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Aero Energy and Fortune Bay Announce Completion of Drilling Program on the Murmac Uranium Project, Saskatchewan

Aero Energy and Fortune Bay Announce Completion of Drilling Program on the Murmac Uranium Project, Saskatchewan

艾罗能源和富贵湾宣布完成在萨斯喀彻温省Murmac铀项目的钻探计划。
newsfile ·  07/24 07:00

Drill Currently Moving to the Adjacent Sun Dog Project

钻机正在转移到相邻的太阳狗项目。

Vancouver, British Columbia--(Newsfile Corp. - July 24, 2024) - Aero Energy Ltd (TSXV: AERO) (OTC Pink: AAUGF) (FSE: UU3) ("Aero" or the "Company") is pleased to announce completion of the 2024 summer drill program on the Murmac Uranium Project ("Murmac" or the "Project"), located in northern Saskatchewan near Uranium City. The program was designed to test regional targets across the Project for high-grade, unconformity-related basement-hosted deposits typical of the Athabasca Basin. The drilling program was funded by Aero and operated by Fortune Bay Corp (TSXV: FOR) (OTCQB: FTBYF) (FSE: 5QN) ("Fortune Bay"), pursuant to the underlying option agreement between the companies.

哥伦比亚温哥华--(资讯公司-2024年7月24日)--Aero Energy Ltd (TSXV: AERO) (OTC Pink: AAUGF) (FSE: UU3) (以下简称“Aero”或 “公司”)很高兴地宣布完成位于北萨斯喀彻港附近的Murmac铀项目(“Murmac”或“项目”)2024年夏季钻探计划的测试区域目标的设计,以便寻找Athabasca盆地典型的高品位、不整合岩性地下基底矿床。 钻探计划由Aero资助,由Fortune Bay Corp (TSXV: FOR) (OTCQB: FTBYF) (FSE: 5QN) (“Fortune Bay”)运营,根据两家公司之间的期权协议执行。

Highlights:

亮点:

  • New Shallow Discovery of Radioactivity: An average of 1,309 counts per second was intersected over 8.7 metres in hole M24-017 in structured graphitic pelite, with up to 33,600 counts per second ("cps") (using handheld RS-125 Spectrometer) associated with visible uranium mineralization. This interval is located approximately 70 to 78 metres below surface.
  • 射线的新浅发现:在结构石墨页岩中,M24-017孔上方约70到78米处,平均每秒1,309个计数,最高可达33,600个计数(使用手持式RS-125光谱仪),与可见的铀矿化有关。
  • Uranium Fertile Target: Hole M24-017 was followed up with three additional holes (M24-018, -019 and -020), comprising approximate 50 metre step outs down-dip, along-strike northeast, and along-strike southwest, respectively. All three holes returned anomalous radioactivity (up to 850 cps) in graphitic rocks underlying a hematized quartzite hangingwall.
  • 铀丰富目标:孔M24-017随后又偏离了三个孔(M24-018,-019和-020),包括向东北的约50米步距,向东南的距离,以及沿着本山墙向下的图形孔内的板岩下伏的石墨岩中奇异的放射性(高达850个计数)。
  • Excellent Prospectivity Confirmed: These results (drill holes M24-17 to -020) confirm the presence of a larger hydrothermal uranium mineralizing system along this unexplored, 1.2 kilometre long electromagnetic ("EM") conductor on the Howland Corridor.
  • 确认优越前景:这些结果(钻孔M24-17至-020)证实在Howland Corridor上有一种更大的热液铀成矿系统。
  • Strong Alteration at Additional Targets: Drill holes M24-021, M24-022A and M24-023, tested geophysical (EM and gravity) anomalies H6, A22, and H16 respectively, intersecting compelling hydrothermal alteration and structure associated with variably graphitic rocks, further confirming the prospectivity of the entire length of the Howland and Armbruster Corridors for unconformity-related, basement-hosted deposits.
  • 其他目标的强烈改变:钻孔M24-021、M24-022A和M24-023分别测试了H6、A22和H16地球物理(电磁和重力)异常,与各种石墨岩相关的引人注目的热液改变和构造相交,进一步证实了Howland和Armbruster Corridors整个长度的前景与盆地有关的地下、基岩寄存矿床。
  • Assays Pending and Follow-Up Drilling Planned: Following uranium assay and geochemical analysis of drill core samples, a second phase drilling program is being planned to follow-up along strike of mineralized drill holes and continue testing of priority drill targets across the Project.
  • 分析钻探样品的铀分析和地球化学分析后,正在计划第二阶段钻探计划,以跟进矿化钻探孔的步探并继续测试整个项目优先钻探目标。
  • Additional Drilling Imminent: The Company is currently transitioning its focus to the adjacent Sun Dog project where a drill program will be operated by Standard Uranium. Details of this program were announced on July 18, 2024.
  • 即将进行更多钻探:公司目前正在将重点转移到相邻的Sun Dog项目,标准铀将在该项目中进行钻探计划。该计划的细节于2024年7月18日宣布。

