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Myriad Reports on Historic Drilling at Copper Mountain

Myriad Reports on Historic Drilling at Copper Mountain

關於銅山歷史性鑽探的無數報道
newsfile ·  03/05 20:30

Vancouver, British Columbia--(Newsfile Corp. - March 5, 2024) - Myriad Uranium Corp. (CSE: M) (OTCQB: MYRUF) (FSE: C3Q) ("Myriad" or the "Company") is pleased to announce a compilation of significant historic eU3O8 grade intervals at its Copper Mountain project, compiled from cross-sections prepared by Anaconda Uranium ("Anaconda") in 1997. These cross-sections were found during the Company's ongoing review of proprietary paper-based historical data sets. The intervals confirm that there is high grade material close to the surface at Copper Mountain and give Myriad a clear path to re-evaluating the resources and confirming the feasibility of mining, taking the Company much closer to production than previously thought.

不列顛哥倫比亞省溫哥華--(Newsfile Corp.-2024 年 3 月 5 日)- Myriad 鈾公司。(CSE: M) (OTCQB: MYRUF) (FSE: C3Q) (”Myriad“或者”公司“) 很高興地宣佈重要的歷史性歐盟彙編3O8 其銅山項目的品位間隔,根據Anaconda Uranium(“Anaconda”)在1997年編制的橫截面彙編而成。這些橫截面是在公司持續審查專有的紙質歷史數據集時發現的。這些間隔證實了銅山地表附近有高品位的材料,這爲Myriad提供了重新評估資源和確認採礦可行性的明確途徑,使公司比以前想象的更接近生產。

The intervals relate to 82 boreholes drilled into what Anaconda called the "High Grade Zone" of the North Canning deposit (see Figure 3 below) by a subsidiary of Union Pacific Railway, Rocky Mountain Energy ("RME"). RME had intended North Canning to be the centre of a three-pit mine they were planning in the late 1970s. The cross-sections include a significant number of high-grade intervals (up to 0.385% eU3O8) and many long, mineralized intervals (up to 291 feet). Grage-Thickness (GT) products range from the minimum selected 0.3 ft% (equivalent to 0.1% over 3 feet) to 11.55 ft% (represented by 0.05% eU3O8 over 231 feet). Highlights are set out at Table 1 below and a full listing of results from the boreholes are available here. Within the data set compiled, there are 56 intervals >0.1% eU3O8 and 8 intervals >0.2% eU3O8. It should be borne in mind that this represents only a small portion of the total area of data collection for one of the project areas.

這些間隔涉及聯合太平洋鐵路的子公司洛基山能源公司(“RME”)在Anaconda所謂的北坎寧礦牀的 “高品位區域”(見下圖3)鑽探的82個鑽孔。RME曾打算將北坎寧作爲他們在1970年代後期計劃建造的三坑礦山的中心。橫截面包括大量的高等級間隔(高達 0.385% eU3O8)和許多漫長的礦化間隔(最長 291 英尺)。灰厚度 (GT) 產品範圍從選定的最低 0.3 英尺百分比(相當於 3 英尺以上的 0.1%)到 11.55 英尺百分比(以 0.05% 歐盟表示)不等3O8 超過 231 英尺)。要點列於下文表1,鑽孔結果的完整清單可在此處獲得。在彙編的數據集中,有 56 個間隔 > 0.1% eU3O8 和 8 個間隔 > 0.2% eU3O8。應該記住,這僅佔其中一個項目區域的數據收集總面積的一小部分。

Myriad's CEO Thomas Lamb commented, "These are exciting cross-sections. They demonstrate that there is significant high-grade uranium at Copper Mountain and they provide us with a roadmap to fast-track the required confirmation work. These particular boreholes were drilled in the High Grade Zone at an important structural boundary of the North Canning area, adjacent to the more moderate-grade zones of the main North Canning deposit area. Union Pacific had intended the North Canning deposit to be a moderate-grade bulk-tonnage central pit for a large mining operation. They had conducted considerable test work and built a heap leach pad before discontinuing development due to fast-falling uranium prices at the end of the 1970s."

