Gamma-Ray...
Transcript of RPT AMAG ARAD MECH STRIPPING & SAMP · A Cessna 180 CF-PKL was used to fly the survey. Gamma-Ray...
\ 41P12SW88B3 2.3181 CHESTER 010
REPORT ON EXPLORATION
GROUP SURVEY
NEALS ANDERSEN, JACK MCVITTIE, HARVEY BLANCHARD
BAXTER MINERALS LTD. S CANADIAN CREST GOLD MINES LIMITED,
CLAIM GROUPS, CHESTER AND YEO TOWNSHIP,
AIRBORNE MAGNETOMETER SURVEY,
GAMMA-RAY SPECTROMETER SURVEY,
BULLDOZING, STRIPPING AND SAMPLING OF SULPHIDE ZONES
RECEIVEDJAN O 7 1980
MINING LANDS SECTION
INTRODUCTION
ANDERSEN GROUP
An Airborne Magnetometer Survey and Gamma-Ray
Spectrometer Survey were flown over the Neals Andersen
Claim Group. Surface stripping and sampling of sulphide
zones were carried out and assayed for Copper and Gold.
The Andersen Group consists of claims number:
P472991, 472992, 472993, 472962, 472994, 472998, 472963,
472995, 472970, 472971, 472972, 472996, 472997, 472978,
472979, 472999, 473000, 472918, 473001, 472985, 472984,
473002, 473003, 472986, 472987, 525230, 472989, 472988,
472990, 473004, 473005, 473006, 473007^ 473009, 473008,
472980, 472981, 472982, 472983.
BAXTER MINERALS GROUP
An Airborne Gamma-Ray Spectrometer Survey,
bulldozing, stripping and sampling of sulphide zones were
carried out on the west side of Clam Lake, opposite the
production shaft on the east side of Clam Lake. The survey
was flown over claims number 393605, 393606, 393604, 393603,"^^ SlpO O
and 393601, Yeo Township and claims number 472509, 472510,
472508, P8997, P8996, and P8995 Chester Township.
JACK MCVITTIE
A Gamma-Ray Spectrometer Survey was flown over
claims number 393602, 393607, Yeo Township and 393609 and f[\\\
393610 Chester Township. i L-J" '}
Rock trenching was carried out along the claim
line of 393602 and 393607.
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CANADIAN CREST GOLD MINES LIMITED AND HARVEY BLANCHARD GROUP
A Gamma-Ray Spectrometer Survey was flown over this
Company's claims and extensive bulldozing and trenching were
carried out on claim number 438429. Samples were taken and
assayed for Copper and Gold. The survey was flown over claims
number 469557, 469558, 469561, 469562, 469556, 469559, 469560,
468563, 438428, 438427, 438426, 438429, 438430, 438432,
438433, 438434, 471136, 471137, 471138, 471139, 471^10^471141,
471142, 471143, 471144, 471145, and 438431. f O"1 l\~~~yThe present report covers the data and results of
this survey and additional prospecting and sampling of sulphide
gold occurrences with the results indicated herein.
The Harvey Blanchard Group are to be transferred
to Canadian Crest Gold Mines Ltd. - hence, they are
reported as one group.
PROPERTIES
The properties are located in the north-east corner
of Yeo Township and the north-west section of Chester Township
and approximately sixteen miles south-west of the town of
Gogama.
GEOLOGY
The structural strike of the rocks in the area
trends east and west. The northern section of the Andersen Groupe
is covered by sediments of Shistose Conglomerate and Arkose,' N
possible Rideout Series. The Mcvittie Group, Baxter Group,
-4-
and Canadian Crest Gold Mines Group are covered by Granitic
Quartz Porphyry bodies, which are reported to be conformable
and locally appear to play a structural role in the locali
zation of the gold bearing sulphide deposits.
Considerable fracturing has occurred, both within
and along the sedimentary porphyry contacts. In many
cases the fracturing is filled with Chalcopyrite and Sulphides.
Prospecting by all parties is being carried out in the larger
sulphide bearing shear zones and in the areas of intense
fracturing.
ANDERSEN GROUP OF CLAIMS
MAGNETOMETER SURVEY AND RADIOMETRIC SURVEY
An Airborne Magnetometer Survey was completed to
check the responses over the small sulphide shear zones and
to see if any large sulphide shear zones may exist. It has
also been ascertained that the mineralized sediments gave a
400-500 gamma increased response.
INSTRUMENT USED
Airborne Magnetometer M-123, Barringer Toroidal
104 Series, non-directional and noise-cancelling Hewitt-Packard
model 7155, continuous strip recorder. A Cessna 180 CF-PKL
was used to fly the survey.