Galen McNamara, CEO of Aero Energy, stated, "The discovery of a new zone of radioactivity in the right rocks from wild-cat drilling in only our second ever hole underscores our strong conviction that unconformity-related basement-hosted uranium deposits akin to Arrow, Triple-R and Gryphon could exist in the area. In my opinion, the relatively smaller and lower grade deposits historically mined in the Uranium City area, where my cousin Gilbert Labine developed the nationally important Gunnar Mine in the early 1950's, serve as a smoke screen to the larger modern exploration target. Our projects host a 30 km trend of the correct graphite-bearing rocks which act as a chemical sponge for uranium-bearing fluids, all of which are grossly underexplored for the type of mineralization we seek. We are now very much looking forward to imminent drilling on the Sun Dog project."

AeroEnergy的CEO Galen McNamara表示:“仅在第二个孔中,从野猫钻探的正确岩石中发现了新的放射性带,这凸显了我们强烈的信念,即存在类似于Arrow、Triple-R和Gryphon的不整合岩性基底铀矿床。在我看来,历史上在Uranium City地区开采的相对较小、较低品位的矿床(例如我表兄Gilbert Labine在20世纪50年代开发的具有国家重要意义的Gunnar Mine矿山)为现代勘探的更大目标提供了干扰。我们的项目拥有30公里长的正确石墨含量的岩石趋势,这些岩石是吸收含铀流体的化学海绵,所有这些都未进行过充分的勘探。我们现在非常期待在Sun Dog项目上即将进行的钻探活动。”

Initial Drill Results

初始钻探结果

A total of eight drill holes were completed at Murmac during June and July, 2024 to test targets documented in the News Release dated June 4, 2024 along the Pitchvein, Armbruster and Howland Corridors (Figure 1; Table 2). Drill holes targeted compelling geophysical signatures (electromagnetics and gravity) and favorable geological/structural settings. Drill target selections also took into account proximity to historical uranium occurrences of interest and Fortune Bay's previous positive drilling results. The completed drill holes encountered highly favorable geological settings for high-grade basement-hosted deposits associated with the Athabasca Basin. This included:

2024年6月和7月期间在Murmac共完成了八个钻孔,以测试沿着Pitchvein、Armbruster和Howland Corridors(图1;表2)记录的目标,钻孔针对引人注目的地球物理特征(电磁和重力)和有利的地质/结构设置。钻探目标选择还考虑了与历史上有关的铀产矿或Fortune Bay先前积极的钻井结果的距离。已完成的钻孔遇到了与Athabasca盆地有关的高品位基岩寄存矿床非常有利的地质设置,包括:

  • Thick and strongly graphitic target units (up to an estimated ~30 metres in true thickness) often in contact with quartzites, providing favorable competency/rheological contrast.

  • Brittle faulting and brecciation were observed within, or proximal to, the graphitic units and were typically associated with favorable hydrothermal alteration including abundant hematite, chlorite, sulphides, and clays.

  • Anomalous radioactivity (>300 cps) was intersected in five of the eight holes completed, associated with cataclastic or mylonitic structured and altered graphitic pelites, as summarized in Table 1.

