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Myriad Uranium's Drilling at Copper Mountain Continues to Validate Historic Drill Results and Return High Grade Intercepts Across the Canning Deposit

Myriad Uranium's Drilling at Copper Mountain Continues to Validate Historic Drill Results and Return High Grade Intercepts Across the Canning Deposit

萬千鈾公司在銅山的鑽探繼續驗證歷史鑽探結果,並在卡寧存入資金中返回高品位的攔截。
newsfile ·  11/14 07:30

Vancouver, British Columbia--(Newsfile Corp. - November 14, 2024) - Myriad Uranium Corp. (CSE: M) (OTCQB: MYRUF) (FSE: C3Q) ("Myriad" or the "Company") is pleased to announce further results of equivalent uranium (eU3O8) grades from drilling at the Copper Mountain Uranium Project in Wyoming, USA (Figure 1). Spectral gamma ray logging continues to confirm high-grade uranium mineralisation at the Canning Deposit area and provides strong validation of the historic work done by Union Pacific at Canning and across the Project. These results are still to be confirmed by chemical assay of core and reverse circulation samples being collected from the drilling. Chemical assay results may differ from spectral gamma ray results.

溫哥華,英屬哥倫比亞--(資訊corp. - 2024年11月14日) - Myriad 鈾 corp. (cse: M) (otcqb: MYRUF) (fse: C3Q)("Myriad"或"公司")很高興地宣佈在美國懷俄明州銅山 鈾項目的鑽探中進一步得到等效 鈾(eU3O8)品位的結果(圖1)。光譜伽瑪射線測井繼續確認坎寧 存入資金區的高品位 鈾礦化,併爲聯合太平洋在坎寧和整個項目上所做的歷史工作提供了有力驗證。這些結果仍需通過從鑽探中收集的岩心和反向循環樣本的化學分析進行確認。化學分析結果可能與光譜伽瑪射線結果有所不同。

Highlights

亮點

  • ⁠Drilling continues to return highly encouraging eU3O8 results from the Canning Deposit area over a strike length of some 2,500 ft (~750 m).

  • Several intervals reporting average grade greater than 1,000 ppm eU3O8 and peak grade reaching up to 3,870 ppm eU3O8 in borehole CAN0021.

  • Highlights of significant intervals from the spectral gamma logging include:

    • CAN0013: 1,881 ppm eU3O8 over 8.20 feet (peak of 2,353 ppm eU3O8 at 305.53 feet)

    • CAN0013: 1,286 ppm eU3O8 over 6.89 feet (peak of 1,595 ppm eU3O8 at 330.13 feet)

    • CAN0021: 2,530 ppm eU3O8 over 6.56 feet (peak of 3,870 ppm eU3O8 at 301.60 feet)

    • CAN0021: 1,714 ppm eU3O8 over 4.26 feet (peak of 2,340 ppm eU3O8 at 330.46 feet)

    • CAN0023: 1,644 ppm eU3O8 over 8.53 feet (peak of 2,095 ppm eU3O8 at 448.87 feet)

  • Spectral gamma ray logging results show elevated uranium mineralisation (greater than 200 ppm eU3O8) across multiple intercepts in almost every hole drilled to-date.

  • The thirteen holes reported here contain 56 intervals over a minimum of 3 feet that are greater than 200 ppm eU3O8, 14 intervals greater than 500 ppm eU3O8, and 5 intervals greater than 1,000 ppm eU3O8.

  • It is important to note that this initial drill program is focused only on the Canning Deposit area, itself highly significant, but the Project Area also includes six other historical deposits and numerous prospects previously identified by Union Pacific, including Hesitation, Midnight, Knob, Bonanza, Fuller, Mint/Allard, and Kermac/Day, all of which have shown excellent potential through historical drilling and other exploration work.

  • In addition, our Copper Mountain Project Area includes the formerly-producing Arrowhead and Bonanza uranium mines, which are understood to have produced 0.50 Mlbs at 0.15% U3O8 and 0.78 Mlbs at 1.3% U3O8 respectively.

  • CEO Thomas Lamb commented: "Beyond the continuing strong gamma probe results, we are excited about what we are seeing as we log the core and RC chips from Canning in terms of alteration and other characteristics and the deeper understanding that this provides us regarding the deposit and mineralization potential. We are more and more confident that we have validated and gone beyond historical drilling results and limits. I also note that a recent gamma probe calibration test at the US DOE calibration facility in Casper, Wyoming, indicates that the already very strong grades we reported in our first six holes (reported here) may have been understated by as much as 13%. Further comparison will be made with sample assays from an accredited laboratory before any adjustments are made to the reported grade data. Details of this testing are set out below."

  • George van der Walt, Myriad's Qualified Person for the Project and Technical Advisor, commented: "It is encouraging that we continue to find high-grade intercepts in the Canning Deposit area. Most of the intercepts reported previously were concentrated on the eastern side of the Canning Deposit area, whereas the majority of holes in this report are concentrated on the western side of the area, over a strike length of some 2,500 ft (~750 m)."