Myriad 的首席執行官托馬斯·蘭姆評論說, “這些都是令人興奮的橫截面。他們證明銅山有大量的高品位鈾,他們爲我們提供了快速完成所需確認工作的路線圖。這些特殊的鑽孔是在北坎寧地區重要結構邊界的高品位區域鑽探的,毗鄰北坎寧主要礦牀區的中等品位區域。聯合太平洋曾打算將北坎寧礦牀作爲大型採礦作業的中等品位散裝噸位的中央礦坑。由於1970年代末鈾價格快速下跌,他們已經進行了大量的測試工作並建造了堆浸墊,然後才停止開發。”

Thomas Lamb then continued "Historically, other high-grade zones away from North Canning saw only limited drilling and we are now armed with geological insight to help us pursue trends - particularly faults that are now much better understood and have not been explored yet. This gives us confidence that we can increase overall grades and volumes relative to RME's historic estimates and also consider alternatives such as initially developing a current resource estimate for just the smaller high-grade areas of North Canning as a first step. Experts such as Union Pacific's manager of exploration at Copper Mountain during the 1970s, Jim Davis, who recently joined Myriad's Technical Committee, have speculated that fault trends at Copper Mountain could lead to the discovery of noncomformity-type deposits and 'represent an attractive potential for large uranium deposits, based on world-class models, including the French granite, Navarrette, Australia, and Beaverlodge, Canada'. This view is bolstered by the fact that high grade at North Canning is associated with amphibolite schists, a feature shared with Beaverlodge, a vast uranium complex in the Athabasca Basin."

然後,托馬斯·蘭姆繼續說。”從歷史上看,北坎寧以外的其他高品位區域的鑽探量有限,我們現在擁有地質洞察力,可以幫助我們追求趨勢,尤其是那些現在已被更好地了解且尚未勘探的斷層。這使我們有信心,相對於RME的歷史估計,我們可以提高整體品位和產量,還可以考慮其他方案,例如作爲第一步,最初僅對北坎寧較小的高品位地區進行當前的資源估算。20世紀70年代聯合太平洋公司銅山勘探經理吉姆·戴維斯等專家推測,銅山的斷層趨勢可能導致非合群型礦牀的發現,“根據包括法國花崗岩、澳大利亞納瓦雷特和加拿大比弗洛奇在內的世界級模型,大型鈾礦牀具有誘人的潛力”。北坎寧的高品位與閃石片岩有關,這一事實支持了這種觀點,這一特徵與位於阿薩巴斯卡盆地的大型鈾礦綜合體Beaverlodge相同。”

Interval Highlights

間隔亮點

Note that these reported intervals have not been verified by new measurements and should serve as a guide only for assessing the grade potential of targeted mineralization at Copper Mountain. A full listing of results from the captured boreholes is available here.

請注意,這些報告的間隔尚未經過新的測量結果的驗證,應僅作爲評估銅山目標礦化的品位潛力的指南。捕獲的鑽孔結果的完整清單可在此處獲得。

Table 1 Summary of highlighted significant eU3O8 intervals from the North Canning area

表 1 重點重要歐盟摘要3O8 距離北坎寧地區的間隔

Borehole ID From (ft) To (ft) Interval (ft) eU3O8 (%) GT (ft%)
LH00041
228 255 27 0.075 2.03
Including 249 252 3 0.385 1.16

345 420 75 0.053 3.98
Including 387 399 12 0.145 1.74
LH00056
303 375 72 0.075 5.40
Including 306 309 3 0.173 0.52
Including 315 321 6 0.217 1.30
Including 333 336 3 0.130 0.39
Including 348 354 6 0.146 0.88
LH00064
57 90 33 0.098 3.23
Including 66 84 18 0.153 2.75

111 144 33 0.062 2.05
Including 117 123 6 0.218 1.31

279 312 33 0.107 3.53
Including 288 306 18 0.147 2.65
LH00166
105 150 45 0.047 2.12