Gamma-Ray Spectrometer Type ASP-5 Serial #805113
Serial #861128, Scintrex GIS-2 Gamma-Ray integrating spec
trometer, CPS, 0.90 Energy Discrimination Setting, ASP-5
5" x 4" NAI TI Crystals.
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THE SURVEY
Both surveys consisted of lines north to south,
south to north to cross the structure. Flight lines were
spaced at 660 foot intervals and an altitude of 250 feet
was maintained. Magnetometer control of direction was by
Auto-Pilot Gyro Compass and excellent topographical control
points. Readings were recorded every 12 seconds with an
accuracy of l 10% of ambient field. Fiducial points are
indicated on maps.
GENERAL PROSPECTING
Detailed prospecting was carried out on claims
number 472 ,918 and 472 971.
l/An areaM50--feet wide by. 300 f^eet long in minera
lized schistosed sediments was sampled at thirty foot inter
vals across the zone for 120 feet of strike length. ^S
As the results of this preliminary work are encoura
ging, more work is recommended within the airborne magnetometer
anomalous area.
\/ Results of sampling;
#9990 - across 30 ft. = AU .055
#9991 - across 30 ft. = AU .09
#9992 - across 30 ft. = AU .16
#9923 - across 4 ft. = AU .71
RADIOMETRIC SURVEY
This survey was carried out to prospect and check
-7-
above background was encountered. Considerable exploration
has been carried out on this group. The exploration has
consisted of drilling, trenching, clearing of an open pit,
sinking of a new two compartment shaft to a depth of
150 feet. All surface facilities, including head frame, hoist,
workmen's quarters and a 70 TPD Concentrating Mill are on
site and gold production is due to commence in about 30 days.
A total of 10.4 Miles of Gamma-Ray Spectrometer
Survey was flown over these claims with inconclusive results.
CANADIAN CREST GOLD MINES LIMITED
A total of 2,1 Miles of Gamma-Ray Spectrometer Survey
was flown over these claims. No results above backgroundV
were encountered. Considerable trenching on claim #438429
has exposed a vein 4 ft. to 6 ft. wide containing high copper
and gold values. Analysis of grab samples averaged S-9% CuH
and .24*1; Au. Canadian Crest Gold Mines Limited is currently
producing and milling 75 TPD from a vein located on strike
and approximately one mile east of this work.
The radiometric work was done on all Claim Groups
to try and locate the source of some radioactive float found
along the Mollie River on the Canadian Crest patented claims.
Results of both magnetics and radiometrics indica-
.ted on enclosed maps.i
EDWARD J. BLANCHARD
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the area for possible radioactivity. Results over the
Andersen Group were inconclusive with no appreciable radio
activity over background found. Since there appear to be
various phases of the porphyry, the radiometric survey was
carefully studied to see if the more acid phases of the
porphyry could be outlined. Results of this were incon
clusive.
CONCLUSIONS
ANDERSEN GROUP
The higher magnetics indicated as 300 gammas or
better on the enclosed maps, appear to indicate the presence
of the mineralized sediments. Both airborne magnetics and
ground mapping coincide. The anomaly on the south section
of the Andersen Group is probably also a sediment pendent
from the main band which crosses the township on the north
from east to west.
Additional prospecting, stripping and trenching
should be directed to these anomalous zones, as the current
work and results are located within the sediments and
within the anomalous zones. This should provide the best
prospecting ground for future work.
BAXTER MINERALS GROUP
Only airborne Gamma-Ray Spectrometer Survey was
carried out over this Group of claims. No radioactivity
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Ministry (
OntarioGEOPHYSICAL - GE
TECHNICAL41P12SWeaB3 2 .3181 CHESTER 300
TO BE ATTACHED AS AN APPENDIX TO TECHNICAL REPORTFACTS SHOWN HERE NEED NOT BE REPEATED IN REPORT
TECHNICAL REPORT MUST CONTAIN INTERPRETATION, CONCLUSIONS ETC.
Type of Survey(s). Township or Area. Claim Holder(s)_
Yeo and Chester Townships J.P. Mcvittie
Erana Mines LimitedSurvey Company- Author of Report. Address of Author 106 Fielding Rd. Copper Cliff Ont.
Edward J. Blanchard
Covering Dates of Survey.
Total Miles of Line Cut —
October 8 and 9, 1979(linecutting to office)
SPECIAL PROVISIONS CREDITS REQUESTED
ENTER 40 days (includes line cutting) for first survey.ENTER 20 days for each additional survey using same grid.
Geophysical—Electromagnetic.—Magnetometer_—Radiometric———Other——————
DAYS per claim
Geological.Geochemical.