  • 鑽探繼續在坎寧 存入資金區返回高度鼓舞人心的eU3O8結果,呈現約2,500英尺(~750米)的持續長度。

  • 多個間隔報告的平均品位超過1,000 ppm eU3O8,峯值品位達到3,870 ppm eU3O8,出現在鑽孔CAN0021中。

  • 譜伽瑪測井的重要間隔亮點包括:

    • CAN0013: 在8.20英尺範圍內測得1,881 ppm eU3O8(321.53英尺處峯值爲2,353 ppm eU3O8)

    • CAN0013: 在6.89英尺範圍內測得1,286 ppm eU3O8(330.13英尺處峯值爲1,595 ppm eU3O8)

    • CAN0021: 在6.56英尺範圍內測得2,530 ppm eU3O8(301.60英尺處峯值爲3,870 ppm eU3O8)

    • CAN0021: 1,714 ppm 鈾礦石在4.26英尺(在330.46英尺處峯值爲2,340 ppm 鈾礦石)

    • CAN0023: 1,644 ppm 鈾礦石在8.53英尺(在448.87英尺處峯值爲2,095 ppm 鈾礦石)

  • 譜伽馬射線測井結果顯示在幾乎所有鑽孔中均發現了高水平的鈾礦化(超過200 ppm 鈾礦石)。

  • 這裏報告的十三個孔位包含56個區間,至少3英尺長度內的鈾礦石含量超過200 ppm,14個區間超過500 ppm,5個區間超過1,000 ppm。

  • 值得注意的是,此初步鑽探計劃僅集中在Canning 存入資金區,該區域本身具有重要意義,但項目區域還包括其他六個歷史存入資金和聯合太平洋之前識別的衆多前景,包括Hesitation、Midnight、Knob、Bonanza、Fuller、Mint/Allard及Kermac/Day,所有這些在歷史鑽探和其他勘探工作中均顯示出良好的潛力。

  • 此外,我們的銅山項目區域包括曾經生產的Arrowhead和Bonanza鈾礦,已知分別生產了0.50百萬磅的0.15% U3O8和0.78百萬磅的1.3% U3O8。

  • 首席執行官Thomas Lamb評論道:「除了持續強勁的伽馬探測結果外,我們對在記錄Canning的核心和RC芯片時所看到的變化及其他特徵感到興奮,這爲我們提供了更深的理解,關於該存入資金及礦化潛力。我們越來越有信心,我們已經驗證並超越了歷史鑽探結果和限制。我還注意到,在懷俄明州卡斯珀的美國能源部校準設施進行的最近一次伽馬探測校準測試表明,我們在頭六孔中報告的已知很強的鈾礦石品位(在此報告)可能低估了多達13%。在調整報告的品位數據之前,我們將與認可實驗室的樣品分析進行進一步比較。此測試的詳細信息見下文。」

  • George van der Walt,Myriad項目的合格人員和技術顧問評論道:"我們在坎寧存入資金區域繼續發現高品位攔截點令人鼓舞。之前報告的多數攔截點集中在坎寧存入資金區域的東側,而本報告中大多數鑽孔則集中在該區域的西側,橫向長度約爲2500英尺(約750米)。"

Significant intervals derived from Spectral Gamma Ray (SGR) logging at 1000 ppm (0.10%) cut-off (over a minimum of 3 feet) include the following intervals. Note that grade intervals at 500 ppm (0.05%) and 200 ppm (0.02%) cut-offs are provided in Appendix 1:

通過光譜伽馬射線(SGR)記錄衍生的顯著區間,在1000 ppm (0.10%)截斷(至少3英尺)包括以下區間。請注意,Appendix 1中提供了500 ppm (0.05%)和200 ppm (0.02%)截斷的品位區間。

1000 ppm Cut-off (minimum 3 feet)
Peak Grade
eU3O8 (ppm)
Hole ID From (ft) To (ft) Length (ft) eU3O8 (ppm) eU3O8 (%) GT (ft%)
CAN0013 302.09 310.29 8.20 1881 0.188 1.54 2353
CAN0013 328.33 335.22 6.89 1286 0.129 0.89 1595
CAN0021 297.82 304.38 6.56 2530 0.253 1.66 3870
CAN0021 328.33 332.59 4.26 1714 0.171 0.73 2340
CAN0023 445.42 453.95 8.53 1644 0.164 1.40 2095
1000 ppm截斷(至少3英尺)
峯值品位
eU3O8 (ppm)
孔編號 從(英尺) 至(英尺) 長度(英尺) eU3O8 (ppm) eU3O8 (%) Gt (ft%)
CAN0013 302.09 310.29 8.20 1881 0.188 1.54 2353
CAN0013 328.33 335.22 6.89 1286 0.129 0.89 1595
CAN0021 297.82 304.38 6.56 2530 0.253 1.66 3870
CAN0021 328.33 332.59 4.26 1714 0.171 0.73 2340
CAN0023 445.42 453.95 8.53 1644 0.164 1.40 2095

Notes:

注:

  1. The interval lengths are "down the hole" and may not represent true width intervals as the exact nature of the mineralisation distribution has not been determined yet. However, most of the holes are being drilled at an inclination of 50 degrees to test a model that indicates steeply dipping mineralisation.
  2. Intervals were selected over a minimum of 3 feet, with grade below cut-off less than 1 foot being included in the total interval.
  3. The possible effects of disequilibrium have not been accounted for in the determination of eU3O8 grades.
  1. 間隔長度爲「下孔」並且可能不代表真實寬度間隔,因爲礦化分佈的具體性質尚未判斷。然而,大多數孔的傾角爲50度,以測試表明急傾斜礦化的模型。
  2. 間隔選取至少爲3英尺,低於切割值的等級小於1英尺的部分被包括在總間隔內。
  3. 沒有考慮到失衡的可能影響在判斷eU3O8等級中。

The boreholes represent a combination of diamond core and reverse circulation drilling that was planned to verify mineralisation identified in drilling by Union Pacific in the late 1970s and to test a grade shell model (above 0.05% eU3O8) created from cross-sections, as reported here and here.

