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Rogue Resources Inc (2)
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Rogue Resources drills one m of 99.94% SiO2 in Quebec

2015-11-30 08:47 ET - News Release

Mr. John de Jong reports

ROGUE RESOURCES ANNOUNCES DRILL CORE ASSAYS RETURN UP TO 99.94% SILICA, DRILL PROGRAM EXPANDED TO 10,500 METERS, PEA AND NI 43-101 RESOURCE REPORT CONTRACT SIGNED

Rogue Resources Inc. has received high-purity silicon dioxide drill core assays of up to 99.94 per cent from the Lac de la Grosse Femelle silica project, located approximately 42 kilometres north of Baie-Saint Paul, Que., and four km northeast of Sitec's operating silica mine. These are some of the highest purity levels recorded by the company since drilling began in August of this year.

Drill program general update

The company's 7,500-metre drill program has been increased by 3,000 m to a total of 10,500 m. At present, 9,190 m has been drilled with the remaining program to be completed within the coming weeks. The additional 3,000 m of drilling will bring the drill spacing to 50 m intervals, allowing for more comprehensive and complete National Instrument 43-101-compliant resource and preliminary economic assessment reporting. Drilling continues to test the extent of quartzite units G and H, including their purity, depth, width and the length of extension below surface. The drill program is now scheduled to be completed in the second week of December and remains within budget. Drilling has identified the strike length of the G quartzite unit, and is firming up the average width as well as depth by way of 50- to 65-degree angle drilling. Both G and H units remain open at depth with initial drilling designed to intercept the quartzite located primarily above the valley bottom floor (ground level), therefore making it potentially easier and more straightforward to extract. Downdip drilling (completed in holes GF15-1 to 3 only) was stopped in quartzite at 260 m and remains open at depth.

NI 43-101 resource report and preliminary economic assessment

A contract has been signed with Met-Chem located in Montreal, Que., which will complete an NI 43-101-compliant resource report and at the same time a PEA. Site visits by Met-Chem recently occurred with studies and the gathering of exploration data initiated. Met-Chem is an independent firm, established in 1969 as a consulting engineering company with its headquarters in Montreal, Que. It is a wholly owned subsidiary of UEC Technologies LLC, which is part of United States Steel Corp., Pittsburgh, Penn.

Met-Chem offers a wide range of technical and engineering services for any project size during a project's life cycle from the exploration, conceptual or feasibility stage to the development of facility closure strategies. Met-Chem will be working closely with Anzaplan as it completes its testing regime and with Rogue's exploration staff on a continuing basis as they compile drill and assay results.

Anzaplan testing of PQ and NQ core

Shipment by air of 346 m of NQ core to Anzaplan in Germany took place last week with the PQ core shipment to follow shortly. It is estimated that a total of 4,015 kilograms of core will be delivered to Anzaplan for testing, NQ for chemical analysis, and PQ for chemical purity, thermal stability (decrepitation), shock tests, sensor-based sorting, mineralogical characterization, mineral dressing and conventional comminution, physical treatment (attrition, magnetic separation, flotation, high-tension separation), chemical processing, and laboratory melting tests.

Part of Anzaplan's testing will identify the processes required to further purify the quartzite, which will ultimately help determine usage(s) and value. These results will be incorporated into the reports being prepared by Met-Chem.

Environmental studies

WSP Canada Inc. continues with its environmental impact studies and other project studies to determine issues affecting the human and social environment, and the regulatory framework for the potential mining of a mineral deposit in this area. WSP is advising the company in all matters pertaining to the Environment Quality Act managed by the Ministere du Developpement durable, de l'Environnement et de Lutte contre les changements climatiques (MDDELCC) and Ministere de l'Energie et des Ressources naturelles (MERN).

"The end of the 2015 drill program is in sight which leads the company directly into compiling the drill data and assay results. Having Anzaplan conducting its testing, as well as Met-Chem beginning its work at this early stage, gives the company a head start in determining the possibility of advancing to development," commented John de Jong, chief executive officer and president. "The assay work being completed by ALS continues to validate the high-purity silica values across the holes being reported in this release. We are pleased that all of our work is on schedule, within budget and that we have the finances to complete all of the work required to potentially advance the project to the initial permitting stage."

To view a full table of assays, visit the company's website.

