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92 RESOURCES CORP. Successfully Completes Dense Media Separation Mini-­‐Pilot Plant and Produces ~40 kg of 6.11% Li2O Spodumene Concentrate from Hidden Lake

Drill Results Metallurgy & Processing

Suite 1400 – 1111 W. Georgia St.

Vancouver, BC, V6E 4M3

Tel: (778) 945 2950

www.92resources.com

Trading Symbol: TSX.V: NTY

OTCQB: RGDCF

Frankfurt: R9G2 (WKN: A11575)

92  RESOURCES  CORP.    

Successfully  Completes  Dense  Media  Separation  Mini-­‐Pilot  Plant  and  Produces  ~40  kg  of  6.11%  Li2O  

Spodumene  Concentrate  from  Hidden  Lake  

Vancouver,  January  10,  2018  –  92  Resources  Corp.  (the  “Company”)  (TSX.v:  NTY)  (OTCQB:  RGDCF)    (FSE:  R9G2)  

is   pleased   to   provide   an   update   on   the   metallurgical   program   for  the   Company’s  wholly   owned   Hidden   Lake  

Lithium  Project  (the  “Project”  or  “Property”),  Northwest  Territories.  The  Property  is  situated  within  the  central  

parts  of  the  Yellowknife  Lithium  Pegmatite  Belt,  along  Highway  4,  approximately  40  km  east  of  Yellowknife.    

The   Company   is   pleased   to   report   that  the   recently   announced  (see   news   release   dated   December   5th,   2017)  

dense  media  separation  (DMS)  mini-­‐pilot  plant  has  been  completed,  with  highly  encouraging  results.  A  total  of  

~400  kg  of  composited,  whole  rock  pegmatite  material  from  Hidden  Lake  (pegmatites  HL1,  HL3,  HL4,  and  D12)  

was  processed  during  the  pilot,  producing  over  40  kg  of  high-­‐grade  spodumene(1)  concentrate  averaging  6.11%  

Li2O.    

The   DMS  mini-­‐pilot   performed   in   line   with   expectations   as   indicated   from   the   recent   heavy   liquid   separation  

(HLS)  test  work,  whereby  high-­‐grade  concentrate  with  low  lithium  loss  to  the  tailings  fraction  was  demonstrated.  

The  test  work  continues  to  support  that  a  final  overall  concentrate  grade  of  6.0%  to  6.5%  Li2O  at  high  recovery  

(80-­‐85%)  is  achievable  using  low-­‐cost  and  conventional  processing  techniques.  

A  comparison  chart  of  the  HLS  vs  DMS  results  is  found  below  in  Table  1,  with  Figure  1  a  graphic  illustration  of  the  

combined  flotation  and  DMS  flowsheet.  

Table  1:  Lithium  HLS  and  DMS  Grade  (%  Li2O)  and  Recoveries  per  Fraction  

Fraction  

Heavy  Liquid  

Separation  

(HLS)  

Dense  Media  

Separation  

(DMS)  

Composite  Feed  Head  Grade     1.34%   1.36%  

Concentrate  Grade     6.29%   6.11%  

Concentrate  Recovery     56%   49%  

Middling  +  undersize  (-­‐0.85  mm)  Recovery     37%   43%  

Loss  to  Tailings   7%   8%  

2

The   assays   for   tantalum   from   the   various   DMS   product   streams   are   pending.   However,   once   received,   the  

deportment  of  the  Ta  will  be  better  understood  and  an  approach  for  recovery  further  evaluated.    

As  a  sufficient  amount  of  the  middling  fraction  is  now  ava ilable,  batch  flotation  and  locked  cycle  test  work  on  

the  combined  DMS  middlings  and  undersize  fraction  (-­‐0.85  mm)  will  be  completed  shortly.  This  will  provide  for  a  

complete  and  demonstrated  base  flowsheet  with  overall  grade  and  recovery  for  the  Project.  The  flotation  locked  

cycle   testing   will  provide  for  more  reliable   data,  as   it   effectively   mimics,   on   a   smaller   scale,   the   recirculating  

streams  of  a  flotation  pilot  plant  operation.  

The  Company  currently  has  two  applicable  flowsheet  approaches  for  the  recovery  of  lithium  bearing  minerals  at  

Hidden  Lake.  The  first,  involves  flotation  only  circuit,  where  bench  scale  test  work  has  demonstrated  high-­‐grade  

spodumene(1)  concentrate   (>6%  Li2O)   at   high   overall   recovery   (±80-­‐85%)   is   achievable.   The   second   involves   a  

combination  of  flotation  and  DMS,  with  work  to  date  strongly  indicating  a  similar  grade  and  recovery  profile  as  

that  of  flotation  only  approach.      

Although  high-­‐grade  concentrates  at  high  recovery  may  be  achievable  and  cost-­‐effective  using  only  flotation,  a  

combination   of   dense   media   separation   (DMS)   and   flotation   is   often   the   preferred   approach   for   spodumene  

recovery   from   pegmatite   for   a   variety   of   reasons  –  typically   more   cost   effective   to   operate,   easier   to   control,  

have  a  shorter  operational  start-­‐up  period,  as  well  as  having  overall  less  risk.  