這些鑽孔結合了金剛石芯和反循環鑽探,計劃是爲了驗證1970年代末聯合太平洋在鑽探中確定的礦化,並測試從橫截面創建的等級殼模型(高於0.05% eU3O8),如這裏和這裏所報道。

The majority of the boreholes in this report were drilled on the western side of the high-grade zone of the Canning Deposit area. This demonstrates the presence of high-grade mineralisation across a strike length of at least 2,500 ft (~750 m).

本報告中大多數鑽孔是在Canning Deposit區域高品位區的西側鑽探的。這證明在至少2500英尺(約750米)的走向長度上存在高品位礦化。

Figure 1: Map of completed boreholes in the Canning Deposit Area.

圖1:Canning Deposit區域已完成鑽孔的地圖。

Equipment and Methods

設備和方法

Drilling is being performed by Harris Exploration using two diamond core (DD) rigs producing HQ (63.5 mm / 2.5 in) core diameter and 96 mm (3.78 in) in hole diameter, and one reverse circulation (RC) rig using a 140 mm (5.5 in) hammer bit. Core samples are being packed into core trays and transported to Riverton for further processing. RC hole runs are being drilled at 5 ft intervals and split on site to produce two representative samples that are then transported to Riverton for further processing. All mineralised intervals will be submitted to ALS Laboratories for chemical analysis to confirm the intervals reported by gamma logging.

賀錦麗勘探正在使用兩臺金剛石岩心(DD)鑽機進行鑽探,產生HQ(63.5毫米/2.5英寸)岩心直徑和96毫米(3.78英寸)孔徑,以及一臺倒循環(RC)鑽機,使用140毫米(5.5英寸)錘頭。岩心樣品被裝入岩心托盤,運往裏弗頓進行進一步加工。RC孔隔段鑽進並在現場分裂,產生兩個代表性樣品,然後運往裏弗頓進行進一步加工。所有含礦段將提交給ALS實驗室進行化學分析,以確認伽馬測井報告的段。

Downhole logging is being performed by DGI Geoscience (DGI). A combination of Spectral Gamma Ray (SGR) and Optical Televiewer and/or Acoustic Televiewer is being applied. The probes are manufactured by Mount Sopris Instruments with details as follows:

DGI地球科學(DGI)正在進行下井測井。將應用Spectral Gamma Ray(SGR)和Optical Televiewer和/或Acoustic Televiewer的組合。探針由Mount Sopris Instruments製造,詳情如下:

  • QL40 SGR BGO (Sx): Measures the energy of gamma emissions from natural sources within formations crossed by a borehole. It counts the number of gamma emissions at each energy level aiding in lithological determination and correlation. The Probe use a Bismuth Germanium Oxide scintillation crystal.
  • QL40 SGR 2G CeBr3 (Sx): Measures the energy of gamma emissions from natural sources within formations crossed by a borehole. It counts the number of gamma emissions at each energy level aiding in lithological determination and correlation. The probe uses a CeBr3 (Cerium Bromide) scintillation crystal.
  • QL 40 ABI 2G (At, Gr): Captures high-resolution, oriented images of the borehole wall, allowing the orientation of acoustically visible features to be determined. This includes fractures, bedding/rock fabric, breakouts, bedding planes and other structural features. Contains a built in Natural Gamma sensor that measures the gamma emissions from natural sources in the formation.
  • QL OBI 2G (Ot, Gr): Captures a high-resolution, oriented image of the borehole wall using a CMOS digital image sensor, allowing the orientation of features to be determined. This includes fractures, bedding/rock fabric, veins, lithological contacts, etc. Contains a built in Natural Gamma sensor that measures the gamma emissions from natural sources in the formation.
  • QL40 SGR BGO (Sx):測量穿過鑽孔的地層中來自自然源的伽馬輻射能量。它計算每個能量級別的伽馬輻射數量,有助於岩石類型的判斷和關聯。該探測器使用鉍鎵氧化物閃爍晶體。
  • QL40 SGR 2G CeBr3(Sx):測量鑽井穿過的地層中來自自然來源的γ射線的能量。它計算每個能級的γ射線數量,有助於巖性判斷和相關性。該探頭使用CeBr3(溴化鈰)閃爍晶體。
  • QL 40 ABI 2G (At, Gr):捕捉鑽孔壁的高分辨率定向圖像,允許判斷聲學可見特徵的方向。這包括裂縫、層理/岩石結構、崩落、層面和其他結構特徵。內置自然伽馬傳感器,測量岩層中來自自然源的伽馬輻射。
  • QL OBI 2G(Ot,Gr):利用CMOS數字人形機器人-圖像傳感器拍攝高分辨率、定向的鑽孔壁面圖像,可用於判斷各種特徵的方位,包括裂縫、岩層/岩石構造、石英脈、巖性接觸等。內置天然伽馬傳感器,用於測量地層中自然來源的伽馬輻射。

The SGR probes measure the full energy spectrum of the gamma radiation emitted naturally from within the formations crossed by a borehole. A Full Spectrum Analysis (FSA) is performed on the recorded energy spectra. The FSA derives in real time the concentration of the three main radioisotopes 40K, 238U, 212Th, and thus also provides insight into the mineral composition of the formations. DGI is also running optical and acoustic televiewer, when hole conditions allow, to obtain downhole structural information. Borehole paths are being measured using a gyroscopic deviation tool.