  • 目标单元厚而强烈的石墨(估计真厚度约为30米),常与石英岩接触,提供了有利的能力/流变学对比。

  • 破碎断层和破碎现象观察到,在石墨单元内或其附近,通常与有利的热液改变,包括丰富的赤铁矿、绿泥石、硫化物和粘土有关。

  • 在完成的八个钻孔中,有五个遇到微量辐射(>300 cps),这与结构石墨页岩中的断层构造或剪切使其发生变化,如表1所示。

Table 1: Murmac Drill Hole Radiometric Highlights (Summer 2024)

表1:Murmac实验钻孔放射性亮点(2024年夏季)

Hole ID
Radioactivity Highlights

From (m) To (m) Length (m) cps Lithology
M24-016A
93.50 93.65 0.15 350 Amphibolite

94.75 95.05 0.30 340 Graphitic pelite

95.70 95.95 0.25 340 Graphitic pelite

235.65 235.80 0.15 340 Psammite
M24-017
81.10 81.70 0.60 432 Hematized quartzite

82.55 83.05 0.50 590 Hematized quartzite

84.00 84.60 0.60 838 Hematized quartzite

85.50 85.80 0.30 317 Hematized quartzite

85.80 94.50 8.70 1,309 Graphitic pelite
incl. 86.10 86.65 0.55 10,608 Graphitic pelite
incl. 86.45 86.55 0.10 33,600 Graphitic pelite
and incl. 87.00 87.40 0.40 2,776 Graphitic pelite
and incl. 92.00 92.20 0.20 7,395 Graphitic pelite

126.80 127.20 0.40 355 Graphitic pelite
M24-018
138.15 142.05 3.90 337 Graphitic pelite
M24-019
100.90 101.10 0.20 650 Graphitic pelite
M24-020
154.85 155.25 0.40 553 Graphitic pelite
Note: Radioactivity values reported are total gamma from NQ2 drill core measured with a Super-SPEC RS-125 handheld spectrometer reported in counts per second ("cps"). The cps values are averages for the reported drill interval unless otherwise specified. Measurements of total gamma cps are an indication of the presence of uranium, thorium and/or potassium, but may not directly correlate with chemical uranium assays. Total gamma cps results are preliminary in nature and may not be used directly to quantify uranium concentrations in the drill core samples. True thicknesses of the drill core intersections are yet to be determined. Results for M24-017 have been reported previously.
孔ID
放射性亮点

从(m) 到(m) 长度(米) cps 岩性
M24-016A
93.50 93.65 0.15 350 角斑岩

94.75 95.05 0.30 340 含石墨泥岩

95.70 95.95 0.25 340 含石墨泥岩

235.65 235.80 0.15 340 砂岩
M24-017
81.10 81.70 0.60 432 含赤铁矿石英岩

82.55 83.05 0.50 590 含赤铁矿石英岩

84.00 84.60 0.60 838 含赤铁矿石英岩

85.50 85.80 0.30 317 含赤铁矿石英岩

85.80 94.50 8.70 1,309 含石墨泥岩
包括。 86.10 86.65 0.55 10,608 含石墨泥岩
包括。 86.45 86.55 0.10 33,600 含石墨泥岩
和包括 87.00 87.40 0.40 2,776 含石墨泥岩
和包括 92.00 92.20 0.20 7,395 含石墨泥岩

126.80 127.20 0.40 355 含石墨泥岩
M24-018
138.15 142.05 3.90 337 含石墨泥岩
M24-019
100.90 101.10 0.20 650 含石墨泥岩
M24-020
154.85 155.25 0.40 553 含石墨泥岩
注:报告的放射性值为NQ2钻孔芯样的总伽马值,使用超级SPEC RS-125手持光谱仪测量,以每秒计数(“cps”)报告。除非另有说明,否则cps值是报告钻进间隔的平均值。总伽马cps的测量是证明铀、钍和/或钾存在的一种指示,但可能与化学铀测定不直接相关。总伽马cps的结果性质是初步的,可能不能直接用于量化钻孔样品中的铀浓度。钻孔相交点的真实厚度尚待确定。M24-017的结果之前已经报道过。

Figure 1: Murmac 2024 Drill Collar Locations.