AIRBORNE CREDITS (Special provision credits do not apply to airborne survey i)
* Magnetometer. .Electromagnetic. . Radiometric 23(enter days per claim)
December 28,Author of Report or Agent
Res. Geol.Previous Surveys
File No. Type
Qualifications.
Date Claim Holder
MINING CLAIMS TRAVERSED List numerically
'(prefix)' (number)
..P....39.3...JS.Q2.. P 393 607
P 393 609i****t*t****t****f*i****i
P 393 6 10 i
TOTAL CLAIMS.
GEOPHYSICAL TECHNICAL DATA
GROUND SURVEYS -- If more than one survey, specify data for each type of survey
Number of Stations _________________________Number of Readings . Station interval ____________________________Line spacing —^.———. Profile scale___________________________________________
• t
Contour interval.
ZC
2O
N2 H
Instrument ^————————Accuracy — Scale constant.
Diurnal correction method.Base Station check-in interval (hours). Base Station location and value ___
O Instrument
25S1od
S
Tnil rnnfignratinn
flnil separafinn
Arm ra r y
Method: CH Fixed transmitter D Shoot back O In lineFrprmpnrv
n Parallel line
1
Parameters measured.
Instrument.
Scale constant.Corrections made.
Base station value and location.
Elevation accuracy.
Instrument ____________________.——————————————————————————— Method D Time Domain D Frequency Domain
Parameters - On time ____________________________ Frequency —————— Off time ___________________________ Range.— Delay time ,̂ ^^————————————^^-^————— Integration time _____________________
Power.Q u.Electrode array.Electrode spacing . Type of electrode
SELF POTENTIAL
Instrument.——^^———————..^————.—-—-——.-—.————.-..^—...———— Range.Survey Method .——^—-—-——-——^———^^-.—-———^——.^^--.————.——————
Corrections made.
RADIOMETRICInstrument Type ASP-5 Ser. #805113 Ser. #801128 Scintrex GIS-l Gamma-Ray,. . , cPS Integrating Spectrometer Values measured uro.^——^——————.—————...^—...——.—.——.—-J:_____ ———^——Energy windows (i™i.) -90 Energy Discrimination
Height of instrument_____200 '___________________Background Count 120 CPM Size of detector________ASP-5 5" x 4" NAI TI Crystals________________ Overburden__________Light, numerous outcrops____________________
(type, depth — include outcrop map)
OTHERS (SEISMIC, DRILL WELL LOGGING ETC.)
Type of survey————————————————————————————————————————————————————Instrument. Accuracy—Parameters measured.
Additional information (for understanding results).
AIRBORNE SURVEYSType of survey(s)_______Gamma-Ray SpectrometerInstrument(s) ________GIS-2 Integrating Spectrometer
* ' i i f f t * . . f . . .\(specify for each type of survey) Accuracy____________________
(specify for each type of survey) Aircraft used__________Cessna 180 CF-PKL-————
Sensor altitude__________200Navigation and flight path recovery m.thnH Gyro control - Auto pilot - topography guides
Aircraft altitude ________ 250' ___________________ Line Spacing —— 1/8 mile2 3 Miles flown over total arpa 5_____________________Over claims only—I—
GEOCHEMICAL SURVEY - PROCEDURE RECORD
Numbers of claims from which samples taken.
Total Number of Samples. Type of Sample.
(Nature of Material)
Average Sample Weight——————— Method of Collection————————
Soil Horizon Sampled. Horizon Development. Sample Depth———— Terrain————————
ANALYTICAL METHODSValues expressed in: per cent
p. p. m. p. p. b.
a aD
Cu, Pb,'-.I.Li :
Others—
Zn, Ni, Co, Ag, Mo, As.-(circle)
Field Analysis (.
Drainage Development———^—^———— Estimated Range of Overburden Thickness.
Extraction Method. Analytical Method- Reagents Used——
Field Laboratory AnalysisNo. -————^————
SAMPLE PREPARATION(Includes drying, screening, crushing, ashing)
Mesh size of fraction used for analysis —^-——
Extraction Method. Analytical Method. Reagents Used ——
Commercial Laboratory (. Name of Laboratory—— Extraction Method- Analytical Method —— Reagents Used ————-
.tests)
.tests)
.tests)
GeneraL General.
Ontario
Ministry of Natural Resources
GEOPHYSICAL - GEOLOGICAL - GEOCHEMICAL TECHNICAL DATA STATEMENT
File.
TO BE ATTACHED AS AN APPENDIX TO TECHNICAL REPORTFACTS SHOWN HERE NEED NOT BE REPEATED IN REPORT
TECHNICAL REPORT MUST CONTAIN INTERPRETATION, CONCLUSIONS ETC.
