Myriad Uranium's First Ten Boreholes at Copper Mountain Intercept High Grade Mineralisation, Provide Strong Validation of Historic Work
Myriad Uranium's First Ten Boreholes at Copper Mountain Intercept High Grade Mineralisation, Provide Strong Validation of Historic Work
Vancouver, British Columbia--(Newsfile Corp. - October 22, 2024) - Myriad Uranium Corp. (CSE: M) (OTCQB: MYRUF) (FSE: C3Q) ("Myriad" or the "Company") is pleased to announce the results of equivalent uranium (eU3O8) grades from initial drilling at the Copper Mountain Uranium Project in Wyoming, USA (Figure 1). Spectral gamma ray logging confirms the potential for high-grade uranium mineralisation at the Canning Deposit area and provides strong initial validation of the historic work done by Union Pacific at Canning and across the entire Project area. The eU3O8 values reported here should be considered as preliminary and are subject to verification by chemical assay.
温哥华,不列颠哥伦比亚--(资讯简报社-2024年10月22日)- Myriad Uranium Corp. (cse: M) (OTCQB: MYRUF) (Fse: C3Q)("Myriad"或“公司”)很高兴地宣布,位于美国怀俄明州的铜山铀项目初期钻探的等效铀(eU3O8)品位结果(见图1)。谱伽玛射线测井证实了卡宁存款区域高品位铀矿化的潜力,并对联合太平洋在卡宁和整个项目区域完成的历史性工作提供了强有力的初步验证。此处报告的eU3O8数值应被视为初步结果,并需通过化学分析进行验证。
Highlights
亮点
Results corroborate or exceed what was anticipated from the historic drill data obtained by the Company in relation to the Canning Deposit.
Results confirm the potential for high-grade uranium in the northern part of the Canning Deposit, with numerous intervals reporting greater than 1,000 ppm eU3O8 and peak grade in borehole CAN0006 reaching up to 8,060 ppm eU3O8.
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Highlights of significant intervals from the spectral gamma logging include:
CAN0001: 1,924 ppm eU3O8 over 3.28 feet (peak of 2,886 ppm eU3O8 at 160.56 feet)
CAN0004: 2,160 ppm eU3O8 over 5.58 feet (peak of 3,751 ppm eU3O8 at 226.81 feet)
CAN0005: 1,677 ppm eU3O8 over 18.70 feet (peak of 2,601 ppm eU3O8 at 561.37 feet)
CAN0006: 1,744 ppm eU3O8 over 6.89 feet (peak of 2,639 ppm eU3O8 at 136.94 feet)
CAN0006: 5,936 ppm eU3O8 over 7.54 feet (peak of 8,060 ppm eU3O8 at 267.48 feet)
CAN0006: 2,105 ppm eU3O8 over 20.01 feet (peak of 5,183 ppm eU3O8 at 352.76 feet)
CAN0006: 2,417 ppm eU3O8 over 8.20 feet (peak of 5,219 ppm eU3O8 at 444.93 feet)
CAN0008: 2,173 ppm eU3O8 over 5.25 feet (peak of 3,346 ppm eU3O8 at 280.93 feet)
CAN0008: 1,599 ppm eU3O8 over 14.10 feet (peak of 2,367 ppm eU3O8 at 341.94 feet)
CAN0010: 1,614 ppm eU3O8 over 4.59 feet (peak of 2,012 ppm eU3O8 at 272.73 feet)
Spectral gamma ray logging results show elevated uranium mineralization (greater than 200 ppm eU3O8) across multiple long intercepts in every hole drilled to-date.
The ten holes reported here contain 29 intervals over a minimum of 3 feet that are greater than 500 ppm eU3O8, and 21 intervals greater than 1,000 ppm eU3O8.
In addition, across the ten holes reported here, there are 58 intervals over a minimum of 3 feet that are greater than 200 ppm, with 28 greater than 10 feet. If ISR recovery methods prove to be viable over parts of the Project Area, as it has in other parts of Wyoming, these areas could prove highly interesting in addition to the many higher grade intervals encountered.