SGR探頭測量由鑽孔穿過的地層中自然發射的伽馬輻射的完整能譜。對記錄的能譜進行全譜分析(FSA)。FSA實時推導出3種主要放射性同位素4萬、238U、212Th的濃度,從而還可以深入了解地層的礦物組成。DGI也在運行光學和聲學測井儀,當孔內條件允許時,以獲得井下結構信息。使用陀螺儀偏差工具測量鑽孔路徑。

Data Verification and Determination of eU3O8 Grades

數據驗證與確定eU3O8品位

Initial manufacturer calibration certificates have been provided to Myriad by DGI. Downhole gamma measurements are checked for a repeatability by comparing down and up runs in the borehole. DGI is providing conversion of API units measured by the SGR tools to eU3O8 concentrations using a standard conversion theory and formula.

初步生產商校準證書已經提供給DGI。通過比較鑽孔中向下和向上運行的伽馬測量,檢查下孔伽馬測量是否具有重複性。DGI提供將SGR工具測得的API單位轉換爲eU3O8濃度的標準轉換理論和公式。

DGI also ran a calibration test on both the BGO and CeBr3 SGR probes at the Department of Energy (DOE) calibration test facility in Casper, Wyoming on November 1st, 2024. The data indicates that the CeBr3 SGR probe is measuring accurately in the test pit to within 2% of the expected average value, but that the BGO probe is possibly underestimating eU3O8 grade by as much as 13%. The first six boreholes (CAN0001 - CAN0006) were run with the BGO probe and the remainder are all being run with the CeBr3 probe. Further comparison will be made with sample assays from an accredited laboratory before any adjustments are made to the reported grade data.

DGI於2024年11月1日在懷俄明州卡斯珀的能源部(DOE)校準測試設施對BGO和CeBr3 SGR探頭進行了校準測試。數據表明,CeBr3 SGR探頭在測試坑中的測量準確度在預期平均值的2%之內,但BGO探頭的eU3O8等級可能會低估多達13%。前六個鑽孔(CAN0001 - CAN0006)使用BGO探頭進行,剩餘的孔均使用CeBr3探頭進行。將在進行任何報告等級數據的調整之前,進一步與認證實驗室的樣品分析進行比較。

Radiometric Disequilibrium

放射性失衡

Radiometric disequilibrium refers to the loss or gain of uranium in the mineralised zone during geologic processes, which can disrupt the equilibrium between the parent isotope and its daughter products. At this stage the effect of disequilibrium has not been fully assessed at Copper Mountain, but it should be noted that geochemical analysis of samples from the drilling could report results for U3O8 that differ from the eU3O8 grades that have been derived from the gamma logging. Some historic reports state that closed can assays from Copper Mountain indicated little disequilibrium, however differences between gamma probe data and were observed. For this reason, the reported eU3O8 values should be considered as preliminary are subject to data verification by chemical assay with appropriate QAQC.

放射性失衡指的是在地質過程中,鈾在礦化帶中的損失或增益,這會打亂母同位素及其子產品之間的平衡。目前,銅山的失衡效應尚未完全評估,但需要注意的是,從鑽探中提取的樣本的地球化學分析可能報告與從伽馬測井得出的eU3O8等級不同的U3O8結果。一些歷史報告表明,銅山的封閉罐分析顯示幾乎沒有失衡,但觀察到了伽馬探頭數據之間的差異。因此,報告的eU3O8值應視爲初步值,並將根據適當的QAQC進行化學分析的數據驗證。

Myriad is in the process of collecting the samples of all the mineralised intervals from drilling and will submit them to a commercial laboratory for full chemical analysis. The results will then be compared to determine the potential effect of disequilibrium, or other factors, on the final uranium grades that will be used in mineral resource estimation when there is sufficient data to allow it.

Myriad正在收集所有鑽探中礦化帶的樣本,並將其提交給商業化驗室進行全面化學分析。然後將對結果進行比較,以判斷不平衡或其他因素對最終鈾品位的潛在影響,當有足夠數據允許時,這些結果將用於礦產資源估算。

Geological Background

地質背景

Uranium mineralisation at Copper Mountain occurs in two distinct geologic environments:

銅山地區的鈾化礦化發現在兩種不同的地質環境中:

  • Fracture-controlled uranium mineralisation hosted in Archaean-aged granite, syenite, isolated occurrences along the margins of diabase dikes and in association with meta-sediment inclusions in granite; and
  • As disseminations in coarse-grained sandstones and coatings on cobbles and boulders in the Tertiary-aged Teepee Trail Formation at the Arrowhead (Little Mo) mine and other localities.
  • 控制裂隙的鈾礦化寄主爲太古代花崗岩、正長巖,在輝長岩岩脈邊緣和花崗岩中的角水平面沉積物包含物相關的局部發現;以及
  • 在第三期的Teepee Trail組粗粒砂岩中的彌散體,在Arrowhead (Little Mo)礦和其他地方的礫石和大圓石上的覆蓋物。

Uranium mineralisation is thought to have resulted through supergene and hydrothermal enrichment processes. In both cases, the source of the uranium is thought to be the granites of the Owl Creek Mountains.

鈾礦化被認爲是通過超成因和熱液富集過程形成的。在這兩種情況下,鈾的來源被認爲是Owl Creek山脈的花崗岩。

Historical Estimates

歷史估算

While Myriad Uranium has determined that the historical estimates described in this news release are relevant to the Copper Mountain Project Area and are reasonably reliable given the authors and circumstances of their preparation, and are suitable for public disclosure, readers are cautioned to not place undue reliance on these historical estimates as an indicator of current mineral resources or mineral reserves at the Project Area. A qualified person (as defined under NI 43-101) has not done sufficient work to classify any of the historical estimates as current mineral resources or mineral reserves, and Myriad Uranium is not treating the historical estimates as a current mineral resource or mineral reserve. Also, while the Copper Mountain Project Area contains all or most of each deposit referred to, some of the resources referred to may be located outside the current Copper Mountain Project Area. Furthermore, the estimates are decades old and based on drilling data for which the logs are, as of yet, predominantly unavailable. The historical resource estimates, therefore, should not be unduly relied upon.