183 321 138 0.036 4.97
Including 294 306 12 0.180 2.16
LH00182
171 462 291 0.039 11.35
Including 294 306 12 0.180 2.16
LH00508
168 246 78 0.041 3.20
Including 225 228 3 0.117 0.35
LH00513
204 435 231 0.050 11.55
Including 261 267 6 0.163 0.98
Including 366 378 12 0.145 1.74
Including 390 393 3 0.143 0.43
Including 405 411 6 0.128 0.77
LH00565
387 579 192 0.045 8.64
Including 516 525 9 0.167 1.50
LH00567
153 324 171 0.063 10.77
Including 240 258 18 0.109 1.96
Including 285 306 21 0.164 3.44
LH00581
390 450 60 0.074 4.44
Including 414 423 9 0.311 2.80
LH00598
393 597 204 0.040 8.16
Including 510 531 21 0.137 2.88
LH00956
270 288 18 0.112 2.02
Including 279 285 6 0.228 1.37

453 543 90 0.046 4.14
Including 483 486 3 0.100 0.30
Including 501 507 6 0.129 0.77
LH00957
156 351 195 0.055 10.73
Including 273 288 15 0.113 1.70
MG00060
282 297 15 0.085 1.28
Including 285 288 3 0.202 0.61
MG00061
249 273 24 0.101 2.42
Including 252 261 9 0.172 1.55
MG00093
519 528 9 0.097 0.87
Including 522 528 6 0.139 0.83

561 579 18 0.056 1.01
Including 564 567 3 0.195 0.59
MG00100
459 483 24 0.018 0.43
Including 468 480 12 0.332 3.98
MG00128
414 423 9 0.100 0.90
Including 417 420 3 0.252 0.76

435 471 36 0.072 2.59
Including 438 453 15 0.119 1.79

717 789 72 0.035 2.52
鑽孔 ID 從(英尺) 到(英尺) 間隔 (英尺) 歐盟3O8 (%) GT (ft%)
LH00041
228 255 27 0.075 2.03
包括 249 252 3 0.385 1.16

345 420 75 0.053 3.98
包括 387 399 12 0.145 1.74
LH00056
303 375 72 0.075 5.40
包括 306 309 3 0.173 0.52
包括 315 321 6 0.217 1.30
包括 333 336 3 0.130 0.39
包括 348 354 6 0.146 0.88
LH00064
57 90 33 0.098 3.23
包括 66 84 18 0.153 2.75

111 144 33 0.062 2.05
包括 117 123 6 0.218 1.31

279 312 33 0.107 3.53
包括 288 306 18 0.147 2.65
LH00166
105 150 45 0.047 2.12

183 321 138 0.036 4.97
包括 294 306 12 0.180 2.16
LH00182
171 462 291 0.039 11.35
包括 294 306 12 0.180 2.16
LH00508
168 246 78 0.041 3.20
包括 225 228 3 0.117 0.35
LH00513
204 435 231 0.050 11.55
包括 261 267 6 0.163 0.98
包括 366 378 12 0.145 1.74
包括 390 393 3 0.143 0.43
包括 405 411 6 0.128 0.77
LH00565
387 579 192 0.045 8.64
包括 516 525 9 0.167 1.50
LH00567
153 324 171 0.063 10.77
包括 240 258 18 0.109 1.96
包括 285 306 21 0.164 3.44
LH00581
390 450 60 0.074 4.44
包括 414 423 9 0.311 2.80
LH00598
393 597 204 0.040 8.16
包括 510 531 21 0.137 2.88
LH00956
270 288 18 0.112 2.02
包括 279 285 6 0.228 1.37

453 543 90 0.046 4.14
包括 483 486 3 0.100 0.30
包括 501 507 6 0.129 0.77
LH00957
156 351 195 0.055 10.73
包括 273 288 15 0.113 1.70
MG00060
282 297 15 0.085 1.28
包括 285 288 3 0.202 0.61
MG00061
249 273 24 0.101 2.42
包括 252 261 9 0.172 1.55
MG00093
519 528 9 0.097 0.87
包括 522 528 6 0.139 0.83