Type of Survey(s) Gamma-Ray Spectrometer (Radiometric)
Township or Are, ~~ Claim
and Chester Townships
Baxter Minerals Limited
Survey Company Erana Mines Limited___________ Author of Rppnrt Edward J. Blanchard___________ Address of A l .thnr 106 Fielding Rd. Copper Cliff Ont,
Covering Dates of Survey-——-
Total Miles of Line Cut ^——-^(linecutting to office)
SPECIAL PROVISIONS CREDITS REQUESTED
ENTER 40 days (includes line cutting) for first survey.ENTER 20 days for each additional survey using same grid.
Geophysical—Electromagnetic.—Magnetometer-——Radiometric———Other—————
DAYS per claim
X
Geological.Geochemical.
/AIRBORNE CREDITS (Special provision credit! do not apply to airborne lurveyi)
lagnetometer. .Electromagnetic. . Radiometric 23(enter day* per claim)
DATE:. December 28Author of Report or Agent
Res. Geol.. .Qualifications.Previous Surveys
File No. Type Date Claim Holder
MINING CLAIMS TRAVERSED Lilt numerically
'(prefix)'
P 393 6 05
P 393 6 06
P 393 601
P 393 6 03
P 393 6 04
P 472 5 08
P 472 5 09
P...472. 510.
P 393 6 08
(number)
• M
l
TOTAL CLAIMS.
GEOPHYSICAL TECHNICAL DATA
GROUND SURVEYS — If more than one survey, specify data for each type of survey
Number of Stations ___________________________Number of Readings .
Station interval ______________________________Line spacing —————
Profile scale _________________,_________________________Contour interval.
l
O
N
Instrument .
Accuracy — Scale constant, Diurnal correction method.Base Station check-in interval (hours).
Base Station location and value ——^—
Instrument1— 1
25qQc*
w w
Coil configuration
Coil separation .
Arrnrary
Method: d Fixed transmitter d Shoot back d In lineFrequency
(specify V.L.F. station)
d Parallel line
—————— iParameters measured.
Instrument,Scale constant.Corrections made.
Base station value and location .
Elevation accuracy.
Instrument ———-——————————-—-——-—^——.^^^^^—-—.—.———.—..——..——Method D Time Domain D Frequency Domain Parameters — On time ____________________________ Frequency ^———
— Off time ___________________________ Range.— Delay time ——^^———-—-——-——-.———.————
— Integration time _____________________Power -Electrode array — Electrode spacing , Type of electrode
SELF POTENTIAL
Instrument_________________________________———^^ Range. Survey Method ________________________________.——^———————-
Corrections made.
RADIOMETRICInstrument Type ASP-5 Ser. #805113 Ser. #801128 Scintrex GIS-1 Gamma-Ray Values measured CPS________________________Integrating Spectrometer Energy windows (levels) .90 Energy Discrimination________________________
Height of instrument_____200 '___________________Background Count 120 CPM_______ Size of detector_________ASP-5 5" x 4" NAI TI Crystals__^^______^^_____Overburden__________Light, numerous outcrops
(type, depth — include outcrop map)
OTHERS (SEISMIC, DRILL WELL LOGGING ETC.)lType of survey-^—^——————--—-—-—---——-—————————-———
Instrument ——--.-.—————————————.^^-^——^———————--—-
Accuracy________^^_^______^_________________Parameters measured.
Additional information (for understanding results).
AIRBORNE SURVEYSType of survey(s)_______Gamma-Ray SpectrometerInstrument(s) ________GIS-2 Integrating Spectrometer
\ * i i f f t , f \(specify for each type of survey) Accuracy^^^^^^^^——^——————-——
(specify for each type of survey)
Aircraft used__________Cessna 180 CF-PKL—————
Sensor altitude_________200Navigation and flight path recovery mpthnH Gyro control-Auto pilot-topography guides
Aircraft altitude________250'___________________Line Spacing 1/8 mile————————Miles flown over total area 1 d ^ d____________________Over claims nnly 5 . 2
GEOCHEMICAL SURVEY - PROCEDURE RECORD
Numbers of claims from which samples taken.
Total Number of Samples. Type of Sample.
(Nature of Material)
Average Sample Weight—————^—
Method of Collection—^——————
Soil Horizon Sampled. Horizon Development. Sample Depth————. Terrain^———————
Drainage Development————————————
Estimated Range of Overburden Thickness.
ANALYTICAL METHODS
Values expressed in: per centp. p. m. p. p. b.
D O D
Cu, Pb, Zn, Ni, Co, Ag, Mo, As,-{circle)
Others.————--—.——-—....-.....-.——Field Analysis (..
Extraction Method. Analytical Method- Reagents Used——
Field Laboratory Analysis
No. ———————^——
SAMPLE PREPARATION(Includes drying, screening, crushing, ashing)
Mesh size of fraction used for analysis ——-—.