儘管Myriad Uranium已經確定,本新聞稿中描述的歷史估算與銅山項目區相關,並且考慮到其編制者和背景情況是相當可靠的,並適合公開披露,但讀者們被告以不要過分依賴這些歷史估算作爲項目區當前礦產資源或礦業儲量的指標。未滿足NI 43-101規定的合格人員尚未進行足夠工作將任何歷史估算分類爲當前礦產資源或礦業儲量,而Myriad Uranium也不將這些歷史估算視爲當前礦產資源或礦業儲量。此外,儘管銅山項目區包含提及的每個或大部分礦牀,但提及的一些資源可能位於當前銅山項目區之外。此外,這些估算數十年前的數據,基於鑽探數據,而這些鑽井數據目前主要尚無法獲取。因此,這些歷史資源估算不應被過度依賴。

Inherent limitations of the historical estimates include that the nature of the mineralisation (fracture hosted) makes estimation from drill data less reliable than other deposit types (e.g. those that are thick and uniform). From Myriad Uranium's viewpoint, limitations include that the Company has not been able to verify the data itself and that the estimate may be optimistic relative to subsequent work which applied a "delayed fission neutron" (DFN) factor to calculate grades. On the other hand, DFN is controversial, in that the approach is viewed by some experts as too conservative. Nevertheless, it was applied in later resource estimations by Union Pacific relating to Copper Mountain.

歷史估計的固有侷限性包括,礦化性質(裂隙寄主)使得通過鑽探數據進行估算比其他類型礦牀(例如厚度均勻的礦牀)的可靠性較低。 從Myriad Uranium的觀點來看,侷限性包括公司無法驗證數據本身,而且估計值可能樂觀,相對於後續應用「延遲裂變中子」(DFN)因子計算等級的工作。 另一方面,DFN是有爭議的,一些專家認爲這種方法過於保守。 儘管如此,聯合太平洋關於銅山後續資源評估中也應用了這種方法。

To verify the historical estimates and potentially re-state them as current resources, a program of digitization of available data would be required. This must be followed by re-logging and/or re-drilling to generate new data to the extent necessary that it is comparable with the original data, or new data that can be used to establish the correlation and continuity of geology and grades between boreholes with sufficient confidence to estimate mineral resources.

爲了驗證歷史估算並可能將其重新聲明爲當前資源,需要進行可用數據的數字化程序。這必須隨後進行重新記錄和/或重新鑽探,以生成新的數據,儘可能使其與原始數據可以比較,或者生成可以用於建立地質和礦石品位在鑽孔之間相關性和連續性的新的數據,以足夠的信心來估算礦產資源。

Qualified Person

合格人士

The scientific or technical information in this news release respecting the Company's Copper Mountain Project has been approved by George van der Walt, MSc., Pr.Sci.Nat., FGSSA, a Qualified Person as defined in National Instrument 43-101 - Standards of Disclosure for Mineral Projects. Mr van der Walt is employed by The MSA Group (Pty) Ltd (MSA), a leading geological consultancy providing services to the minerals industry, based in Johannesburg, South Africa. He has more than 20 years industry experience and sufficient relevant experience in the type and style of mineralisation to report on exploration results.

這則新聞稿中關於公司的銅山項目的科學或技術信息已獲得George van der Walt,MSc.,Pr.Sci.Nat.,FGSSA批准,他是根據加拿大43-101號《礦產項目披露標準》中定義的合格人員。 van der Walt先生受聘於The MSA Group (Pty) Ltd(MSA),這是總部位於南非約翰內斯堡的爲礦業提供服務的領先地質諮詢公司。 他在該行業擁有20多年的經驗,並擁有在勘探結果上報告的相關礦化類型和風格的足夠相關經驗。

The information and interpretations thereof are based on the Qualified Person's initial review of historical reports, which were recently obtained by the Company. The information did not include original data such as drilling records, sampling, analytical or test data underlying the information or opinions contained in the written documents. Therefore, the Qualified Person has not reviewed or otherwise verified the information and has not done sufficient work to classify the historical estimates as current mineral resources or mineral reserves. The Qualified Person considers the information to be relevant based on the amount and quality of work undertaken and reported historically. A more thorough review of any available original data will be undertaken and reported on in more detail in future releases.

信息及其解釋是基於合格人對最近由公司獲得的歷史報告的初步評估。該信息未包括原始數據,例如作爲書面文件中信息或意見基礎的鑽孔記錄、採樣、分析或測試數據。因此,合格人尚未審查或驗證該信息,並且尚未做足夠的工作將歷史估計分類爲當前礦物資源或礦物儲量。鑑於已經進行的工作的數量和質量,合格人認爲該信息是相關的。將進行更全面的對可用原始數據的審查,並將在將來的信息公告中更詳細地報告。

About Myriad Uranium Corp.