Target  Flowsheet  and  DMS  Mini-­‐Pilot  Plant  

The  base  flowsheet  being  developed  for  the  Project  is  comprised  of  a  crushing  and  classification  circuit  with  the    

-­‐0.85   mm   fraction   set   aside,   and   the   +0.85   mm   fraction  processed   by  DMS.   This   produces   three   streams  –  

concentrate,  tailings,  and  a  middlings.  The  middlings  are  then  combined  with  the  -­‐0.85  mm  fraction,  set  aside  

earlier,  and  processed   by  flotation,   producing  a   second  concentrate   and   tailings.   The   flotation   concentrate   is  

combined   with   the   DMS   concentrate   to   produce   the   final   concentrate   and   overall   recovery.  This   flowsheet  is  

graphically  presented  below.    

3

Whole  

Ore  

Dense  Media  

Separa\on  

(+0.85  mm  frachon)  

Concentrate    

Concentrate  

Tailings  

Midlings  

Concentrate  

Final  Concentrate  

Tailings  

-­‐085  mm  

Frachon  

Flota\on  

Figure  1:  Target  flowsheet  for  the  Hidden  Lake  Project  

Whole  rock  channel  samples,  collected  from  the  recently  completed  2017  summer  field  program ,  were  used  as  

feed   material   for  DMS  pilot  plant.  The  work  is  being  completed  as  part  of  the  Phase  II  beneficiation  program,  

whereas   Phase   I   targeted   the   characterization   of   the   material.   The   highly  encouraging  results   of   the   Phase   II  

work   to   date   are  a  direct   result   of   the   coarse-­‐grained   nature   of   the   spodumene   and   its   favourable   liberation  

characteristics  as  indicated  from  the  Phase  I  work.  

All  test  work  is  being  completed  by  SGS  at  their  facility  in  Lakefield,  ON,  and  is  being  monitored  by  Dahrouge  

Geological  Consulting  Ltd.    

(1) Montebrasite,  a  common  lithium  phosphate  mineral,  forms  a  minor  component  of  the  spodumene  concentrate.  Lithium  from  both  

spodumene  and  montebrasite  has  been  demonstrated  extractable  at  high  recoveries.  

4

NI  43-­‐101  Disclosure  

Darren   L.   Smith,   M.Sc.,   P.   Geol.,   of   Dahrouge   Geological   Consulting   Ltd.,   a   Qualified   Person   as   defined   by  

National  Instrument  43-­‐101,  supervised  the  preparation  of  the  technical  information  in  this  news  release.  

About  92  Resources  Corp.  

92   Resources   Corp   is   a   modern   energy   solution   company,   focused   on   acquiring   and   advancing   strategic   and  

prospective  modern  energy  related  projects.  The  Company  currently  holds  three  principal  assets  in  Canada:  the  

Hidden  Lake  Lithium  Property,  NWT,  the  Corvette  Lithium  Property,  QC,  and  the  Golden  Frac  Sand  Property,  BC.    

The  Hidden  Lake  Lithium  Property  is  strategically  located  within  the  heart  of  the  Yellowknife  Pe gmatite  District  

with  2016  exploration  results  returning  1.90%  Li2O  over  9  m  and  grab  samples  up  to  3.3%  Li2O.  The  Property  is  

easily  road  accessible  and  its  proximity  to  infrastructure  provides  for  numerous  development  advantages.  

The  Corvette  property  consists  of  76  claims,  totalling  3,891  hectares,  situated  within  the  Guyer  greenstone  belt,  

which  is  also  a  favourable  geological  environment  for  gold  occurrences.  A  summer  2017  due  diligence  site  visit  

has   returned   samples   of   3.48%   and   7.32%   lithium   dioxide  from   spodumene-­‐bearing   pegmatite   exposed   at  

surface.    

The  Golden  Frac  Sand  Property  covers  more  than  a  4  km  length  of  the  Mount  Wilson  Formation,  which  consists  

of  high  purity,  white,  quartzite  and  friable  sandstones.  It’s  strategic  location  in  western  Canada  and  proximity  to  

infrastructure,   provides   competitive   access   to   the   oil   and   gas   markets   where   high-­‐quality   frac   sand   is   an  

essentially   input.   The   adjacent   Moberly   Silica   Sand   Mine,   owned   and   operated   by   Heemskirk   Canada   Ltd.,  

produces   a   number   of   high-­‐purity   products   and   as   of   February   2017,   became   subject   to   a   takeover   bid   by  

Northern  Silica  Corporation  valued  at  $42.3  million  AUD.  

For   further   information,   please   contact   Adrian   Lamoureux,   President   &   CEO   at   Tel:   778 -­‐945-­‐2950,   E-­‐mail:  

[email protected]  or  visit  www.92resources.com.  

On  Behalf  of  the  Board  of  Directors,  

“ADRIAN  LAMOUREUX”  

Adrian  Lamoureux,  President  &  CEO  

Neither  the  TSX  Venture  Exchange  nor  its  Regulation  Services  Provider  (as  that  term  is  defined  in  the  policies  of  the  TSX  Venture  Exchange)  

accepts  responsibility  for  the  adequacy  or  accuracy  of  this  news  release.    

Forward  Looking  Statements:  

Statements   included   in   this   announcement,   including   statements   concerning   our   plans,   intentions   and   expectations,   which   are   not  

historical  in  nature  are  intended  to  be,  and  are  hereby  identified  as,  “forward -­‐looking  statements”.  Forward-­‐looking  statements  may  be  

identified  by  words  including  “anticipates”,  “believes”,  “intends”,  “estimates”,  “expects”  and  similar  expressions.  The  Company  cautions  

readers   that   forward-­‐looking   statements,   including   without   limitation   those   relating   to   the   Company’s   future   operations   and   business  

prospects,   are   subject   to   certain   risks   and   uncertainties   that   could   cause   actual   results   to   differ   materially   from   those   indicated   in   the  

forward-­‐looking  statements.