561 579 18 0.056 1.01
包括 564 567 3 0.195 0.59
MG00100
459 483 24 0.018 0.43
包括 468 480 12 0.332 3.98
MG00128
414 423 9 0.100 0.90
包括 417 420 3 0.252 0.76

435 471 36 0.072 2.59
包括 438 453 15 0.119 1.79

717 789 72 0.035 2.52

Geological Background

地質背景

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

銅山的鈾礦化發生在兩種不同的地質環境中:

  • Fracture-controlled uranium mineralization hosted in Archaean-aged granite, syenite, isolated occurrences along the margins of diabase dikes and in association with meta-sediment inclusions in granite; and
  • 裂縫控制的鈾礦化存在於太古時代的花崗岩、正長巖、輝綠岩堤邊緣的孤立礦點以及與花崗岩中的超沉積物內含物有關;以及
  • 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.
  • 在Arrowhead(Little Mo)礦山和其他地方的三年級帳篷步道地層中,在粗粒砂岩中以及鵝卵石和巨石上的塗層中散佈。

Uranium mineralization 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. The pattern of structural features and overall structural setting developed in the southern-most portion of the Archaean granites of the Owl Creek Mountains, and particularly at Copper Mountain, is a key aspect for the localization of uranium mineralization in the project area.

據認爲,鈾礦化是由超基因和熱液富集過程造成的。在這兩種情況下,鈾的來源都被認爲是貓頭鷹溪山脈的花崗岩。在貓頭鷹溪山脈太古花崗岩最南端,尤其是銅山,形成的結構特徵和整體結構背景是項目區鈾礦化本地化的關鍵方面。

Earlier interpretations of the mineralization at Copper Mountain show that the controls on mineralization were not fully understood. Factors such as hydrocarbons, degree of fracturing, and lithologic differences had been considered, generally without solid conclusions that would help in putting shape, grade and predictability to the mineralized areas. There is evidence to suggest that some of the upper mineralization was depleted in uranium, which was remobilized and fixated in deeper and higher-grade areas and it is unclear if this concept has been fully tested.

早些時候對銅山礦化的解釋表明,對礦化的控制尚不完全了解。已經考慮了碳氫化合物、壓裂程度和巖性差異等因素,但通常得不到有助於確定礦化區域形狀、等級和可預測性的確鑿結論。有證據表明,一些上層礦化層在鈾中被貧化,鈾被重新活化並固定在更深和更高品位的區域,目前尚不清楚這一概念是否經過充分檢驗。

The location of the Copper Mountain uranium district in relation to other uranium districts in Wyoming is shown in Figure 1 below.

銅山鈾礦區相對於懷俄明州其他鈾區的位置如下圖1所示。

Figure 1 Uranium Districts of Wyoming

圖 1 懷俄明州的鈾區

"Area of Special Interest"

“特別興趣領域”

The grade intervals were calculated as weighted averages using 3-foot composite grades that Anaconda derived from drilling data acquired from RME which conducted uranium exploration in the Copper Mountain area between 1969 to 1982. The grade intervals presented here were captured from cross-sections that Anaconda drafted over an area designated the "E2 Zone" or "Area of Special Interest", which covers part of the High Grade Zone of the North Canning deposit area as defined by Anaconda (1997). It was previously reported (here) that the Canning deposit contains between 8.79 Mlbs eU3O8 (at 170 ppm average grade) and 19.0 Mlbs eU3O8 (at 390 ppm average grade). The Canning deposit is approximately 4,500 feet (1,372 metres) long in an east-west direction and 1,500 feet (457 metres) wide in a north-south direction. The main portion is from 100 to 250 feet (30 to 76 metres) below surface and attains a thickness of up to 300 feet (91 metres). A west-northwest trending fault (the Canning Fault) bounds the deposit on the northern side and also controls the High Grade Zone, which contains significantly higher grade uranium than the rest of the deposit area.