Drill-specific updates and assays

To date 57 drill holes have been completed, GF15-1 to GF15-57, a total of 9,161 m. Fifty-one drill holes have been drilled on the G quartzite and have intersected widths of up to 112 m of quartzite, drilled between holes GF15-1 on Section 600W and GF15-35 on Section 1300E, a quartzite strike of approximately 1,950 m. The G quartzite has a true width between 32 m and 93 m of white to pinkish-red quartzite that is coarse, crystalline and massive to banded. On the western side of the quartzite G, 27 drill holes have been drilled, intersecting quartzite over a strike length of 650 m with average true width of 93 m. On the eastern side of quartzite G, 24 drill holes have been drilled, intersecting quartzite over a strike length of 615 m with true widths of 35 m to 76 m that widens and has been followed up to the Section 1300E drill hole GF15-35. The quartzite is white, coarse, crystalline and massive. On quartzite H, located 225 m north of quartzite G, six drill holes have been completed, GF15-4, GF15-24, GF15-26, GF15-27, GF15-29 and GF15-31, intersecting between 44 m to 60 m of white quartzite, coarse grain, crystalline and massive. The quartzite has a strike length of 475 m, and is open to the east and west.

Drill holes GF15-6, GF15-7, and GF15-10 through GF15-19 assay results have been received.

Drill hole GF15-6 details:

  • Located north of channel R7, and drilled between channels R7 and R8 on the G quartzite zone;
  • Total of 80 samples with sampling length of 108.9 m in quartzite or 78.5 m true width;
  • 41 of 80 samples returning assays ranging from 97.9 per cent to 98.9 per cent SiO2 over combined width of 63.6 m.

Sequence of assayed silica oxide contents (over 98 per cent SiO2):

  • Sequence 1: 3.3 m core length (30.2 m to 33.5 m) or 6.3 m true width;
  • 3.3 m interval, two assays between 98.3 and 98.4 per cent SiO2;
  • Sequence 2: 2.7 m core length (36.3 m to 39.0 m) or 9.2 m true width;
  • 2.7 m interval, two assays between 98.0 and 98.5 per cent SiO2;
  • Sequence 3: 8.45 m core length (40.55 m to 49.0 m) or 13.7 m true width;
  • 8.45 m interval, six assays between 98.0 and 98.7 per cent SiO2;
  • Sequence 4: 13.5 m core length (49.5 m to 63.0 m) or 13.5 m true width;
  • 13.5 m interval, 11 assays between 98.0 and 98.9 per cent SiO2;
  • Sequence 5: four m core length (66.0 m to 70.0 m) or 2.9 m true width;
  • 2.9 m interval, two assays between 98.0 and 98.1 per cent SiO2;
  • Sequence 6: 15.9 m core length (76.4 m to 92.35 m) or 13.7 m true width;
  • 15.9 m interval, 10 assays between 98.0 and 98.8 per cent SiO2.

Drill hole GF15-7 details:

  • Located north of channel R7, and drilled between channels R7 and R8 on the G quartzite zone;
  • Total of 112 samples with sampling length of 146.15 m in quartzite or 76.5 m true width;
  • 35 of 112 samples returning assays ranging from 97.9 per cent to 98.9 per cent SiO2 over combined width of 50.3 m.

Sequence of assayed silica oxide contents (over 98 per cent SiO2):

  • Sequence 1: 2.6 m core length (46.9 m to 49.5 m) or 1.36 m true width;
  • 2.6 m interval, two assays between 98.0 and 98.6 per cent SiO2;
  • Sequence 2: 4.15 m core length (55.2 m to 60.7 m) or 2.17 m true width;
  • 4.15 m interval, five assays between 98.4 and 98.6 per cent SiO2;
  • Sequence 3: 2.7 m core length (63.3 m to 66.0 m) or 1.4 m true width;
  • 2.7 m interval, three assays between 97.9 and 98.2 per cent SiO2;
  • Sequence 4: 2.2 m core length (66.5 m to 68.7 m) or 1.15 m true width;
  • 2.2 m interval, two assays at 98.0 per cent SiO2;
  • Sequence 5: 10.3 m core length (71.0 m to 81.3 m) or 5.38 m true width;
  • 10.3 m interval, six assays between 97.9 and 98.8 per cent SiO2;
  • Sequence 6: 14.95 m core length (100.4 m to 115.35 m) or 7.81 m true width;
  • 14.95 m interval, nine assays between 98.2 and 98.6 per cent SiO2;
  • Sequence 7: 3.9 m core length (155.1 m to 159.0 m) or two m true width;
  • 3.9 m interval, three assays between 98.0 and 98.9 per cent SiO2.