CEO Thomas Lamb commented: "We are very excited about these preliminary results from the initial phase of our maiden drill program at Copper Mountain. They give us high confidence in the historic data we obtained and have been working with. It is too early to say whether the grades and strategy of drilling inclined holes (as opposed to Union Pacific's mostly vertical drilling) will improve on the resources estimated by Union Pacific during the late 1970s, but with these early results we are encouraged by the large potential of the Canning Deposit and the broader potential of the Copper Mountain Project Area and therefore our potential to deliver long-term value to our shareholders."
Jim Davis, General Manager of Union Pacific's exploration at Copper Mountain during the late 1970s and current Technical Advisor to Myriad, commented: "I have had the opportunity to review the early drill and logging results. It appears you are well on your way to confirming the substantial historical resource that Union Pacific (Rocky Mountain Energy) blocked out before. Nice going!"
George van der Walt, Myriad's Principal Geologist and Technical Advisor, commented: "I am impressed by the uranium grades intersected in the first holes drilled at the Canning Deposit area and the fact that we are finding mineralization where we expect to find it confirms the quality of data collection undertaken by Union Pacific in the 1970s"
It is important to note that this initial drill program is focused only on the Canning Deposit area, itself highly significant but only one of several highly prospective targets within the Copper Mountain Uranium Project Area. Hesitation, Midnight, Knob, Bonanza, Fuller, Arrowhead, Mint/Allard, Kermac/Day, for example, all have shown excellent potential through historical drilling and other exploration work.
结果证实或超出了公司与卡宁存款有关的历史钻探数据预期的内容。
结果确认了卡宁存款北部存在高品位铀矿的潜力,众多间隔报告的eU3O8超过1,000 ppm,而钻孔CAN0006的峰值品位达到8,060 ppm eU3O8。
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谱伽玛测井的重要间隔亮点包括:
CAN0001:3.28英尺内的1,924 ppm eU3O8(在160.56英尺处的2,886 ppm eU3O8的高峰值)
CAN0004:5.58英尺内的2,160 ppm eU3O8(在226.81英尺处的3,751 ppm eU3O8的高峰值)
CAN0005:18.70英尺内的1,677 ppm eU3O8(在561.37英尺处的2,601 ppm eU3O8的高峰值)
CAN0006:6.89英尺内的eU3O8为1,744 ppm(136.94英尺处的eU3O8峰值为2,639 ppm)
CAN0006:7.54英尺内的eU3O8为5,936 ppm(267.48英尺处的eU3O8峰值为8,060 ppm)
CAN0006:20.01英尺内的eU3O8为2,105 ppm(352.76英尺处的eU3O8峰值为5,183 ppm)
CAN0006:8.20英尺内的eU3O8为2,417 ppm(444.93英尺处的eU3O8峰值为5,219 ppm)
CAN0008:5.25英尺内的eU3O8为2,173 ppm(280.93英尺处的eU3O8峰值为3,346 ppm)
CAN0008:14.10英尺内的eU3O8为1,599 ppm(341.94英尺处的eU3O8峰值为2,367 ppm)
CAN0010:4.59英尺内的eU3O8为1,614 ppm(272.73英尺处的eU3O8峰值为2,012 ppm)
光谱伽马射线测井结果显示,迄今为止所有钻取的钻孔中,几个长截面都展现出尿素铀矿化异常(eU3O8含量高于200 ppm)。
这里报告的十个钻孔中,超过500ppm eU3O8的3英尺以上的29个间隔,大于1,000ppm eU3O8的21个间隔。
此外,在这里报告的十个钻孔中,有58个间隔超过200ppm,超过10英尺的有28个。如果ISR回收方法在项目区的一些部分被证明是可行的,就像在怀俄明州的其他地方一样,这些区域可能会对我们产生极大的兴趣,除了遇到的许多更高品位的间隔。
首席执行官Thomas Lamb评论道:“我们对铜山处女钻探项目初步结果感到非常兴奋。这些结果让我们对我们获得并一直在使用的历史数据充满信心。目前还为时过早来判断钻探倾斜孔(而不是联合太平洋大部分采用的垂直钻探)的等级和策略是否会优于1970年代后期联合太平洋估计的资源,但有了这些初步结果,我们对坎宁存款的巨大潜力以及铜山项目区的更广泛潜力以及我们为股东创造长期价值的潜力感到鼓舞。”
铜山初期勘探的联合太平洋勘探总经理Jim Davis,同时也是Myriad当前技术顾问,评论道:“我有机会查看早期钻孔和测井结果。看起来您正在确认上世纪联合太平洋(洛基山能源)封存的大量历史资源。做得好!”