品位間隔是根據加權平均值計算的,使用3英尺的複合等級,Anaconda從1969年至1982年間在銅山地區進行鈾勘探的RME獲得的鑽探數據中獲得的。此處顯示的等級間隔取自Anaconda在指定爲 “E2區域” 或 “特別關注區域” 的區域上劃定的橫截面,該區域覆蓋了Anaconda(1997年)定義的北坎寧礦牀區域高品位區域的一部分。此前(此處)有報道稱,坎寧礦牀包含879萬英鎊(歐盟)3O8 (平均等級爲 170 ppm)和 19.0 Mlbs 歐盟3O8 (平均成績爲 390 ppm)。坎寧礦牀東西向長約4500英尺(1,372米),南北方向寬1,500英尺(457米)。主要部分位於地表以下 100 到 250 英尺(30 到 76 米)處,厚度可達 300 英尺(91 米)。西北偏西北方向的斷層(坎寧斷層)圍繞着北側的礦牀,還控制着高品位區,該區域的鈾品位比礦牀區域的其餘部分高得多。

It is not clear what the Area of Special Interest represents, but it is thought to be one of the areas earmarked for bulk sampling or early mining development by RME. The presence of higher grades in certain areas along fault trends provides the option of increasing the cut-off grade, should it be feasible to do so.

目前尚不清楚特別利益區代表什麼,但它被認爲是RME指定用於批量採樣或早期採礦開發的區域之一。如果可行,斷層趨勢沿線的某些區域存在更高的等級,則可以選擇提高臨界等級。

The location of the "Area of Special Interest" identified by Anaconda is shown in Figure 2 below and the locations of the boreholes appearing in the cross-sections are indicated in Figure 3 below.

Anaconda確定的 “特別關注區域” 的位置如下圖2所示,橫截面中出現的鑽孔位置如下圖3所示。

Figure 2 Myriad claims, deposits and the Anaconda "Area of Special Interest"

圖 2 無數的索賠、存款和Anaconda “特別關注領域”

The coordinates of the boreholes indicated as "cross-section" boreholes in Figure 3 below are available here.

以下圖 3 中以 “橫截面” 鑽孔表示的鑽孔座標可在此處獲得。

Note that these reported intervals have not been verified by sampling or analytical methods to test the data and should serve as a guide only for assessing the grade potential of targeted mineralization at Copper Mountain. A discussion on the equivalent uranium grade determinations is provided further down.

請注意,這些報告的間隔尚未通過採樣或分析方法驗證以測試數據,只能作爲評估銅山目標礦化的品位潛力的指南。關於當量鈾品位測定的討論將在下方提供。

Figure 3 Canning "Area of Special Interest" and cross-section borehole locations

圖 3 坎寧 “特別關注區域” 和橫截面鑽孔位置

Figure 4 Section 732450E in the "Area of Special Interest" as produced by Anaconda, showing grade interval ranges

圖 4 Anaconda 製作的 “特殊興趣區域” 中的 732450E 節,顯示了成績間隔範圍

Determination of eU3O8 Grades

歐盟的確定3O8 成績

Drilling by RME was conducted using a combination of rotary percussion and core drilling (approximately 10%). Thus, most of the eU3O8 grades were derived from natural gamma (NGAM) logging probes, while a limited check was done using Delayed Fission Neutron (DFN) analysis of core samples. During RME's investigations at the time, a discrepancy was identified between grades determined by the NGAM and the DFN method.

RME 的鑽探是使用旋轉衝擊和岩心鑽探相結合進行的(大約 10%)。因此,大多數歐盟國家3O8 等級來自自然伽馬(NGAM)測井探測器,而使用延遲裂變中子(DFN)對核心樣品的分析進行了有限的檢查。在RME當時的調查中,發現NGAM和DFN方法確定的等級之間存在差異。

Through extensive investigations by RME and others, it was concluded that the NGAM over-stated higher grades and understated lower grades, when compared to the DFN. The decision was therefore made to err on the side of caution and use the DFN grades for all estimation going forward. RME therefore converted all NGAM grades to an equivalent DFN grade using a regression curve.