無數還擁有加拿大新斯科舍省Millen Mountain Property的50%利益,另外50%歸Probe Metals Inc.所有,並擁有尼日爾鈾勘探許可的80%權益。有關詳細信息,請參閱無數在SEDAR+()上的披露記錄,通過電話+1.604.418.2877與無數聯繫,或參閱無數的網站。

Myriad Uranium Corp. is a uranium exploration company with an earnable 75% interest in the Copper Mountain Uranium Project in Wyoming, USA. Copper Mountain hosts several known uranium deposits and historic uranium mines, including the Arrowhead Mine which produced 500,000 lbs of eU3O8. Copper Mountain saw extensive drilling and development by Union Pacific during the late 1970s including the development of a mine plan to fuel a planned fleet of California Edison reactors. Operations ceased in 1980 before mining could commence due to falling uranium prices. Approximately 2,000 boreholes have been drilled at Copper Mountain and the Project Area has significant exploration upside. Union Pacific is estimated to have spent C$117 million (2024 dollars) exploring and developing Copper Mountain, generating significant historical resource estimates which are detailed here. A recent detailed update with Crux Investor can be viewed here. The Company's presentation can be viewed here. News releases regarding historical drilling can be viewed here and here.

Myriad 鈾業 corp. 是一家鈾勘探公司,在位於美國懷俄明州的銅山鈾礦項目中擁有可賺取的75%的權益。銅山擁有幾個已知的鈾存儲量和歷史鈾礦,包括生產了500,000磅 eU3O8 的 Arrowhead 礦。銅山在1970年代末曾接受聯合太平洋的廣泛鑽探和開發,包括制定一項礦山開發計劃,爲計劃中的加利福尼亞愛迪生反應堆提供燃料。由於鈾價下跌,運營在1980年停止,尚未開始開採。目前,美景地區已鑽探了約2,000個鑽孔,並且項目區域具有顯著的勘探潛力。估計聯合太平洋爲勘探和開發銅山花費了C$11700萬(2024年美元),產生了顯著的歷史資源估算,詳細信息在此處述說。與Crux投資者的最新詳細更新可在此處查看。公司的展示可在此處查看。關於歷史鑽探的新聞稿可在此處和此處查看。

Myriad also has a 50% interest in the Millen Mountain Property in Nova Scotia, Canada, with the other 50% held by Probe Gold Inc. For further information, please refer to Myriad's disclosure record on SEDAR+ (), contact Myriad by telephone at +1.604.418.2877, or refer to Myriad's website at .

Myriad還擁有加拿大新斯科舍省Millen Mountain Property 50%的權益,另外50%由Probe Gold Inc.持有。 有關更多信息,請參閱Myriad在SEDAR+()的披露記錄,通過電話聯繫Myriad,電話+1.604.418.2877,或訪問Myriad的網站。

Myriad Contacts:
Thomas Lamb
President and CEO
tlamb@myriaduranium.com

Myriad聯繫方式:
Thomas Lamb
董事長兼首席執行官
tlamb@myriaduranium.com

Forward-Looking Statements

前瞻性聲明

This news release contains "forward-looking information" that is based on the Company's current expectations, estimates, forecasts and projections. This forward-looking information includes, among other things, the Company's business, plans, outlook and business strategy. The words "may", "would", "could", "should", "will", "likely", "expect," "anticipate," "intend", "estimate", "plan", "forecast", "project" and "believe" or other similar words and phrases are intended to identify forward-looking information. The reader is cautioned that assumptions used in the preparation of any forward-looking information may prove to be incorrect, including with respect to the Company's business plans respecting the exploration and development of the Company's mineral properties, the proposed work program on the Company's mineral properties and the potential and economic viability of the Company's mineral properties. Forward-looking information is subject to known and unknown risks, uncertainties and other factors that may cause the Company's actual results, level of activity, performance or achievements to be materially different from those expressed or implied by such forward-looking information. Such factors include, but are not limited to: changes in economic conditions or financial markets; increases in costs; litigation; legislative, environmental and other judicial, regulatory, political and competitive developments; and technological or operational difficulties. This list is not exhaustive of the factors that may affect our forward-looking information. These and other factors should be considered carefully, and readers should not place undue reliance on such forward-looking information. The Company does not intend, and expressly disclaims any intention or obligation to, update or revise any forward-looking information whether as a result of new information, future events or otherwise, except as required by applicable law.

本新聞稿包含基於公司目前期望、估計、預測和展望的「前瞻性信息」。這些前瞻性信息包括公司的業務、計劃、展望和業務策略等內容。"可能","將","可能","應該","將","可能","預期","期待","打算","估計","計劃","預測","項目"和"相信"等詞語旨在識別前瞻性信息。讀者應注意,在準備任何前瞻性信息時所使用的假設可能會被證明是錯誤的,包括涉及探索和開發公司礦產物業的公司業務計劃、公司礦產物業上擬議的工作計劃以及公司礦產物業的潛力和經濟可行性。前瞻性信息受已知和未知的風險、不確定性和其他因素的影響,這可能導致公司的實際結果、活動水平、表現或成就與此類前瞻性信息所暗示或表達的實際結果存在重大差異。此類因素包括但不限於:經濟狀況或金融市場的變化;成本上升;訴訟;立法、環境和其他司法、監管、政治和競爭發展;以及技術或運營困難。這些列舉的因素並非窮盡會影響我們前瞻性信息的因素。這些因素及其他因素應謹慎考慮,讀者不應過度依賴此類前瞻性信息。公司無意,並明確否認任何更新或修訂任何前瞻性信息的意圖或義務,除非有適用法律要求。

The CSE has not reviewed, approved or disapproved the contents of this news release.