Extraction Method. Analytical Method . Reagents Used——.
Commercial Laboratory (- Name of Laboratory—
Extraction Method——
Analytical Method —— Reagents Used ————
.tests)
.tests)
.tests)
GeneraL General.
Ontario
Ministry of Natural Resources
GEOPHYSICAL - GEOLOGICAL - GEOCHEMICAL TECHNICAL DATA STATEMENT
File.
TO BE ATTACHED AS AN APPENDIX TO TECHNICAL REPORTFACTS SHOWN HERE NEED NOT BE REPEATED IN REPORT
TECHNICAL REPORT MUST CONTAIN INTERPRETATION, CONCLUSIONS ETC.
Type of Siirvey(s) Gamma-Ray Spectrometer (Radiometric)Township or Area Chester Township——-—————— Claim Holder(s) Canadian Crest Gold Mines Ltd.
Erana Mines Ltd.Survey Company- Author of Report. Address of Author. Covering Dates of Survey.
Total Miles of Line
Edward J. BlanchardFielding Rd. Copper Cliff Ont. October 8 and 9 f 1979
(linecutting to office)
SPECIAL PROVISIONS CREDITS REQUESTED
ENTER 40 days (includes line cutting) for first survey.ENTER 20 days for each additional survey using same grid.
Geophysical—Electromagnetic.—Magnetometer——Radiometric———Other——-——
DAYS per claim
Geological.Geochemical.
AIRBORNE CREDITS (Special provision credits do not apply to airborne turveyi)
Magnetometer. .Electromagnetic. . Radiometric 23
DATE:,Dec. 28 1979
(enter days per claim)
SIGNATURE:.Author of Report or Agent
SRes. Geol.. .Qualifications.Previous Surveys
File No. Type Date Claim Holder
b
MINING CLAIMS TRAVERSED List numerically
'(prefix)'
P 438426
P 438427
P 438428
P 438429
P 438430
P 438431
P 438432
P 438433
P 438434
P 469556
P 4f39557
P 469558
P 469559t
P 469560
P 469561
P 469562
..P..469.56.3.
P 471136
P 471137
P 471138
(number)
P 471139
P 471140
P 471141
P 471142
P 471143
P 471144
P 471145
TOTAL CLAIMS. 27
GEOPHYSICAL TECHNICAL DATA
GROUND SURVEYS - If more than one survey, specify data for each type of survey
Number of Stations _________________________Number of Readings
Station interval ______________________________Line spacing ———-
Profile scale—-————^—-—^-^^^^^—-——.——.^^^^^—————————————-
C
O
Contour interval.
Instrument ——
O
Accuracy — Scale constant.
Diurnal correction method.Base Station check-in interval (hours). Base Station location and value ———.
u
z;O
1o5 Zw
Instrument
Tnil rnnfig^ratinn
Coil separation
Arrnrary
Method: CD Fixed transmitter CD Shoot back CD In lineFrennpnry
CD Parallel line
1
Parameters measured.
InstrumentScale constantCorrections made.
Base station value and location
Elevation accuracy.
Instrument
zyLJ5tt *k— i
0QM HQ7 3
HbStrwai
Method D Time Domain CD Frequency DomainParamptprs - On timp Frequency
- Off time Range
— D^l^y timp
— Intpgratinn timp
Pnwer ^
Electrode array , ,,. ,,. ...,. ,.,..,. ...,,,Electrode spacing ,. ,. — , ,. .
Tvne of electrode ,, ,.
SELF POTENTIAL
Instrument——^^^———^^—-————-^———^—.—...^—^——...—.— Range. Survey Method ———————^——————————.——.^—.....————..—.———.—--.^—.
Corrections made.
RADIOMETRICinstrument Type ASP-5 Ser. #805113 Ser. #801128 Scintrex GIS-1 Gamma-Ray Values measured CPS_________________________Integrating Spectrometer Energy windows (l*™!*) -90 Energy Discrimination ——,,——^,————,.^——^
Height of instrument ———..—200 '__________________Background Count 120 CPM_____ Size of detector_________ASP-5 5" x 4" NAI TI Crystals________________________Overburden—-———.—.--—Light, numerous outcrops
(type, depth - include outcrop map)
OTHERS (SEISMIC, DRILL WELL LOGGING ETC.)
Type of survey———————^-^—————^^^.—^^——--^^^^^———.————Instrument ——————-—-————————.——————^^——-—————Accuracy^..—^,.——.^-——..-....————^—^—..—..—.^^^....—...—^.Parameters measured.
Additional information (for understanding results).
AIRBORNE SURVEYSType of survey(s)—————Gamma-Ray SpectrometerInstrument(s) ________GIS-2 Integrating Spectrometer
(specify for each type of turvey) Accuracy———^^^-^————.—^—^——.