图1:Murmac 2024钻杆位置。

Drill Hole Summary

钻孔摘要

Summaries of the drill holes are provided as follows:

钻孔摘要如下:

M24-016A: The targeted conductor (moderate to strongly graphitic pelite) was intersected between 94.4 and 120.7 m. This step-out hole, approximately 100 metres northeast of positive results in 2022 drill holes M22-013 and M22-014, and 175 metres southwest of positive historical results from SMDC drilling (CKI-9 and CKI-10), intersected anomalous radioactivity in graphitic pelite (Figure 2), indicating possible continuity of mineralization between these two locations.

M24-016A:目标导体(中度到强石墨泥岩)位于94.4和12070万之间。这个约100米东北方向偏移,与2022钻孔M22-013和M22-014的积极结果相差不大,与SMDC钻探(CKI-9和CKI-10)的积极历史结果相差175米西南方向。在石墨化泥岩中交错放射性异常(图2),表明可能在这两个位置之间存在成矿物化的连续性。

Figure 2: Hole M24-016A (target P7), 92.8 to 99.3 m. Anomalous radioactivity hosted in structured graphitic pelite.

图2:孔M24-016A(目标P7),92.8至9930万。结构化石墨泥岩中的异常放射性。

M24-017: This hole tested geophysical (EM and gravity) target H15, which occurs at the intersection of the EM conductor and a property-scale, mineralized cross-fault, beneath Howland Lake. Intermittent anomalous radioactivity (up to a maximum of 1,800 cps over 0.1 metre) was intersected in hematized, faulted hangingwall quartzite. This overlies a structured graphitic pelite averaging 1,309 cps over 8.70 metres, with measurements up to 33,600 cps over 0.1 metre. This intersection (Figure 3), of radioactivity hosted in previously unexplored (under a shallow lake) graphitic pelite, at a cross-fault location, provides a compelling validation of the exploration target, justifying down-dip and along strike follow up (subsequent three drill holes).

M24-017:这个孔测试了物理(Em和重力)目标H15,它出现在Em导体和一个矿化的横向断层的交汇处,在豪兰湖下方。在含铁质、断层的挂墙石英岩中间断性地遇到异常放射性(最高达0.1米1,800 cps)。这遮盖了一层12.09米厚的钯板状石墨泥岩,平均计数为1,309 cps,最高达0.1米的测量值为33,600 cps。这个相交点(图3),先前未开采(在浅水湖下面)的结构化石墨泥岩中的放射性提供了一个令人信服的勘探目标验证,正当沿倾斜和沿行进路线进行后续追踪(随后进行了三个钻探孔)。

Figure 3: M24-017 (target H15) radioactive intersections (81.00 to 94.50 metres down hole). Hangingwall quartzite hosts intermittent radioactivity from 81.00 to 85.80 m. Continuous elevated radioactivity is hosted in the underlying graphitic pelite.

图3:M24-017(目标H15)放射性相交(81.00至94.50米下孔)。挂墙石英岩从81.00到8580万的地方具有间歇性放射性。持续升高的放射性是在下面的石墨泥岩中产生的。

M24-018: Steeper follow up of M22-017, shows down-dip continuity (approximate 50 metres vertical) in anomalous radioactivity hosted in graphitic pelite (Figure 4), up to a maximum of 660 cps over 0.1 metre.

M24-018:M22-017的更陡峭的跟进显示了石墨化泥岩中异常放射性下倾延伸(垂直约50米),最高达0.1米660 cps(图4)。

Figure 4: M24-018 (down dip test of target H15) radioactive intersections in graphitic pelite down-dip (~50 m vertically below) of the intersection in M24-017.

图4:M24-018(目标H15的向下倾角)石墨泥岩中的放射性相交,比M24-017中的相交向下倾斜(垂直约5000万)。

M24-019: Approximate 50 metre step out to the northeast from M22-017. Anomalous radioactivity was hosted in strongly graphitic pelite, confirming presence of active mineralizing system along strike, up to a maximum of 780 cps over 0.1 metre (Figure 5).

M24-019:从M22-017东北方向步进约50米。强石墨泥岩中遇到异常放射性,证实了沿行进路线的活跃成矿系统的存在,最高达0.1米780 cps(图5)。

Figure 5: M24-019 radioactive intersections in graphitic pelite along strike 50 m to the NE of M24-017 (target H15).