Drill hole GF15-10 details:

  • Located 150 m northeast of drill hole GF15-6 on the G quartzite zone;
  • Total of 86 samples with sampling length of 121.2 m in quartzite or 108.5 m true width;
  • 35 of 86 samples returning assays ranging from 97.91 per cent to 99.35 per cent SiO2 over combined width of 52.45 m.

Sequence of assayed silica oxide contents (over 98 per cent SiO2):

  • Sequence 1: 2.35 m core length (47.8 m to 50.15 m) or 2.1 m true width;
  • One assay of 99.05 per cent SiO2;
  • 2.35 m interval, two assays between 97.96 and 99.05 per cent SiO2;
  • Sequence 2: 4.1 m core length (51.55 m to 55.65 m) or 3.67 m true width;
  • 4.1 m interval, three assays between 98.15 and 98.62 per cent SiO2;
  • Sequence 3: 6.05 m core length (64.75 m to 70.8 m) or 5.4 m true width;
  • 6.05 m interval, four assays between 97.91 and 98.75 per cent SiO2;
  • Sequence 4: 6.3 m core length (78.2 m to 84.5 m) or 5.6 m true width;
  • One assay of 99.01 per cent SiO2;
  • 6.3 m interval, five assays between 98.35 and 99.01 per cent SiO2;
  • Sequence 5: 23.0 m core length (86.8 m to 109.8 m) or 20.6 m true width;
  • Two assays between 99.11 and 99.35 per cent SiO2;
  • 23.0 m interval, 14 assays between 97.91 and 99.35 per cent SiO2;
  • Sequence 6: three m core length (110.8 m to 113.8 m) or 2.7 m true width;
  • Three m interval, two assays between 98.22 and 98.36 per cent SiO2;
  • Sequence 7: 2.95 m core length (146.95 m to 149.9 m) or 2.6 m true width;
  • 2.95 m interval, two assays between 98.08 and 98.14 per cent SiO2;
  • Sequence 8: 4.7 m core length (155.0 m to 159.7 m) or 4.21 m true width;
  • 4.7 m interval, three assays between 98.0 and 98.45 per cent SiO2.

Drill hole GF15-11 details:

  • Located 250 m northeast of drill hole GF15-6 on the G quartzite zone;
  • Total of 81 samples with sampling length of 110.6 m in quartzite or 102.5 m true width;
  • 41 of 81 samples returning assays ranging from 97.9 per cent to 99.94 per cent SiO2 over combined width of 63.6 metres.

Sequence of assayed silica oxide contents (over 98 per cent SiO2):

  • Sequence 1: 3.85 m core length (72.95 m to 76.8 m) or 3.6 m true width;
  • One assay of 99.43 per cent SiO2;
  • 3.85 m interval, three assays between 98.06 per cent and 99.43 per cent SiO2;
  • Sequence 2: 19.4 m core length (79.6 m to 99.0 m) or 18.0 m true width;
  • One assay of 99.02 per cent SiO2;
  • 19.4 m interval, 14 assays between 97.9 and 99.02 per cent SiO2;
  • Sequence 3: three m core length (112.9 m to 115.9 m) or 2.8 m true width;
  • Two assays of 99.02 and 99.94 per cent SiO2;
  • Three m interval, two assays between 99.02 and 99.94 per cent SiO2;
  • Sequence 4: 0.9 m core length (117.1 m to 118.0 m) or 0.8 m true width;
  • One assay of 99.08 per cent SiO2;
  • 0.9 m interval assayed 99.08 per cent SiO2;
  • Sequence 5: 7.5 m core length (119.4 m to 126.9 m) or seven m true width;
  • Two assays of 99.31 and 99.71 per cent SiO2;
  • 7.5 m interval, seven assays between 98.51 and 99.71 per cent SiO2;
  • Sequence 6: 2.7 m core length (130.3 m to 133.0 m) or 2.5 m true width;
  • 2.7 m interval, two assays between 98.06 and 98.42 per cent SiO2;
  • Sequence 7: 3.8 m core length (149.5 m to 153.3 m) or 3.5 m true width;
  • 3.8 m interval, three assays between 98.03 and 98.53 per cent SiO2;
  • Sequence 8: 4.6 m core length (168.25 m to 172.85 m) or 4.3 m true width;
  • 4.6 m interval, three assays between 97.9 and 98.5 per cent SiO2.