(specify for each type of survey) Aircraft used__________Cessna 180 CF-PKL^^————
Sensor altitude_________200Navigation and flight path recovery mpthnd Gyro control-Auto pilot-Topography guides
\__________________________________________________________________
Aircraft altitude________250 '___________________Line Sparing 1/8 mile_________O T
Miles flown over total area________________________Over claimsnnly 10.5__________
GEOCHEMICAL SURVEY - PROCEDURE RECORD
Numbers of claims from which samples taken.
Total Number of Samples. Type of Sample.
(Nature of Material)Average Sample Weight-————^——
Method of Collection————-——
Soil Horizon Sampled. Horizon Development. Sample Depth————— Terrain—————————
Drainage Development————-———-^—— Estimated Range of Overburden Thickness.
ANALYTICAL METHODS
Values expressed in: per cent p. p, m. p. p. b.
a aa
Cu, Pb,
Others—
Zn, Ni, Co, Ag, Mo, As.-(circle)
Field AnalysisExtraction Method. Analytical Method- Reagents Used——
Field Laboratory AnalysisNo. —————————
SAMPLE PREPARATION(Includes drying, screening, crushing, ashing)
Mesh size of fraction used for analysis————
Extraction Method.
Analytical Method .
Reagents Used——-
Commercial Laboratory (- Name of Laboratory—
Extraction Method—— Analytical Method ——
Reagents Used —————
.tests)
.tests)
.tests)
General. General.
Ontario
Ministry of Natural Resources
GEOPHYSICAL - GEOLOGICAL - GEOCHEMICAL TECHNICAL DATA STATEMENT
FUe.
W
Type of Sur Township o Claim Hold*
Survey Con- Author of F Address of j Covering Dz
Total Miles
TO BE ATTACHED AS AN APPENDIX TO TECHNICAL REPORT FACTS SHOWN HERE NEED NOT BE REPEATED IN REPORT
TECHNICAL REPORT MUST CONTAIN INTERPRETATION, CONCLUSIONS ETC.
vev/,5) Gamma-Ray Spectrometer (Radiometric)r Area Yeo and Chester Townships*r(^ Neals Andersen
Erana Mines Limitedteport Edward J. BlanchardA , ]fhnr 106 Fielding Rd. Copper Cliff Ont.
iles of Survey QctObor" fi anr? Q. 1Q7Q
of I,ine Cut
SPECIAL PROVISIONS CREDITS REQUESTED
J ENTER 40 days (includes ^1 line cutting) for first
1 survey.ENTER 20 days for each additional survey using same grid.
^\L AIRBORNI /j Magnetome
De DATE:
OFFICE USE ONLY
Res. Geol.
(linecutting to office)
DAYS- , . . per claim Geophysical—F.Wtrnmagnptir
—Radiometric . ,, . . *Oth^r
r.,rt ,*™a i
"j CREDITS (Special provision credits do not apply to airborne surveys)
ter F.lfvtromagnetir Rarfinmptrir *3(enter days per claim)
Author of Report or Agent
Qualifications ' ** ' *^
Previous SurveysFile No.
o...............
Type Date Claim Holder
MINING CLAIMS TRAVERSED List numerically
(p'refYxj (number)
P 472991 P 472985
P 472992 P 472984
P 472993 P 473002
P 472962 P 473003
P 472994 P 472986
P 472998 P 472987
P 472963 P 525230
P 472995 P 472989
P 472970 P 472988
P 472971 P 4 72990
P 472972 P 473004
P 472996
P 472997
P 472978
P 472979
P 472999
P 473005
P 473006 j
P 473007
P 473009
P 473008
P 473000 P 4 7 ?98.9
'n A *7 O O O 1
TOTAL CLAIMS
GEOPHYSICAL TECHNICAL DATA
GROUND SURVEYS — If more than one survey, specify data for each type of survey
Number of Stations ____________________ Nnmher of Readings .
Station interval ____________________________Line spacing -—---——.
Profile scale______________________________________________Contour interval—.
Instrument —--—
cj
IS
go
N
2C/3W
mAccuracy — Scale constantDiurnal correction method.Base Station check-in interval (hours). Base Station location and value -—^
Instrument
Coil configuration —-—-———---——————..^^^—^^^—-—.^—....——.-...—.—--...^—.^^.^^—,^.—.—-——.——.Coil separation —-———^————-—————.——-——..—....—-.....————.———.^-^—.^—^—..^^—^—.Accuracy —.--—-^^-^^-——————.^^^^—-——---.-————.—----——^^-^——^.—--—--————--———-————Method: O Fixed transmitter CD Shoot back CI In line CD Parallel line
Frequency——^—^^^—^—-—-————--————.--——^—^^——(specify V.L.F. station)
Parameters measured^-^—^——-—^^^^——.^———.—.——.—-——
Instrument
Scale constantCorrections made.