图5:M24-019位于断层石墨质页岩中的放射性交汇点,距离M24-017(目标H15)以NE方向5000万步长。

M24-020: Approximate 50 metre step out to the southwest from M22-017. Anomalous radioactivity was hosted in graphitic pelite, confirming presence of active mineralizing system along strike, up to a maximum of 850 cps over 0.1 metre (Figure 6).

M24-020:与M22-017向西南约50米。异常放射性位于石墨质页岩中,证实了矿化系统沿走向一直存在,最大达0.1米的850CPS(图6)。

Figure 6: M24-020 radioactive intersections in graphitic pelite along strike 50 m to the SW of M24-017 (target H15).

图6:M24-020位于断层石墨质页岩中的放射性交汇点,距离M24-017(目标H15)以SW方向5000万步长。

M24-021: This hole tested a compelling geophysical (EM and gravity) target (H6) on the Howland Corridor. While no anomalous radioactivity was intersected, the targeted conductor (strongly graphitic pelite) is associated with intense hydrothermal alteration and pervasive faulting (Figure 7).

M24-021:此孔探测了Howland走廊上令人信服的地球物理(Em和重力)目标(H6)。虽然未遇到异常放射性,但所钻岩层(强石墨质页岩)与侵入性蚀变及弥漫性断层有关(图7)。

Figure 7: M24-021 (target H6) strongly graphitic pelite in contact with structured hydrothermally altered bleached and hematized quartzite.

图7:M24-021(目标为H6)与结构化水热蚀变漂白和赤铁矿化石英岩接触的强石墨页岩。

M24-022A: This hole tested a compelling geophysical (EM and gravity) target (A22) on the southern Armbruster Corridor. While no anomalous radioactivity was intersected, the targeted conductor (heavily structured strongly graphitic pelite) also shows hydrothermal alteration with a strongly hematized hangingwall quartzite overlying the graphitic unit (Figure 8).

M24-022A:此孔探测了南部Armbruster走廊上令人信服的地球物理(Em和重力)目标(A22)。虽然未遇到异常放射性,但所钻石墨层(结构复杂的强石墨质页岩)也有热蚀变,其上方为铁化石英岩(图8)。

Figure 8: M24-022A (target A22) hydrothermal alteration reduction/oxidation front, transitioning from hematized quartzite to underlying heavily structured strongly graphitic pelite.

图8:M24-022A(目标A22)热蚀变氧化还原界面,从铁化石英岩向下过渡到结构复杂的强石墨质页岩。

M24-023: This hole tested a compelling geophysical (EM and gravity) target (H16) on the Howland Conductor Corridor, also testing along strike (approximately 600 m SW) of positive results in 2022 drill hole M22-012. Only two minor intervals (<4 metres) of moderately graphitic pelite were intersected, with no other notable conductive horizons. This could indicate that M24-023 drilled through a faulted offset and missed the targeted conductor, drilling through heavily faulted and hematized underlying footwall quartzite.

M24-023:此孔探测了Howland Conductor走廊上令人信服的地球物理(Em和重力)目标(H16),也测试了2022年钻孔M22-012的大致走向。仅遇到了两个较小的区间(

M24-024 (P4): This hole was designed to test the southwest strike extension of the mineralized graphitic pelite in M22-013/014 along the Pitchvein Corridor, at the intersection with the same regional cross-cutting structure tested in M24-017 (target P4). The hole was abandoned at 47.5 metres due to intense brittle faulting within hematized quartzite and therefore did not reach the targeted graphitic unit. The intense faulting within the hangingwall is encouraging and the target warrants testing to the required depth. Alternative drill locations will be assessed for a future program.

