DEEP-NR23-MMI Survey Results -31Oct2019
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For Immediate Release
DEEPROCK RESULTS OF A MOBILE METAL ION (MMI) SOIL SURVEY CARRIED OUT
ON RALLEAU GOLD/VMS PROJECT
VANCOUVER, CANADA, October 31 , 2019 – DeepRock Minerals Inc. (the “Company”) (CSE Symbol:
“DEEP”), announces the results of a mobile metal ion (MMI) soil survey carried out on its important
Ralleau Gold/VMS Project.
SURVEY RESULTS
The survey successfully demonstrated that MMI-M partial extractions on samples collected from glacially
derived soils and overburd en can isolate precious - and base -metal anomalies on the Property. The
sample collection protocols, and the materials sampled were suitable for the purposes of this survey, and
the analytical data quality was of high-quality and not a hindrance to anomaly definition. In addition, the
selected suite of MMI-M elements for this study has been successful in defining significant and base-metal
and precious-metal responses. The MMI e lement responses on the Project are presented as “Generally
Anomalous” to “Highly Anomalous” response ratio (RR) values. The response ratios of VMS style indicator
(“pathfinder”) elements, namely Ag, Ba, Mo, Pb and Zn, define a distinct elongated anomaly spatially
associated with historic EM conductors and magnetic response anomalies. The anomalies present on the
grid are likely more extensive than indicated given the limited extent of the sampling grid. Additional
sampling and MMI analyses could elucidate the nature of these anomalies a long strike. The coincidence
of elevated RR values of VMS pathfinder elements with linear Mag’ and EM anomalies suggests that they
are geologically associated with the Novellet Member, or with the contact between the Novellet Member
and local mafic volcanic rocks of the Urban Formation.
Based on those positive results, DeepRock plans to extend in 2020, this type of survey to the entire project.
BACKGROUND TO SURVEY
The summer 2019 Phase II exploration programme included a mobile metal ion (MMI) soil survey over a
linear coincident set of EM/Mag anomalies east of Lac Sheilann, where a 2007 stripping and channelling
program revealed Cu-Zn sulphide mineralization.
MMI™ is a proprietary analytical method developed by SGS th at measures concentrations of metal ions
that travel upward from mineralization to unconsolidated surface materials such as soil, till and sand. The
MMI method is especially well suited for deeply buried mineral deposits. Using soil sampling strategies,
sophisticated chemical ligands and ultra -sensitive instrumentation, SGS is able to measure these ions.
After interpretation, MMI data can indicate areas of anomalous concentrations of various assayed
elements, or analytes. SGS is the sole provider of MMI technology. According to SGS, the MMI analytical
process utilizes weak solutions of organic and inorganic compounds, rather than conventional aggressive
acid and cyanide -based digestion to extract target element content. MMI™ solutions contain st rong
ligands, which detach and hold the metal ions that are loosely bound to soil particles by weak atomic
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forces. This extraction does not dissolve the bound forms of the metal ions, so the metal ions in the
solution remain as the chemically active or “mo bile” component of the sample. Because these mobile,
loosely bound complexes are in very low concentrations, elemental determinations are made by
conventional, although state of the art versions, of Inductively coupled plasma - mass spectrometry (ICP-
MS) techniques, in this case ICP-MS Dynamic Reaction Cell™ (DRC II).
In the summer of 2019, a field crew collected soil samples from the survey grid area at Lac Sheilann.
Samples were collected at 100 m stations along 100 m spaced lines. The central part of the grid area was
found to be underlain by outcrop, sub -crop and boulder rich till, precluding sample collection at many
sites, so a second pass of sampling at 50 m spacing was made along lines away from this central grid area.
Samples were collected using a standard 1.2 m soil auger. Sample collection procedures adhere to SGS
protocols. Soil samples from the 2019 MMI survey were delivered to the SGS offices in Val -d’Or, QC and
were then processed at the SGS facility in Burnaby, BC. A total of 111 samples (in cluding 10 duplicates)
were collected from the grid area and assayed. Duplicate samples, analytical standards and blanks
inserted into the sample stream for quality assurance/quality control (QA/QC) purposes, ensured
analytical data accuracy and precision.