通過RME和其他機構的廣泛調查,得出的結論是,與DFN相比,NGAM誇大了較高的成績,低估了較低的成績。因此,決定謹慎行事,使用DFN等級進行未來的所有估算。因此,RME 使用回歸曲線將所有 NGAM 等級轉換爲等效的 DFN 等級。

Independent assessment and reporting of results for the projects have confirmed the veracity of the data collection methods. For example, an independent report by David S. Robertson and Associates (1978) concluded that RME "has utilized proper procedures in collecting and handling data from the North Canning Project". Similarly, a Golder Associates report (1979) found that the data collection methods were reliable, and a Neutron Energy Inc. report (2008) stated that there was no reason to believe that standard industry practices were not employed by RME at the time. Enwall (1980) also noted that DFN assaying has proven to be one of the most interference-free, precise and accurate analytical techniques for uranium.

對項目結果的獨立評估和報告證實了數據收集方法的真實性。例如,David S. Robertson and Associates的一份獨立報告(1978年)得出的結論是,RME “在收集和處理來自北坎寧項目的數據時採用了適當的程序”。同樣,Golder Associates的一份報告(1979年)發現數據收集方法是可靠的,而Neutron Energy Inc.的一份報告(2008年)指出,沒有理由相信RME當時沒有采用標準行業慣例。Enwall(1980)還指出,事實證明,DFN分析是最無干擾、最精確和最準確的鈾分析技術之一。

Data Verification

數據驗證

Note that the reported intervals have not been verified by sampling or analytical methods to test the data and should serve as a guide only for assessing the grade potential of targeted mineralization at Copper Mountain. The equivalent grades used for the reported intervals will need to be verified by re-logging the boreholes or drilling twin boreholes to obtain similar results. This is part of the planned work strategy described below. The borehole dip and azimuth are not known at this time and the intervals have not been corrected for true width, as the controls on mineralization have not been firmly established.

請注意,報告的間隔尚未通過採樣或分析方法驗證以測試數據,只能作爲評估銅山目標礦化的品位潛力的指南。報告間隔中使用的等效等級需要通過重新記錄鑽孔或鑽兩個鑽孔來進行驗證,以獲得類似的結果。這是下文所述的計劃工作戰略的一部分。目前尚不清楚鑽孔傾角和方位角,由於尚未牢固建立對礦化的控制,因此尚未根據真實寬度對間隔進行校正。

Planned Work Strategy and Schedule

計劃的工作策略和時間表

The strategy for verification of historically reported grades and further delineation of mineralized zones is dependent on conditions in the field, which have yet to be determined. Myriad plans to conduct a site visit to Copper Mountain at the earliest possibility that weather conditions will allow, possibly late April to early May, 2024. The aim of the site visit would be to assess the conditions in the field generally, but more importantly, to locate historically drilled borehole collar positions and check if they are preserved and open at depth. If the historic boreholes are open and are accessible, they could be re-probed using modern equipment to generate new grade interval information that can be used in reporting, with only limited drilling then required to chemically verify the results.

覈實歷史上報告的等級和進一步劃定礦化區的策略取決於油田條件,而這些條件尚待確定。Myriad計劃在天氣條件允許的情況下儘早對銅山進行實地考察,可能是在2024年4月下旬至5月初。實地考察的目的是評估現場的總體狀況,但更重要的是,確定歷史上鑽探過的鑽孔環位置,並檢查這些位置是否得到保留並在深度開啓。如果歷史上的鑽孔是開放的並且可以進入,則可以使用現代設備對其進行重新探測,以生成新的等級間隔信息,這些信息可用於報告,然後只需要進行有限的鑽探即可對結果進行化學驗證。

Should this strategy be feasible, borehole logging equipment, such as Prompt Fission Neutron (PFN) will be sourced immediately and set to work on re-probing the historic boreholes this summer season. Priority for boreholes will be guided by the information already available, which will shorten the time required for producing representative results.