Drill hole GF15-12 details:

  • Located 350 m northeast of drill hole GF15-6 on the G quartzite zone;
  • Total of 104 samples with sampling length of 111.2 m in quartzite or 96.5 m true width;
  • 62 of 104 samples returning assays ranging from 97.91 to 99.9 per cent SiO2 over combined width of 67.95 m.

Sequence of assayed silica oxide contents (over 98 per cent SiO2):

  • Sequence 1: 6.7 m core length (80.6 m to 87.3 m) or 5.81 m true width;
  • One assay of 99.09 per cent SiO2;
  • 6.7 m interval, five assays between 98.22 and 99.09 per cent SiO2;
  • Sequence 2: 8.85 m core length (91.35 m to 100.2 m) or 7.7 m true width;
  • Two assays between 99.07 and 99.35 per cent SiO2;
  • 8.85 m interval, five assays between 98.43 and 99.35 per cent SiO2;
  • Sequence 3: 4.3 m core length (101.3 m to 105.6 m) or 3.73 m true width;
  • 4.3 m interval, three assays between 97.91 and 98.6 per cent SiO2;
  • Sequence 4: 21.1 m core length (107.35 m to 128.45 m) or 18.3 m true width;
  • 11 assays between 99.0 and 99.99 per cent SiO2;
  • 21.1 m interval, 22 assays between 98.13 and 99.99 per cent SiO2;
  • Sequence 5: 5.5 m core length (129.7 m to 135.2 m) or 4.8 m true width;
  • One assay of 99.08 SiO2;
  • 5.5 m interval, six assays between 98.14 per cent and 99.08 per cent SiO2;
  • Sequence 6: 2.9 m core length (165.1 m to 168.0 m) or 2.5 m true width;
  • 2.9 m interval, three assays between 98.1 and 98.89 per cent SiO2;
  • Sequence 7: 8.5 m core length (168.9 m to 177.4 m) or 7.4 m true width;
  • Two assays of 99.26 and 99.35 per cent SiO2;
  • 8.5 m interval, eight assays between 98.0 and 99.35 per cent SiO2;
  • Sequence 8: 5.8 m core length (178.1 m to 183.9 m) or five m true width;
  • 5.8 m interval, five assays between 98.13 and 98.99 per cent SiO2.

Drill hole GF15-13 details:

  • Located 450 m northeast of drill hole GF15-6 on the G quartzite zone;
  • Total of 81 samples with sampling length of 92.4 m in quartzite or 86.0 m true width;
  • 46 of 81 samples returning assays ranging from 97.9 to 99.5 per cent SiO2 over combined width of 54.9 m.

Sequence of assayed silica oxide contents (over 98 per cent SiO2):

  • Sequence 1: 2.4 m core length (85.9 m to 88.3 m) or 2.2 m true width;
  • One assay of 99.12 per cent SiO2;
  • 2.4 m interval, two assays between 98.38 and 99.12 per cent SiO2;
  • Sequence 2: 2.6 m core length (91.0 m to 93.6 m) or 2.4 m true width;
  • One assay of 99.4 per cent SiO2;
  • 2.6 m interval, two assays between 98.08 and 99.4 per cent SiO2;
  • Sequence 3: seven m core length (94.9 m to 101.9 m) or 6.5 m true width;
  • Seven m interval, four assays between 98.38 and 98.9 per cent SiO2;
  • Sequence 4: 2.5 m core length (102.5 m to 105.0 m) or 2.3 m true width;
  • 2.5 m interval, two assays 98.71 and 98.95 per cent SiO2;
  • Sequence 5: 5.2 m core length (105.6 m to 110.8 m) or 4.8 m true width;
  • 5.2 m interval, five assays between 98.25 and 98.84 per cent SiO2;
  • Sequence 6: 11.7 m core length (120.4 m to 132.1 m) or 10.9 m true width;
  • One assay of 99.0 per cent SiO2;
  • 11.7 m interval, 10 assays between 98.18 and 99.0 per cent SiO2;
  • Sequence 7: 9.8 m core length (147.7 m to 157.5 m) or 9.1 m true width;
  • 9.8 m interval, nine assays between 97.9 and 98.5 per cent SiO2;
  • Sequence 8: 6.4 m core length (165.4 m to 171.8 m) or six m true width;
  • One assay of 99.34 per cent SiO2;
  • 6.4 m interval, five assays between 98.01 and 99.34 per cent SiO2.