M24-024(P4):该孔是为了测试与M22-013/014中矿化的石墨质页岩沿Pitchvein走廊的西南延伸点交汇,在与M24-017(目标P4)所测试的同一区域横向断裂相交处。该孔于47.5米处被强烈的脆性断层构造中断,因此未到达目标石墨质岩体。高墙内的强烈断层构造是鼓舞人心的,并且需在未来计划中进行测试。备选钻探位置将会被评估。

Table 2: Murmac Drill Hole Summary (Summer 2024)

表2:Murmac钻孔摘要(2024年夏季)

Hole ID Target ID Easting Northing Azimuth Dip Length (m)
M24-016A P7 630799 6593053 302 -54 258
M24-017 H15 633345 6593642 310 -55 201
M24-018 H15DD 633345 6593642 310 -67 177
M24-019 H15NE 633385 6593691 298 -55 171
M24-020 H15SW 633337 6593593 305 -45 180
M24-021 H6 631386 6589720 315 -50 164.5
M24-022A A22 627965 6585975 305 -55 167.7
M24-023 H16 632955 6592531 320 -55 177
M24-024 P4 630332 6592498 315 -45 47.5*
Notes:
Coordinates are reported in UTM NAD83 Zone 12N. Azimuth is true north.

Target prefix A= Armbruster Corridor; H = Howland Corridor; P = Pitchvein Corridor.

*Drill hole M24-024 was abandoned due to intense brittle faulting.
孔ID 目标编号 东经(m) 北纬(m) 方位角(度) 倾角 长度(米)
M24-016A P7 630799 6593053 302 -54 258
M24-017 H15 633345 6593642 310 -55 201
M24-018 H15DD 633345 6593642 310 -67 177
M24-019 H15NE 633385 6593691 298 -55 171
M24-020 H15SW 633337 6593593 305 -45 180
M24-021 H6 631386 6589720 315 -50 164.5
M24-022A A22 627965 6585975 305 -55 167.7
M24-023 H16 632955 6592531 320 -55 177
M24-024 沿M22-013和014中矿化截面滑移。测试Pitchvein走廊与领矿过程中的矿化穿越断层的交汇。 630332 6592498 315 -45 47.5*
注:
坐标以UTm NAD83 Zone 12N报告。方位为真北。

目标前缀A = Armbruster走廊;H = Howland走廊;P = Pitchvein走廊。

M24-024钻孔由于剧烈的脆性断层而被放弃。

Next Steps

下一步

Drill core samples have been collected systematically throughout all zones of radioactivity higher than 300 cps and will be submitted to SRC Geoanalytical Laboratories in Saskatoon for U3O8 assay and multi-element characterization. These analytical results will be integrated with the detailed logging information to prioritize follow-up target areas for future drill testing, in addition to testing of numerous other priority regional targets. Following on from the Murmac drill program, Aero and Standard Uranium (TSXV: STND; OTCQBQB: STTDF; FWB: 9SU) plan to test additional targets on the adjacent Sun Dog Project located to the south of Murmac on the Crackingstone Peninsula.

在所有高于300 cps的放射性区域系统地收集了钻孔样品,并将其提交到萨斯喀彻温省地质分析实验室进行U3O8分析和多元素表征。这些分析结果将与详细的测井信息相结合,确定未来的钻探测试目标区域,以及钻探大量其他优先区域性目标。在Murmac钻探项目之后,Aero和Standard Uranium(TSXV:STND;OTCQBQB:STTDF;FWB:9SU)计划测试位于Crackingstone半岛Murmac南侧的邻接Sun Dog项目上的其他目标。

Technical Disclosure

技术披露

Preliminary radiometric results represent total gamma from NQ2 drill core measured with a Super-SPEC RS-125 handheld spectrometer reported in counts per second ("cps"). Measurements are typically collected over 0.10 to 0.15 metre intervals through areas of anomalous radioactivity (defined as >300 counts per second, or "cps"). Longer intervals with less variation are shown as length weighted averages for simplicity.

初步放射性结果表示从NQ2钻孔芯中测量的总伽马值,使用Super-SPEC RS-125手持式光谱仪测量,以每秒计数(“cps”)报告。测量通常在异常放射性区域(定义为>300 cps)的0.10到0.15米间隔内进行。较长的间隔,较少的变化,显示为长度加权平均值,以简化计算。

Core is removed from the core box and moved, if necessary, to a location where the instrument reads below background, and the measurement is collected by placing the sensor against the core at the required location. The drill cores are subject to comprehensive logging and sampling to characterize mineralization, alteration and structure. Drill core samples will be submitted to the Saskatchewan Research Council ("SRC") Geoanalytical Laboratories (ISO/IEC 17025:2005 accredited) for uranium assay and multi-element characterization. Reflectance spectrometry will be undertaken on additional core samples to determine the presence of indicator clay alteration.