Base station value and location
Elevation accuracy.
Instrument _____________________________________________ Z Method D Time Domain D Frequency Domainc ———P Parameters - On time ____________________________ Frequency ̂ ———<
— Off time ___________________________ Range.
— Delay time ———.——-—^——-—.^^^^-^———--^— Integration time ————.-———..————————.—-—.—.
Power.u; O array.
Electrode spacing . Type of electrode
SELF POTENTIAL
Instrument-——^^^——————^^—-—————-————————^—^——..———— Range.Survey Method _________________________________,_________
Corrections made.
RADIOMETRICInstrument Type ASP-5 Ser. #805113 Ser. #801128 Scintrex GIS-1 Gamma-RayValups measurer! CPS
Energy windows (levels)Height of instrument.
Size of detertor
Overburden
Integrating Spectrometer0.90 Energy Discrimination Setting200' R.rtgronnrf r^nnt 120 CPM
ASP-5 5" x 4" NAI TI CrystalsLight, numerous outcrops
(type, depth — include outcrop map)
OTHERS (SEISMIC, DRILL WELL LOGGING ETC.)
Type of survey -^^——————————^——.————Instrument ̂ ——-—-———-^^-———-———^^^^-^^^ AccuracyParameters measured.
Additional information (for understanding results).
AIRBORNE SURVEYS
Type of survey(s)______Gamma-Ray SpectrometerInstrument(s) ________GIS-2 Integrating Spectrometer
* ' i ****. f\(specify for each type of survey)
Accuracy___________________(specify for each type of survey)
Aircraft used__________Cessna 180 CF-PKL—————
Sensor altitude_________2QQ'Navigation and flight path recovery ™*-thoH Gyro control - Auto pilot - topography guides
l________________________________________________________________________Aircraft altitude_________250'__________________Line Sparing 1/8 mile————..——^ Miles flown over total arpa 45____________________Over claims only 22. 3_____________
GEOCHEMICAL SURVEY - PROCEDURE RECORD
Numbers of claims from which samples taken.
Total Number of Samples. Type of Sample.
(Nature of Material)
Average Sample Weight——————— Method of Collection—^——^—^
Soil Horizon Sampled. Horizon Development. Sample Depth————— Terrain_________
Drainage Development———————————— Estimated Range of Overburden Thickness.
ANALYTICAL METHODSValues expressed in: per cent
p. p. m. p. p. b.
DnD
Cu, Pb,''v.i-: f ' Others—
Zn, Ni, Co, Ag, Mo, As.-(circle)
Field Analysis (.Extraction Method. Analytical Method- Reagents Used ——
Field Laboratory AnalysisNo. ___________
SAMPLE PREPARATION(Includes drying, screening, crushing, ashing)
Mesh size of fraction used for analysis ——^—
Extraction Method. Analytical Method . Reagents Used——
Commercial Laboratory (- Name of Laboratory-— Extraction Method- Analytical Method —— Reagents Used ——-.—
.tests)
.tests)
.tests)
General. General.
ntario
Ministry of Natural Resources
GEOPHYSICAL - GEOLOGICAL - GEOCHEMICAL TECHNICAL DATA STATEMENT
FUe.
TO BE ATTACHED AS AN APPENDIX TO TECHNICAL REPORTFACTS SHOWN HERE NEED NOT BE REPEATED IN REPORT
TECHNICAL REPORT MUST CONTAIN INTERPRETATION, CONCLUSIONS ETC.
Type of Survey(s) Township or Area __*X Claim Holder(s) Naala
Survey Company K lfftTm MillOB Lf!d. i —————————^^——————
Author of Report Ed. Blanqhard—^—^—^^———————-———Address of Author RR*2 P Site 36, Box S, Sudbury f Qnfc Covering Dates of Survey August 16, 1979———————————
(linecutting to office)
Total Miles of Line Cut ————.^—.^-—.^——.-—.—^^———.—-.
SPECIAL PROVISIONS CREDITS REQUESTED
ENTER 40 days (includes line cutting) for first survey.ENTER 20 days for each additional survey using same grid.