Myriad首席地质学家兼技术顾问George van der Walt评论道:“我对Canning存款区首次钻探交叉的铀品位印象深刻,事实上,我们在预期的地方发现矿化,证实了1970年代联合太平洋进行的数据收集质量。”
值得注意的是,此初始钻探项目仅集中在坎宁存款区,这本身具有很大的重要性,但是只是铜山铀项目区内几个具有高潜力目标之一。犹豫、午夜、旋钮、Bonanza、Fuller、Arrowhead、Mint/Allard、Kermac/Day等,都通过历史钻探和其他勘探工作展现出极好的潜力。
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:
通过光谱伽马射线(SGR)记录衍生的显著区间,在1000 ppm (0.10%)截断(至少3英尺)包括以下区间。请注意,Appendix 1中提供了500 ppm (0.05%)和200 ppm (0.02%)截断的品位区间。
1000 ppm Cut-off (minimum 3 feet) | Peak Grade | ||||||
Hole ID | From (ft) | To (ft) | Length (ft) | eU3O8 (ppm) | eU3O8 (%) | GT (ft%) | eU3O8 (ppm) |
CAN0001 | 158.75 | 162.03 | 3.28 | 1,924 | 0.192 | 0.63 | 2,886 |
CAN0004 | 225.01 | 230.58 | 5.58 | 2,160 | 0.216 | 1.20 | 3,751 |
CAN0004 | 240.42 | 245.02 | 4.59 | 1,215 | 0.122 | 0.56 | 1,515 |
CAN0004 | 254.86 | 261.74 | 6.89 | 1,698 | 0.170 | 1.17 | 2,644 |
CAN0005 | 388.68 | 395.57 | 6.89 | 1,971 | 0.197 | 1.36 | 2,329 |
CAN0005 | 546.45 | 565.14 | 18.70 | 1,677 | 0.168 | 3.14 | 2,601 |
CAN0005 | 571.38 | 574.66 | 3.28 | 1,035 | 0.103 | 0.34 | 1,152 |
CAN0006 | 132.84 | 139.73 | 6.89 | 1,744 | 0.174 | 1.20 | 2,639 |
CAN0006 | 173.84 | 180.73 | 6.89 | 1,719 | 0.172 | 1.18 | 2,262 |
CAN0006 | 225.99 | 229.60 | 3.61 | 2,436 | 0.244 | 0.88 | 3,710 |
CAN0006 | 265.35 | 272.90 | 7.54 | 5,936 | 0.594 | 4.48 | 8,060 |
CAN0006 | 312.26 | 320.78 | 8.53 | 1,733 | 0.173 | 1.48 | 2,263 |
CAN0006 | 339.48 | 359.49 | 20.01 | 2,105 | 0.211 | 4.21 | 5,183 |
CAN0006 | 377.86 | 381.14 | 3.28 | 1,524 | 0.152 | 0.50 | 1,972 |
CAN0006 | 410.00 | 416.23 | 6.23 | 1,765 | 0.176 | 1.10 | 2,410 |
CAN0006 | 439.19 | 447.39 | 8.20 | 2,417 | 0.242 | 1.98 | 5,219 |
CAN0006 | 453.62 | 457.23 | 3.61 | 1,964 | 0.196 | 0.71 | 2,890 |
CAN0008 | 278.47 | 283.72 | 5.25 | 2,173 | 0.217 | 1.14 | 3,346 |
CAN0008 | 334.56 | 348.66 | 14.10 | 1,599 | 0.160 | 2.26 | 2,367 |
CAN0010 | 270.60 | 275.19 | 4.59 | 1,614 | 0.161 | 0.74 | 2,012 |
CAN0010 | 557.27 | 561.86 | 4.59 | 1,110 | 0.111 | 0.51 | 1,184 |
1000 ppm截断(至少3英尺) | 峰值品位 | ||||||
孔ID | 从 (英尺) | 结束深度(英尺) | 长度 (英尺) | 铀(ppm) | eU3O8(%) | Gt(英尺%) | 铀(ppm) |
CAN0001 | 158.75 | 162.03 | 3.28 | 1,924 | 0.192 | 0.63 | 2,886 |
CAN0004 | 225.01 | 230.58 | 5.58 | 2,160 | 0.216 | 1.20 | 3,751 |
CAN0004 | 240.42 | 245.02 | 4.59 | 1,215 | 0.122 | 0.56 | 1,515 |
CAN0004 | 254.86 | 261.74 | 6.89 | 1,698 | 0.170 | 1.17 | 2,644 |