必要时,将芯体从箱子中取出并移动到仪器读数低于背景的位置,通过将传感器放置在所需位置的芯体上收集测量值。钻孔芯体经过全面的记录和取样,以表征矿化、蚀变和结构。钻孔样品将提交给Saskatchewan Research Council(“SRC”)地质分析实验室(ISO/IEC 17025:2005认证)进行铀分析和多元素表征。还将对其他芯样进行反射光谱测量,以确定指示性粘土变质的存在。

Further details regarding the historical uranium occurrences noted in this news release can be found within the Saskatchewan Mineral Assessment Database (SMAD) and the Saskatchewan Mineral Deposit Index (SMDI). Fortune Bay has verified the majority of these occurrences through field prospecting and sampling, however there is a risk that any future confirmation work and exploration may produce results that substantially differ from the unverified historical results. The Company considers these unverified historical results relevant to assess the mineralization and economic potential of the property. The historical drill results obtained by SMDC in drill holes CKI-9 and CKI-10 can be found within the SMAD references 74N07-0310 and 74N07-0311 and have not been verified. Additional historical exploration results (uranium occurrences related to geochemistry results and scintillometer prospecting) derive from SMAD references 74N07-0290, 74N07-0287 and 74N07-0304.

有关本新闻发布中提到的历史铀矿产的更多详细信息可在萨斯喀彻温省矿物评估数据库(SMAD)和萨斯喀彻温省矿产储量指数(SMDI)中找到。富贵湾公司通过野外考察和取样已证实大多数这些矿床的存在,但是未经证实的历史结果可能与未来的确认工作和勘探产生极大的差异。公司认为这些未经证实的历史结果有助于评估该物业的矿化和经济潜力。SMDC在CKI-9和CKI-10钻孔中获得的历史钻探结果可在SMAD参考文献74N07-0310和74N07-0311中找到,未经证实。其他历史勘探结果(与地球化学结果和闪烁计数探矿有关的铀矿床)来自SMAD参考文献74N07-0290、74N07-0287和74N07-0304。

Qualified Person

合格人士

The technical content of this news release has been reviewed and approved by Galen McNamara, P. Geo., CEO of the Company and a qualified person as defined by National Instrument 43-101.

本新闻稿的技术内容已由本公司的CEO,符合《43-101号国家规定》定义的合格人员Galen McNamara P.Geo进行审查和批准。

About the Murmac Project

关于Murmac项目

Murmac, situated between the historical Gunnar and Lorado Uranium Mines, has shown significant promise. Historical exploration (1960-1980) revealed numerous high-grade uranium occurrences, though these were not systematically explored for basement-hosted mineralization typical of the Athabasca Basin. A 2022 drilling program by Fortune Bay confirmed the potential for high-grade uranium with significant findings in several drill holes, validating the exploration model.

Murmac位于历史悠久的Gunnar和Lorado铀矿之间,显示出重要潜力。 历史勘探(1960-1980)揭示了许多高品位铀出现,但这些并没有系统地探索Athabasca盆地典型的基底矿化。Fortune Bay在2022年的钻探计划证实了高品位铀的潜力,并在多个钻孔中发现了重要成果,验证了勘探模型。

About Aero Energy Limited

关于Aero Energy Limited

Aero Energy is a mineral exploration and development company advancing a district-scale 250,000-acre land package in the historic Uranium City district within Saskatchewan's Athabasca Basin. Aero Energy is focused on uncovering high-grade uranium deposits across its flagship optioned properties - Sun Dog, Strike, and Murmac - in addition to its fully owned properties. With the application of modern exploration techniques, the Company has identified over 50 shallow drill-ready targets and 125 kilometres of target horizon on the frontier north rim of the Athabasca Basin. Aero Energy is tapping into the Athabasca Basin's emerging potential for high-grade, unconformity-style mineralization.