Geophysical—Electromagnetic.—Magnetometer——Radiometric———Other——————
DAYS per claim
v l/ AIRBORNE CREDITS (Special provision credits do not apply to airborne lurveyi)^W l/___ *""1"^^H^^^^*M^
___Radiometric ————"yK MagnetometerJ!L-Lii2ilectromagnetic ' J \.S}bfJ (enter dayi per claim)
n.™. Dec. 28, 197g,r-MATIIB|,,
z o
8Mb b O
Res. Geol.. . Qualifications. 7 v*'
Previous Surveys File No. Type Date Claim Holder
B...4329.7.0..........P..
p 479071 ntt t * fm tit mm m *f *te * *****t*t tfi t *
Author of Report or Agent
MINING CLAIMS TRAVERSED List numerically
(prefix) (number)
P...4.7 .........P...4.720.84-.
y 4 72A07 pi4**tT*AM**^**tf*******t****t*i
•****J7**
P 472918
i
H tf
TOTAL CLAIMS.
GEOPHYSICAL TECHNICAL DATA
GROUND SURVEYS — If more than one survey, specify data for each type of survey
Number of Stations ___________________________ Number of Readings -
Station interval ______________________________ Line spacing -^—^-^
Profile scale —-—..———-^—-—.—-^^^^^^^^^^^-———————.^-^^^^^^^-
Contour interval
c
O
Sw w
Ht—(I
^,fii:D
z;(-SWk-l
H ^N2 H
o*
WoDa z;
on
W
Instrument
Accuracy — Scale constant.
Diurnal correction method.
Base Station check-in interval (hours).
Base Station location and value ——-
Instrument
Coil configuration^-4
Coil separation ——"5- Accuracy ———^
Method: D Fixed transmitter D Shoot back D In line D Parallel line Frequency————————————^—.^———
(specify V.L.F. station)
Parameters measured.
Instrument.
Scale constant
Corrections made.
Base station value and location .
Elevation accuracy.
Instrument ________________________________________________ Method CI Time Domain D Frequency Domain
Parameters — On time _________:__________________ Frequency ^—^—
— Off time ____________________________ Range ————————
— Delay time ,—————.^^^^^—.—^—.———.———-
— Integration time.
Power.
Electrode array ————————————————————————————————————————————————————————————
Electrode spacing ——————————————————————————————————————————————————————————
Type of electrode _____.——————————————————————————————————————————————————————-^
SELF POTENTIAL
Instrument_________________________________________ Range.Survey Method ———————^^——^^^-^^^^—.——————————.——™——...,—..—.
Corrections made.
RADIOMETRIC
Instrument___Values measured .Energy windows (levels)——-——^^-^-^———————-—.—.^-.^.—^.——————-.—.-.,-——.
Height of instrument______________________________Background Count. Size of detector——^—^——-———————^^^^—.^^^^^-^^^^—^^—.^-——..—————Overburden —-^^^^^^^^^^-^—^——-—-.—....———.——..——..—.——.——.—————
(type, depth — include outcrop map)
OTHERS (SEISMIC, DRILL WELL LOGGING ETC.)
Type of survey—--^^-————————————————
Instrument -——————————^^—^———————Accuracy.——^.——.^-—————-—.——^-————^^^—Parameters measured.
Additional information (for understanding results).
AIRBORNE SURVEYS
Type of survcy(s)|jfcbfiggg6Mggiift!ff||gj:gr Sensor lg Toroidal 104 Series non-direuUonalInstmment(s) MQ 123 Airborne Magnetometer Barringer Research with Senael and —
Hewitt-Packard Modelpef M&iM&NSSiM strip recorderAccuracy., 10t of Ambient Fiald jl, O
Aircraft used Cessna 180 CF-PKLSensor aliifnHp 2 50 ft.
Navigation and flight path recovery method QyrOBCOpO Topography Control AutO Pilot:
Aircraft altitude 3 30 ffc.,^^————.—^——-^——————— Line Spacing.
Miles flown over total area_________41________________Over claims only
o. i
GEOCHEMICAL SURVEY - PROCEDURE RECORD
Numbers of claims from which samples taken.
Total Number of Samples. Type of Sample.
(Nature of Material)
Average Sample Weight——————— Method of Collection.^—^————.
Soil Horizon Sampled. Horizon Development. Sample Depth———— Terrain————-^—^—
GeneraL
ANALYTICAL METHODSValues expressed in: per cent
p. p. m. p. p. b.
D Dn
Cu, Pb,
Others—
Zn, Ni, Co, Ag, Mo, As.-(circle)
Field Analysis (. .tests)
Drainage Development——————————— Estimated Range of Overburden Thickness.
Extraction Method. Analytical Method- Reagents Used——
Field Laboratory AnalysisNo. .———————-— .tests)
SAMPLE PREPARATION(Includes drying, screening, crushing, ashing)
Mesh size of fraction used for analysis—-——
Extraction Method— Analytical Method — Reagents Used———
Commercial Laboratory (- Name of Laboratory—— Extraction Method—— Analytical Method—— Reagents Used ——^—
.tests)
General.
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