CAN0005 | 388.68 | 395.57 | 6.89 | 1,971 | 0.197 | 1.36 | 2,329 |
CAN0005 | 546.45 | 565.14 | 18.70 | 1,677 | 0.168 | 3.14 | 2,601 |
CAN0005 | 571.38 | 574.66 | 3.28 | 1,035 | 0.103 | 0.34 | 1,152 |
CAN0006 | 132.84 | 139.73 | 6.89 | 1,744 | 0.174 | 1.20 | 2,639 |
CAN0006 | 173.84 | 180.73 | 6.89 | 1,719 | 0.172 | 1.18 | 2,262 |
CAN0006 | 225.99 | 229.60 | 3.61 | 2,436 | 0.244 | 0.88 | 3,710 |
CAN0006 | 265.35 | 218.90 | 7.54 | 5,936 | 0.594 | 4.48 | 8,060 |
CAN0006 | 312.26 | 320.78 | 8.53 | 1,733 | 0.173 | 1.48 | 2,263 |
CAN0006 | 339.48 | 359.49 | 20.01 | 2,105 | 0.211 | 4.21 | 5,183 |
CAN0006 | 377.86 | 381.14 | 3.28 | 1,524 | 0.152 | 0.50 | 1,972 |
CAN0006 | 410.00 | 416.23 | 6.23 | 1,765 | 0.176 | 1.10 | 2,410 |
CAN0006 | 439.19 | 447.39 | 8.20 | 2,417 | 0.242 | 1.98 | 5,219 |
CAN0006 | 453.62 | 457.23 | 3.61 | 1,964 | 0.196 | 0.71 | 2,890 |
CAN0008 | 278.47 | 283.72 | 5.25 | 2,173 | 0.217 | 1.14 | 3,346 |
CAN0008 | 334.56 | 348.66 | 14.10 | 1,599 | 0.160 | 每股可归新投资者的贡献 | 2,367 |
CAN0010 | 270.60 | 275.19 | 4.59 | 1614 | 0.161 | 0.74 | 2,012 |
CAN0010 | 557.27 | 561.86 | 4.59 | 1,110 | 0.111 | 0.51 | 1,184 |
Notes:
注意:
- The interval lengths are "down the hole" and may not represent true width intervals as the exact nature of the mineralization 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.
- Intervals were selected over a minimum of 3 feet, with grade below cut-off less than 1 foot being included in the total interval.
- The possible effects of disequilibrium have not been accounted for in the determination of eU3O8 grades.
- 间隔长度为"下孔",可能不代表真正的宽度间隔,因为矿化分布的确切性质尚未确定。然而,大多数钻孔的倾角为50度,以测试指示陡倾的矿化模型。
- 间隔选取至少为3英尺,低于切割值的等级小于1英尺的部分被包括在总间隔内。
- 没有考虑到失衡的可能影响在判断eU3O8等级中。
The boreholes represent a combination of diamond core and reverse circulation drilling that was planned to verify mineralization identified in drilling by Union Pacific in the late 1970s and test a grade shell model (above 0.05% eU3O8) created from cross-sections, as reported here and here.
钻孔代表钻探中联合太平洋在20世纪70年代末识别的矿化进行核心钻探和逆回旋钻探的组合,并测试一个从横断面创建的等级壳模型(超过0.05% eU3O8),如此处和此处所报道。
Figure 1: Map of completed boreholes in the Canning Deposit Area (CAN0001 and CAN0002 drilled from the same pad, CAN0005 and CAN0007 drilled from the same pad).
图1:坎宁存款区域已完成的钻孔地图(CAN0001和CAN0002从同一井位钻孔,CAN0005和CAN0007从同一井位钻孔)。
Equipment and Methods
设备和方法
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.