Drill hole GF15-14 details:

  • Located 850 m northeast of the drill hole GF15-6 on the G quartzite zone;
  • Total of 33 samples with sampling length of 34.6 m in quartzite or 30.0 m true width;
  • 17 of 33 samples returning assays ranging from 97.9 to 98.9 per cent SiO2 over combined width of 17.9 m.

Sequence of assayed silica oxide contents (over 98 per cent SiO2):

  • Sequence 1: 3.8 m core length (53.2 m to 57.0 m) or 3.3 m true width;
  • 3.8 m interval, two assays between 98.19 and 98.71 per cent SiO2;
  • Sequence 2: 2.8 m core length (64.7 m to 67.5 m) or 2.4 m true width;
  • 2.8 m interval, three assays between 98.08 and 98.69 per cent SiO2;
  • Sequence 3: 1.85 m core length (73.25 m to 75.1 m) or 1.6 m true width;
  • 1.85 m interval, two assays between 97.9 and 98.9 per cent SiO2;
  • Sequence 4: 3.1 m core length (80.25 m to 83.3 m) or 2.6 m true width;
  • 3.1 m interval, two assays 98.36 and 98.67 per cent SiO2.

Drill hole GF15-15 details:

  • Located 950 m northeast of the drill hole GF15-6 on the G quartzite zone;
  • Total of 17 samples with sampling length of 20.7 m in quartzite or 17.0 m true width;
  • Four of 17 samples returning assays ranging from 98.38 to 98.83 per cent SiO2 over combined width of 6.9 m.

Sequence of assayed silica oxide contents (over 98 per cent SiO2):

  • Sequence 1: 2.7 m core length (56.2 m to 58.9 m) or 2.2 m true width;
  • 2.7 m interval, two assays between 98.38 and 98.83 per cent SiO2.

Drill hole GF15-16 details:

  • Located 1,050 m northeast of the drill hole GF15-6 on the G quartzite zone;
  • Total of 13 samples with sampling length of 12.2 m in quartzite or 8.9 m true width;
  • Nine of 13 samples returning assays ranging from 98.0 to 99.1 per cent SiO2 over combined width of 8.9 m.

Sequence of assayed silica oxide contents (over 98 per cent SiO2):

  • Sequence 1: 5.9 m core length (64.1 m to 70.0 m) or 4.3 m true width;
  • One assay of 99.1 per cent SiO2;
  • 5.9 m interval, six assays between 98.0 and 99.1 per cent SiO2;
  • Sequence 2: 1.45 m core length (74.0 m to 75.45 m) or 1.1 m true width;
  • 1.45 m interval, two assays between 98.34 and 98.67 per cent SiO2.

Drill hole GF15-17 details:

  • Located 1,150 m northeast of the drill hole GF15-6 on the G quartzite zone;
  • Total of 28 samples with sampling length of 33.35 m in quartzite or 29.0 m true width;
  • 18 of 28 samples returning assays ranging from 97.94 to 99.22 per cent SiO2 over combined width of 20.6 m.

Sequence of assayed silica oxide contents (over 98 per cent SiO2):

  • Sequence 1: 1.8 m core length (28.5 m to 30.3 m) or 1.6 m true width;
  • 1.8 m interval, two assays between 98.52 and 98.57 per cent SiO2;
  • Sequence 2: 3.8 m core length (30.8 m to 34.6 m) or 3.3 m true width;
  • 3.8 m interval, three assays between 98.03 and 98.23 per cent SiO2;
  • Sequence 3: 2.4 m core length (35.35 m to 37.75 m) or 2.1 m true width;
  • 2.4 m interval, two assays between 97.94 and 98.0 per cent SiO2;
  • Sequence 4: 7.15 m core length (46.6 m to 53.75 m) or 6.2 m true width;
  • One assay of 99.22 per cent SiO2;
  • 7.15 m interval, six assays between 98.09 and 99.22 per cent SiO2;
  • Sequence 5: 3.05 m core length (54.4 m to 57.45 m) or 2.65 m true width;
  • 3.05 m interval, three assays between 97.97 and 98.37 per cent SiO2.