加拿大證券交易所未審查,未批准或不批准此新聞稿的內容。

APPENDIX 1: Equivalent uranium (eU3O8) intervals at 500 ppm and 200 ppm cut-off (over 3 ft minimum)

附錄1:在500 ppm和200 ppm截止(最小3英尺)下的等效鈾(eU3O8)區間

500 ppm Cut-off (minimum 3 feet)
Hole ID From (ft) To (ft) Length (ft) eU3O8 (ppm) eU3O8 (%) GT (ft%)
CAN0011 386.71 391.63 4.92 877 0.088 0.43
CAN0012 328.33 335.87 7.54 718 0.072 0.54
CAN0013 290.94 310.94 20.01 1251 0.125 2.50
CAN0013 321.11 337.18 16.07 950 0.095 1.53
CAN0014 568.42 574.33 5.90 960 0.096 0.57
CAN0019 267.65 277.16 9.51 668 0.067 0.64
CAN0019 292.25 301.43 9.18 629 0.063 0.58
CAN0019 583.18 588.43 5.25 712 0.071 0.37
CAN0020 439.85 448.38 8.53 910 0.091 0.78
CAN0021 297.17 307.99 10.82 1789 0.179 1.94
CAN0021 327.02 333.25 6.23 1395 0.139 0.87
CAN0023 317.50 320.78 3.28 760 0.076 0.25
CAN0023 370.31 374.25 3.94 664 0.066 0.26
CAN0023 443.13 457.23 14.10 1269 0.127 1.79
500 ppm截段(最小3英尺)
孔編號 從(英尺) 至(英尺) 長度(英尺) eU3O8 (ppm) eU3O8 (%) Gt (ft%)
CAN0011 386.71 391.63 4.92 877 0.088 0.43
CAN0012 328.33 335.87 7.54 718 0.072 0.54
CAN0013 290.94 310.94 20.01 1251 0.125 2.50
CAN0013 321.11 337.18 16.07 950 0.095 1.53
CAN0014 568.42 574.33 5.90 960 0.096 0.57
CAN0019 267.65 277.16 9.51 668 0.067 0.64
CAN0019 292.25 301.43 9.18 629 0.063 0.58
CAN0019 583.18 588.43 5.25 712 0.071 0.37
CAN0020 439.85 448.38 8.53 910 0.091 0.78
CAN0021 297.17 307.99 10.82 1789 蘋果CEO庫克大規模沽出股票,套現超過3億港元。 1.94
CAN0021 327.02 333.25 6.23 1395 0.139 0.87
CAN0023 317.50 320.78 3.28 760 0.076 0.25
CAN0023 370.31 374.25 3.94 664 0.066 0.26
CAN0023 443.13 457.23 14.10 1269 0.127 1.79
200 ppm Cut-off (minimum 3 feet)
Hole ID From (ft) To (ft) Length (ft) eU3O8 (ppm) eU3O8 (%) GT (ft%)
CAN0011 201.39 211.23 9.84 323 0.032 0.32
CAN0011 211.89 217.46 5.58 360 0.036 0.20
CAN0011 228.29 247.97 19.68 317 0.032 0.62
CAN0011 249.28 257.48 8.20 307 0.031 0.25
CAN0011 263.71 274.21 10.50 290 0.029 0.30
CAN0011 289.95 304.06 14.10 328 0.033 0.46
CAN0011 318.16 331.94 13.78 270 0.027 0.37
CAN0011 338.50 342.43 3.94 258 0.026 0.10
CAN0011 357.19 363.10 5.90 287 0.029 0.17
CAN0011 370.97 376.87 5.90 246 0.025 0.15
CAN0011 385.40 393.27 7.87 674 0.067 0.53
CAN0012 323.74 340.14 16.40 513 0.051 0.84
CAN0012 344.73 349.65 4.92 262 0.026 0.13
CAN0012 423.45 429.35 5.90 431 0.043 0.25
CAN0012 464.12 470.35 6.23 258 0.026 0.16
CAN0013 287.98 312.26 24.27 1086 0.109 2.64
CAN0013 316.19 339.81 23.62 811 0.081 1.91
CAN0013 620.25 627.79 7.54 271 0.027 0.20
CAN0014 422.14 425.42 3.28 264 0.026 0.09
CAN0014 538.58 541.86 3.28 312 0.031 0.10
CAN0014 550.38 553.66 3.28 256 0.026 0.08
CAN0014 555.30 576.62 21.32 595 0.060 1.27
CAN0014 582.53 587.78 5.25 222 0.022 0.12
CAN0014 589.74 594.01 4.26 212 0.021 0.09
CAN0014 596.63 615.00 18.37 230 0.023 0.42
CAN0015 166.62 181.71 15.09 359 0.036 0.54
CAN0015 190.24 213.86 23.62 300 0.030 0.71
CAN0015 215.50 226.32 10.82 286 0.029 0.31
CAN0015 232.22 250.92 18.70 274 0.027 0.51
CAN0015 254.20 261.42 7.22 257 0.026 0.19
CAN0015 265.02 268.96 3.94 284 0.028 0.11
CAN0015 270.60 278.14 7.54 249 0.025 0.19
CAN0015 676.01 679.29 3.28 242 0.024 0.08
CAN0015 717.66 722.58 4.92 345 0.034 0.17
CAN0016 525.46 534.31 8.86 367 0.037 0.33
CAN0017 No intervals with eU3O8 greater than 200 ppm
CAN0018 269.29 273.55 4.26 451 0.045 0.19
CAN0019 217.14 231.24 14.10 359 0.036 0.51
CAN0019 232.55 279.13 46.58 373 0.037 1.74