The dataset is marked by a number of elements that have numerous samples at or below the lower limit
of determination (LLD) that include As, Au, Bi, Cr, Hg, In, Mo, Pd, Pt, Sb, Sn, Ta, Te, and W. These elements
are typically less mobile than Cu, Pb, Zn and Ag, and their presence in measurable quantities in only a
small number of samples is testament to their very low mobility in the surficial/secondary environment.
Of the forty-two (42) elements assayed, eleven (11) were selected for statistical studie s (i.e., Ag, As, Au,
Ba, Bi, Cu, Mo, Pb, Sb, Sn and Zn).
The most responsive elements were Ag, Ba, Mo, Pb, and Zn, with Generally Anomalous to Highly
Anomalous samples distributed relatively evenly between the western and eastern parts of the sample
grid. These results are indicative for base-metal type mineralization. All responses for Au, along with the
best universal pathfinder elements for gold, namely As and Sb , are considered within the Background
range, except for two (2) Generally Anomalous Sb samples in the western part of the grid and one (1) Very
Anomalous Au sample (with the highest value of all samples) in the eastern part of the survey area. Except
for the single Very Anomalous gold sample, the results do not support the case for gold -mineralization
targets in the grid-area. Responses for Bi, Cu and Sn were the least anomalous of all elements assessed,
with only three (3) coincident Bi -Sn Generally Anomalous samples, and no Cu values above background.
There is a clear correlation between the magnetic response anomalies underlying the grid and the highest
results for the base-metal indicator elements.
ABOUT THE RALLEAU GOLD/VMS PROJECT
The Ralleau Gold/VMS project covers parts of Ralleau and Wilson townships, approximately 50 kilometres
east of Lebel -sur-Quevillon, in western Quebec. Lebel -sur-Quevillon is approximately 620 km north -
northwest of Montreal and 160 km northeast of the mining centre of Val d'Or.
The Ralleau Project is roughly rectangular, extending approximately 14 kilometres east -west and 4 km
north-south, and comprises 59 contiguous covering approximately 3,325 hectares.
Page 3 of 3 | DeepRock Minerals Inc. | #500, 666 Burrard Street, Vancouver, BC Canada V6C 3P6
The Ralleau Project lies within the Northern Volcanic Zone (NVZ) of the Abitibi Sub Province - part of the
Superior Province - in the western part of the Urban -Barry Greenstone Belt (UBGB). The mafic to felsic,
volcanic and volcaniclastic rocks that underlie the Project area are part of the basal, mafic -dominated
sequence which comprises massive, pillowed and breccia ted, tholeiitic basalt flows with local felsic and
sedimentary units. Apart from Proterozoic diabase dykes, all the rocks in the area are Archean. The NVZ
rocks in the region of the Project underwent regional amphibolite-facies metamorphism and have locally
retrograded to greenschist-grade. Rocks directly underlying the Project belong to the Urban Formation
and comprise mainly mafic to intermediate volcanic rocks with minor felsic volcanic and sedimentary
rocks. Data from historic exploration campaigns indicate that the Novellet Member, a dacitic to rhyolitic
felsic volcanic unit that underlies the central axis of the Project, is the best prospective target for massive-
sulphide deposits (VMS).
The principal geological control on mineralization on the Project is the association with the felsic volcanic
Novellet Member, which appears to host most of the historic pits and showings.
Christian Derosier, P.Geo., D.Sc., is the qualified person (QP) as defined in National Instrument 4 3-101
and, acting on behalf of DeepRock, has reviewed and approved the technical content of this news release.
About DeepRock Minerals Inc.
DeepRock Minerals is a dynamic Canadian mineral exploration company headquartered in Vancouver,
British Columbia. DeepRock’s primary focus is in acquiring and developing prime North American gold
and VMS type exploration/development mining projects; as well as existing processing and producing
mining operations of merit. DeepRock Minerals is managed by an experienced team of mining and
business professionals with more than 150 years of combined extensive operating and financial
experience and expertise. The shares of DeepRock Minerals Inc. trade on the Canadian Securities
Exchange (CSE) under the trading symbol “DEEP”.
Should you have any questions please feel free to contact the undersigned at any time at
ON BEHALF OF THE BOARD OF DIRECTORS OF DEEPROCK MINERALS LIMITED
Patrick D. O’Brien, ICD.D, MIoD
Director, CEO
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