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Aston Bay Holdings Ltd V.BAY

Alternate Symbol(s):  ATBHF

Aston Bay Holdings Ltd. is a Canada-based mineral exploration company exploring high-grade copper and gold deposits in Virginia, United States, and Nunavut, Canada. The Company is exploring the high-grade Buckingham Gold Vein in central Virginia and is in advanced stages of negotiations on other lands with high-grade copper potential in the area. The Company is focused on its Blue Ridge Project in Virginia. The Nunavut Property is 100% owned by the Company and located 112 kilometers (km) south of the community of Resolute Bay, Nunavut on western Somerset Island. The Storm Copper Project is located on Somerset Island, Nunavut, approximately 20 km from tidewater at the Company. Its Seal Zinc deposit is located at the base of a small peninsula approximately 350 meters from tidewater at its on Somerset Island, Nunavut. Its Mountain Base Metals Project is located on 2,072 acres of private land with direct access to both highway and rail transportation.


TSXV:BAY - Post by User

Post by traps7on Nov 03, 2022 11:43am
104 Views
Post# 35069870

Look at Side St, exchanges,..

Look at Side St, exchanges,..

..only one thousand shares traded here on the Venture exchange, while over 700,000 shares are flipped on the side streets cassin"s...

..PS.,..The Aussie"s and BAY,...going green   DSO...

..

The areas of immediate exploration interest are the 2200N and 4100N Zones, where thick intervals of copper mineralization have already been defined by historical drilling. Additional drilling at these zones is expected to significantly increase the scale of the near surface copper mineralization within the Storm Project area.

Figure 3: Plan view of the 2200N and 2750N Zones showing copper grade distribution within drilling, shallow and deep EM anomalies, outcropping copper mineralization and faults overlaying regional geology. The largely untested 2200N Zone has a strike extent of at least 300m. Stated drill hole intersections are all core length, and true width is expected to be 60% to 95% of core length.
2200N Zone
The 2200N Zone is located approximately 540m to the south of the 2750N Zone and is characterized by extensive outcropping of chalcocite over several hundred metres. The 2200N Zone is also located within an area of faulting related to the main graben structures.

Historical drilling has intersected bornite and chalcocite mineralization including 6.4m* @ 7.38% Cu from surface and 22.35m* @ 1.56% Cu from 22.9m downhole (ST97-03), similar to the 2750N Zone. Drill hole and geochemical data indicate that the main part of the 2200N Zone may be up to 300m long, 60m wide and 40m thick.

Extensions to this zone are supported by the presence of a shallow and strong Fixed Loop Electromagnetic (FLEM) anomaly that was defined in the 2021 survey (see December 14, 2021 news release) and historical Induced Polarization (IP) data.

Both the 2750N and 2200N Zones are located above a large, flat lying and deeper 1,800 x 1,000m Fixed Loop Electromagnetic (FLEM) anomaly that was also identified in the 2021 EM program. This feature is coincident with strong gravity anomalism between the major graben faults (Figure 5), which is an ideal location for the accumulation of sedimentary copper mineralization.
                                                                  
4100N Zone
The 4100N Zone is a blind zone of mineralization defined by a historical Versatile Time domain Electromagnetics (VTEM) anomaly that is over 1km long, and multiple untested shallow FLEM plates that were defined in the 2021 survey. Given the lack of false-positive anomalies encountered in drilling to date and extensive copper mineralization in historical holes, these EM conductors could represent further occurrences of copper sulfide mineralization.

Historical drilling at the 4100N Zone includes 15m* @ 3.88% Cu (ST99-47), and 4.8m* @ 3.7% Cu and 5.8m* @ 3.6% Cu (ST99-53). The copper mineralization intersected to date is dominantly chalcocite, which occurs in breccias and steeply dipping veins (typical of the near surface mineralization at Storm).

The 4100N offers considerable room for expansion (Figure 4). The known mineralization in the zone extends over an area of at least 1,000m x 400m and is open to the north, east and west, with potential for deep extensions to the mineralization across a fault on the south side of the Zone. Seventeen holes have been drilled at spacings of 100m to 200m, and all have encountered copper mineralization. The mineralization drilled to date is irregular but extensive and lies at a predictable stratigraphic position.

Figure 4: Plan view of the 4100N Zone showing copper grade distribution within drilling, shallow/deep EM anomalies and faults overlaying regional geology. The main 4100N Zone has drill hole copper intersections supported by untested EM anomalies over 1km of strike. Stated drill hole intersections are all core length, and true width is expected to be 60% to 95% of core length.

The recent drill results from hole ST22-10 (see September 28, 2022 news release) suggest that near surface mineralization is related to a large sedimentary copper style system at depth. This large-scale potential is highlighted by a series of coincident EM, IP and gravity anomalies in the 4100N Zone, which are over 5km in length (Figure 5).

The 2200N and 4100N zones present as compelling and high priority target areas to add further potential high-grade copper resources at surface, and to significantly increase the scale of the copper endowment within the Storm Project. In addition, there remains considerable discovery potential in exploration of the deeper FLEM conductors that may represent sedimentary copper style mineralization.
Figure 5: Plan view of the entire Storm Project area showing drilling, major graben faults, deep electromagnetic plates and induced polarization anomalies overlaying regional gravity image. Note that the coincident IP, EM and strong gravity anomalies lay adjacent to or between the major graben faults – typical locations for the accumulation of sedimentary copper style mineralization.

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