CAN0019 287.98 304.06 16.07 482 0.048 0.77
CAN0019 310.62 329.31 18.70 293 0.029 0.55
CAN0019 582.20 590.73 8.53 556 0.056 0.47
CAN0020 438.54 449.36 10.82 787 0.079 0.85
CAN0020 485.77 490.69 4.92 281 0.028 0.14
CAN0020 517.58 520.86 3.28 211 0.021 0.07
CAN0021 128.25 131.86 3.61 389 0.039 0.14
CAN0021 296.18 309.63 13.45 1507 0.151 2.03
CAN0021 325.05 334.23 9.18 1057 0.106 0.97
CAN0022 482.16 486.75 4.59 427 0.043 0.20
CAN0022 702.90 707.50 4.59 257 0.026 0.12
CAN0023 310.94 322.10 11.15 442 0.044 0.49
CAN0023 334.89 344.73 9.84 320 0.032 0.31
CAN0023 356.54 362.44 5.90 287 0.029 0.17
CAN0023 368.67 375.23 6.56 541 0.054 0.35
CAN0023 441.82 461.50 19.68 990 0.099 1.95
CAN0023 547.10 550.38 3.28 440 0.044 0.14
200 ppm 截止(最小 3 英尺)
孔編號 從(英尺) 至(英尺) 長度(英尺) eU3O8 (ppm) eU3O8 (%) Gt (ft%)
CAN0011 201.39 211.23 9.84 323 0.032 0.32
CAN0011 211.89 217.46 5.58 360 0.036 0.20
CAN0011 228.29 247.97 19.68 317 0.032 0.62
CAN0011 249.28 257.48 8.20 307 0.031 0.25
CAN0011 263.71 274.21 10.50 290 0.029 0.30
CAN0011 289.95 304.06 14.10 328 0.033 0.46
CAN0011 318.16 331.94 13.78 270 0.027 0.37
CAN0011 338.50 342.43 3.94 258 0.026 0.10
CAN0011 357.19 363.10 5.90 287 0.029 0.17
CAN0011 370.97 376.87 5.90 246 0.025 0.15
CAN0011 385.40 393.27 7.87 674 0.067 0.53
CAN0012 323.74 340.14 16.40 513 0.051 0.84
CAN0012 344.73 349.65 4.92 262 0.026 0.13
CAN0012 423.45 429.35 5.90 431 0.043 0.25
CAN0012 464.12 470.35 6.23 258 0.026 0.16
CAN0013 287.98 312.26 24.27 1086 0.109 2.64
CAN0013 316.19 339.81 23.62 811 0.081 1.91
CAN0013 620.25 627.79 7.54 271 0.027 0.20
CAN0014 422.14 425.42 3.28 264 0.026 0.09
CAN0014 538.58 541.86 3.28 312 0.031 0.10
CAN0014 550.38 553.66 3.28 256 0.026 0.08
CAN0014 555.30 576.62 21.32 595 0.060 1.27
CAN0014 582.53 587.78 5.25 222 0.022 0.12
CAN0014 589.74 594.01 4.26 212 0.021 0.09
CAN0014 596.63 615.00 18.37 230 0.023 0.42
CAN0015 166.62 181.71 15.09 359 0.036 0.54
CAN0015 190.24 213.86 23.62 300 0.030 0.71
CAN0015 215.50 226.32 10.82 286 0.029 0.31
CAN0015 232.22 250.92 18.70 274 0.027 0.51
CAN0015 254.20 261.42 7.22 257 0.026 0.19
CAN0015 265.02 268.96 3.94 284 0.028 0.11
CAN0015 270.60 278.14 7.54 249 0.025 0.19
CAN0015 676.01 679.29 3.28 242 0.024 0.08
CAN0015 717.66 722.58 4.92 345 0.034 0.17
CAN0016 525.46 534.31 8.86 367 0.037 0.33
CAN0017 沒有eU3O8超過200 ppm的區間
CAN0018 269.29 273.55 4.26 451 每股Canna-Global公衆A類普通股每月延長$0.045(擴展修正提案)。 0.19
CAN0019 217.14 231.24 14.10 359 0.036 0.51
CAN0019 232.55 279.13 46.58 373 0.037 1.74
CAN0019 287.98 304.06 16.07 482 0.048 0.77
CAN0019 310.62 329.31 18.70 293 0.029 0.55
CAN0019 582.20 590.73 8.53 556 0.056 0.47
CAN0020 438.54 449.36 10.82 787 0.079 0.85
CAN0020 485.77 490.69 4.92 281 0.028 0.14
CAN0020 517.58 520.86 3.28 211 0.021 0.07
CAN0021 128.25 131.86 3.61 389 0.039 0.14
CAN0021 296.18 309.63 13.45 1507 0.151 2.03
CAN0021 325.05 334.23 9.18 1057 0.106 0.97
CAN0022 482.16 486.75 4.59 427 0.043 0.20
CAN0022 702.90 707.50 4.59 257 0.026 0.12
CAN0023 310.94 322.10 11.15 442 0.044 0.49
CAN0023 334.89 344.73 9.84 320 0.032 0.31
CAN0023 356.54 362.44 5.90 287 0.029 0.17
CAN0023 368.67 375.23 6.56 541 0.054 0.35
CAN0023 441.82 461.50 19.68 990 0.099 1.95
CAN0023 547.10 550.38 3.28 440 0.044 0.14

APPENDIX 1: Table of drilled positions

附錄1: 鑽探位置表

声明:本內容僅用作提供資訊及教育之目的,不構成對任何特定投資或投資策略的推薦或認可。 更多信息
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