如果這一策略可行,將立即採購諸如即時裂變中子(PFN)之類的鑽孔測井設備,並將在今年夏季重新探測歷史悠久的鑽孔。鑽孔的優先順序將以現有信息爲指導,這將縮短產生代表性結果所需的時間。

The strategy may include the drilling of limited diamond drill (DD) core and reverse circulation (RC) or rotary air blast (RAB) holes to supplement the drilling delineation process and fast-track the production of a code compliant Mineral Resource Estimate.

該策略可能包括鑽探有限的金剛石鑽頭(DD)岩心和反循環(RC)或旋轉噴氣(RAB)孔,以補充鑽探劃定過程,並快速完成符合規範的礦產資源估算的製作。

Conclusion

結論

The data compiled by Anaconda and reported here is believed to be relevant and demonstrates the potential for higher grade zones along the fault trends and elsewhere in the Copper Mountain district. The data shows us that (1) there is high-grade material in areas formerly designated for open-pit mining prior to the market turn in the 1980's, and (2) Myriad has a clear path for re-evaluating the existing resources at Copper Mountain and may in fact be much farther along than previously thought in terms of testing the feasibility of a mining plan for these areas.

Anaconda彙編並在這裏報告的數據被認爲是相關的,表明在斷層趨勢沿線和銅山地區其他地方有可能出現更高等級的區域。數據向我們表明,(1)在20世紀80年代市場轉折之前,以前指定用於露天採礦的區域中有高品位的材料,而且(2)Myriad有明確的重新評估銅山現有資源的路徑,實際上,在測試這些地區採礦計劃的可行性方面,可能比以前想象的要走得更遠。

The data also shows us that high-grade potential exists outside the main Copper Mountain deposits and provides support for the idea that undiscovered high-grade mineralization may be found along trends that have not been explored yet. Myriad's strategy, besides confirming existing areas of mineralization, will be to locate and follow out these fault structures to target areas of higher-grade mineralization.

這些數據還向我們表明,銅山主要礦牀之外存在高品位的潛力,並支持了這樣的觀點,即可以沿着尚未探索的趨勢發現未被發現的高品位礦化。除了確認現有的礦化區域外,Myriad的策略還將是定位和跟蹤這些斷層結構,以瞄準更高品位的礦化區域。

Qualified Person Statement

合格人員聲明

The scientific or technical information in this news release respecting the Company's Copper Mountain Project has been prepared and approved by George van der Walt, MSc., Pr.Sci.Nat., MGSSA, a Qualified Person as defined in National Instrument 43-101 - Standards of Disclosure for Mineral Projects. It is 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.

本新聞稿中有關公司銅山項目的科學或技術信息由喬治·範德沃爾特理學碩士、Pr.Sci.Nat.、MGSSA 編寫和批准,他是《國家儀器 43-101》中定義的合格人員- 礦產項目披露標準。它基於合格人員對公司最近獲得的歷史報告的初步審查。這些信息不包括原始數據,例如鑽探記錄、取樣、分析或測試數據,這些數據是書面文件中所載信息或意見所依據的。因此,合格人員沒有審查或以其他方式驗證信息,也沒有做足夠的工作來將歷史估算值歸類爲當前的礦產資源或礦產儲量。根據歷史上所進行和報告的工作數量和質量,合格人員認爲信息是相關的。將對任何現有原始數據進行更全面的審查,並在今後的版本中進行更詳細的報告。

About Myriad Uranium Corp.

關於無數鈾公司

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, which developed a mine plan and built a leach pad for one of the deposits at Copper Mountain. 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 (2023 dollars) exploring and developing Copper Mountain, generating significant historical resource estimates which are detailed here.