Aero 能源是一家矿产资源勘探和开发公司,在萨斯喀彻温盆地历史悠久的铀城区拥有一个区域范围为 250,000 英亩的土地包。 Aero 能源致力于在自己的旗舰经营区 Sun Dog、 Strike 和 Murmac 以及自己完全拥有的矿区中发现高品位的铀矿床。通过运用现代勘探技术,该公司已确定了超过50个浅层钻探就绪目标和125公里的勘探走向,位于 Athabasca Basin 的前沿北缘区。 Aero 能源正在利用 Athabasca Basin 新兴的高品位不整合型矿化潜力。

On Behalf of the Board of Directors

Carl Esprey

Galen McNamara, Chief Executive Officer

Galen McNamara,首席执行官

Further information on the Company can be found on the Company's website at aeroenergy.ca and at , or by contacting the Company by email at info@aeroenergy.ca.

更多关于本公司的信息,请访问aeroenergy.ca网站以及,或通过电子邮件info@aeroenergy.ca与公司联系。

Cautionary Statement Regarding Forward-Looking Information

关于前瞻性信息的警示声明

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 release.

tsxv的监管服务提供商(在其政策中定义该术语)对本公告的充分性或准确性不承担责任。

This news release contains certain "forward looking statements" and certain "forward-looking information" as defined under applicable Canadian and U.S. securities laws. Forward-looking statements and information can generally be identified by the use of forward-looking terminology such as "may", "will", "should", "expect", "intend", "estimate", "anticipate", "believe", "continue", "plans" or similar terminology. The forward-looking information contained herein is provided for the purpose of assisting readers in understanding management's current expectations and plans relating to the future. These forward‐looking statements or information relate to, among other things the exploration and development of the Company's mineral exploration projects including completion of drilling activities.

本新闻发布包含某些“前瞻性声明”和某些“前瞻性信息”,如适用的加拿大和美国证券法所定义。前瞻性声明和信息通常可以通过使用前瞻性术语例如“可能”、“将要”、“应该”、“期望”、“打算”、“估计”、“预期”、“相信”、“继续”、“计划”或类似术语来识别。此处包含的前瞻信息是为了协助读者理解管理层与未来相关的当前期望和计划。这些前瞻性声明或信息涉及公司矿产勘探项目的勘探和开发,包括钻探活动的完成。

Forward-looking information is subject to known and unknown risks, uncertainties and other factors that may cause the actual actions, events or results to be materially different from those expressed or implied by such forward-looking information, including but not limited to: the requirement for regulatory approvals; enhanced uncertainty in global financial markets as a result of the public health crises; unquantifiable risks related to government actions and interventions; stock market volatility; regulatory restrictions; and other related risks and uncertainties.

前瞻信息受已知和未知的风险、不确定因素和其他因素的影响,这些因素可能导致实际行动、事件或结果与此类前瞻信息所表达或暗示的行动、事件或结果有实质性的不同,包括但不限于:需要获得监管批准;由于公共卫生危机而导致全球金融市场不确定性的增加;与政府行动和干预相关的无法量化的风险;股票市场波动;监管限制;以及其他相关风险和不确定性。

Forward-looking information are based on management of the parties' reasonable assumptions, estimates, expectations, analyses and opinions, which are based on such management's experience and perception of trends, current conditions and expected developments, and other factors that management believes are relevant and reasonable in the circumstances, but which may prove to be incorrect.

前瞻性信息基于各方合理的假设,估计,期望,分析和意见,这些假设,估计,期望,分析和意见是基于这些管理层的经验和对趋势,当前情况和预期发展的认识,以及管理层认为在这种情况下相关和合理的其他因素,但这些因素可能被证明是不正确的。

The Company undertakes no obligation to update forward-looking information except as required by applicable law. Such forward-looking information represents management's best judgment based on information currently available. No forward-looking statement can be guaranteed and actual future results may vary materially. Accordingly, readers are advised not to place undue reliance on forward-looking statements or information.

除适用法律规定外,公司不承担更新前瞻性信息的责任。这种前瞻性信息代表管理层根据目前可用的信息作出的最佳判断。任何前瞻性声明均无法保证实际未来结果可能会有实质性的变化。因此,读者被告知不要过度依赖前瞻性陈述或信息。

声明:本内容仅用作提供资讯及教育之目的,不构成对任何特定投资或投资策略的推荐或认可。 更多信息
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