Drill hole GF15-18 details

  • Located 1,250 m northeast of drill hole GF15-6 on the G quartzite zone;
  • Total of 44 samples with sampling length of 43.1 m in quartzite or 35.0 m true width;
  • 23 of 44 samples returning assays ranging from 97.9 to 99.07 per cent SiO2 over combined width of 24.7 m.

Sequence of assayed silica oxide contents (over 98 per cent SiO2):

  • Sequence 1: 1.05 m core length (60.55 m to 61.6 m) or 0.84 m true width;
  • 1.05 m interval, two assays between 98.39 and 98.51 per cent SiO2;
  • Sequence 2: 2.6 m core length (62.5 m to 65.1 m) or 2.1 m true width;
  • 2.6 m interval, two assays between 98.28 and 98.35 per cent SiO2;
  • Sequence 3: 2.75 m core length (65.75 m to 68.5 m) or 2.2 m true width;
  • 2.75 m interval, two assays between 98.29 and 98.51 per cent SiO2;
  • Sequence 4: four m core length (69.0 m to 73.0 m) or 3.2 m true width;
  • Four m interval, four assays between 97.95 and 98.84 per cent SiO2;
  • Sequence 5: 13.4 m core length (73.5 m to 86.9 m) or 10.66 m true width;
  • Three assays between 99.01 and 99.07 per cent SiO2;
  • 13.4 m interval, 13 assays between 97.9 and 99.07 per cent SiO2.

Drill hole GF15-19 details:

  • Located 1,345 m northeast of drill hole GF15-6 on the G quartzite zone;
  • Total of 64 samples with sampling length of 74.5 m in quartzite or 62.0 m true width;
  • 32 of 64 samples returning assays ranging from 98.03 to 99.68 per cent SiO2 over combined width of 37.3 m.

Sequence of assayed silica oxide contents (over 98 per cent SiO2):

  • Sequence 1: 8.7 m core length (50.07 m to 58.8 m) or 7.3 m true width;
  • Two assays 99.38 and 99.68 per cent SiO2;
  • 8.7 m interval, seven assays between 98.29 and 99.68 per cent SiO2;
  • Sequence 2: 6.3 m core length (62.75 m to 69.05 m) or 5.2 m true width;
  • Three assays of 99.1 to 99.4 per cent SiO2;
  • 6.3 m interval, six assays between 98.13 and 99.4 per cent SiO2;
  • Sequence 3: 3.2 m core length (70.3 m to 73.5 m) or 2.7 m true width;
  • Two assays of 99.0 and 99.34 per cent SiO2;
  • 3.2 m interval, three assays between 98.37 and 99.34 per cent SiO2;
  • Sequence 4: 2.1 m core length (79.4 m to 81.5 m) or 1.8 m true width;
  • 2.1 m interval, two assays between 98.03 and 98.21 per cent SiO2;
  • Sequence 5: 7.45 m core length (82.0 m to 89.45 m) or 6.2 m true width;
  • One assay of 99.0 per cent SiO2;
  • 7.45 m interval, six assays between 98.22 and 99.0 per cent SiO2;
  • Sequence 6: 8.4 m core length (90.1 m to 98.5 m) or seven m true width;
  • 8.4 m interval, seven assays between 98.24 and 98.8 per cent SiO2.

Private placement and options

The company announces that, subject to regulatory approval, it is extending its private placement until Dec. 24, 2015. For details of the private placement, see the news release dated Sept. 9, 2015. The company also announces that it has issued 1.67 million stock options to directors, officers and consultants at an exercise price of 11 cents with an expiry date of Nov. 30, 2022.

Qualified person

The Lac de la Grosse Femelle exploration project is under the direct supervision of Eddy Canova, PGeo, senior vice-president of the company, a qualified person as defined by National Instrument 43-101, assisted by Alain-Jean Beauregard, PGeo, and Daniel Gaudreault, Eng, Geo, of Geologica Inc., and Dr. Trygve Hoy, PEng, PhD, all independent QPs as defined by National Instrument 43-101. The company's QP has approved the scientific and technical content of this release.

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