Myriad Uranium Corp. 是一家鈾勘探公司,持有美國懷俄明州銅山鈾項目75%的可盈利權益。銅山擁有多個已知的鈾礦牀和歷史悠久的鈾礦,包括出產50萬磅歐盟的Arrowhead礦3O8。聯合太平洋公司對銅山進行了大規模的鑽探和開發,制定了採礦計劃,併爲銅山的一個礦牀建造了滲濾區。由於鈾價格下跌,在開採之前於1980年停止了運營。在銅山已經鑽了大約2,000個鑽孔,該項目區域有很大的勘探前景。據估計,聯合太平洋已花費1.17億加元(2023年美元)勘探和開發銅山,得出了重要的歷史資源估算值,詳情見此處。

Myriad also holds 80% ownership of over 1,800 km2 of uranium exploration licenses in the Tim Mersoï Basin, Niger, with the option to earn up to 100%. These licenses are surrounded by many of the most significant uranium deposits in Africa, including Orano's 384 Mlbs eU3O8 Imouraren, Global Atomic's 236 Mlbs Dasa, and Goviex's 100 Mlbs Madaouela, and on the same fault structures. Myriad also has a 50% interest in the Millen Mountain Property in Nova Scotia, Canada, with the other 50% held by Probe Metals 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 還持有 1,800 多公里的 80% 所有權2 尼日爾蒂姆梅爾索伊盆地的鈾勘探許可證,可以選擇獲得高達100%的收入。這些許可證周圍環繞着非洲許多最重要的鈾礦牀,包括歐拉諾的384百萬英鎊(歐盟)3O8 Imouraren、Global Atomic 的 236 Mlbs Dasa 和 Goviex 的 100 Mlbs Madaouela,都在相同的斷層結構上。Myriad還持有加拿大新斯科舍省米倫山地產50%的權益,另外50%由Probe Metals Inc持有。欲了解更多信息,請參閱Myriad在SEDAR+()上的披露記錄,致電+1.604.418.2877與Myriad聯繫,或訪問Myriad的網站,網址爲。

Recent interviews with VSA and Crux Investor are here and here. A video overview of the Copper Mountain Project is here.

最近對VSA和Crux Investor的採訪在這裏和這裏。這裏是銅山項目的視頻概述。

Myriad Contacts:

無數聯繫人:

Thomas Lamb

托馬斯·蘭姆

President and CEO

總裁兼首席執行官

tlamb@myriaduranium.com

tlamb@myriaduranium.com

Forward-Looking Statements

前瞻性陳述

Mineralization hosted on adjacent or nearby properties is not necessarily indicative of mineralization hosted on the Company's properties. 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.

鄰近或附近物業上存在的礦化不一定表示公司房產上存在礦化。本新聞稿包含基於公司當前預期、估計、預測和預測的 “前瞻性信息”。這些前瞻性信息包括公司的業務、計劃、前景和業務戰略等。“可能”、“將”、“可能”、“應該”、“將”、“可能”、“期望”、“預期”、“打算”、“估計”、“計劃”、“預測”、“項目” 和 “相信” 等詞語或其他類似的詞語和短語旨在識別前瞻性信息。提醒讀者,在準備任何前瞻性信息時使用的假設都可能被證明是不正確的,包括有關公司礦產勘探和開發的業務計劃、關於公司礦產特性的擬議工作計劃以及公司礦產的潛在和經濟可行性。前瞻性信息受已知和未知風險、不確定性和其他因素的影響,這些因素可能導致公司的實際業績、活動水平、業績或成就與此類前瞻性信息所表達或暗示的結果存在重大差異。這些因素包括但不限於:經濟狀況或金融市場的變化;成本的增加;訴訟;立法、環境和其他司法、監管、政治和競爭的發展;以及技術或運營方面的困難。該清單並未詳盡列出可能影響我們前瞻性信息的因素。應仔細考慮這些因素和其他因素,讀者不應過分依賴此類前瞻性信息。除非適用法律要求,否則公司無意更新或修改任何前瞻性信息,也明確表示不打算或義務更新或修改任何前瞻性信息,無論這些信息是由於新信息、未來事件還是其他原因造成的。

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

CSE 尚未審查、批准或不批准本新聞稿的內容。

譯文內容由第三人軟體翻譯。


以上內容僅用作資訊或教育之目的,不構成與富途相關的任何投資建議。富途竭力但無法保證上述全部內容的真實性、準確性和原創性。
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