哈里斯勘探正在使用两台金刚石岩心(DD)钻机进行钻探,产生HQ(63.5毫米/2.5英寸)岩心直径和96毫米(3.78英寸)孔径,以及一台倒循环(RC)钻机,使用140毫米(5.5英寸)锤头。岩心样品被装入岩心托盘,运往里弗顿进行进一步加工。RC孔隔段钻进并在现场分裂,产生两个代表性样品,然后运往里弗顿进行进一步加工。所有含矿段将提交给ALS实验室进行化学分析,以确认伽马测井报告的段。
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地球科学(DGI)正在进行下井测井。将应用Spectral Gamma Ray(SGR)和Optical Televiewer和/或Acoustic Televiewer的组合。探针由Mount Sopris Instruments制造,详情如下:
- 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 uses 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):测量钻井穿过的地层中来自自然来源的γ射线的能量。它计算每个能级的γ射线数量,有助于岩性判断和相关性。该探头使用铋锗氧闪烁晶体。
- QL40 SGR 2G CeBr3(Sx):测量钻井穿过的地层中来自自然来源的γ射线的能量。它计算每个能级的γ射线数量,有助于岩性判断和相关性。该探头使用CeBr3(溴化铈)闪烁晶体。
- QL 40 ABI 2G(At, Gr):捕获钻孔壁的高分辨率定向图像,可以确定声学可见特征的方向。这包括断裂、层理/岩石构造、破裂、层理面和其他结构特征。含有内置的自然伽马传感器,用于测量地层中来自自然来源的γ射线。
- QL OBI 2G(Ot,Gr):利用CMOS数字人形机器人-图像传感器拍摄高分辨率、定向的钻孔壁面图像,可用于判断各种特征的方位,包括裂缝、岩层/岩石构造、石英脉、岩性接触等。内置天然伽马传感器,用于测量地层中自然来源的伽马辐射。
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探头测量由钻孔穿过的地层中自然发射的伽马辐射的完整能谱。对记录的能谱进行全谱分析(FSA)。FSA实时推导出3种主要放射性同位素4万、238U、212Th的浓度,从而还可以深入了解地层的矿物组成。DGI也在运行光学和声学测井仪,当孔内条件允许时,以获得井下结构信息。使用陀螺仪偏差工具测量钻孔路径。
Data Verification and Determination of eU3O8 Grades
数据验证与确定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.
初步生产商校准证书已经提供给DGI。通过比较钻孔中向下和向上运行的伽马测量,检查下孔伽马测量是否具有重复性。DGI提供将SGR工具测得的API单位转换为eU3O8浓度的标准转换理论和公式。
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 chemical assay were observed. For this reason, the reported eU3O8 values should be considered as preliminary and are subject to data verification by chemical assay with appropriate QAQC.
放射性失衡指地质过程中矿化带中铀的损失或增加,可能会扰乱母体同位素与其子体之间的平衡。在铜山,目前尚未全面评估失衡的影响,但值得注意的是,针对钻探样品的地球化学分析可能报告与从伽马测井中得出的eU3O8品位不同的结果。一些历史报告表明,来自铜山的闭罐化验结果显示几乎无失衡,但伽马探测数据与化学化验之间存在差异。因此,所报告的eU3O8值应被视为初步结果,需通过具有适当QAQC的化验进行数据验证。
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正在收集所有钻探中矿化带的样本,并将其提交给商业化验室进行全面化学分析。然后将对结果进行比较,以判断不平衡或其他因素对最终铀品位的潜在影响,当有足够数据允许时,这些结果将用于矿产资源估算。
Geological Background
地质背景
Uranium mineralisation at Copper Mountain occurs in two distinct geologic environments:
铜山地区的铀化矿化发现在两种不同的地质环境中:
- 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.
- 控制裂隙的铀矿化寄主为太古代花岗岩、正长岩,在辉长岩岩脉边缘和花岗岩中的角水平面沉积物包含物相关的局部发现;以及
- 在第三期的Teepee Trail组粗粒砂岩中的弥散体,在Arrowhead (Little Mo)矿和其他地方的砾石和大圆石上的覆盖物。
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.
铀矿化被认为是通过超成因和热液富集过程形成的。在这两种情况下,铀的来源被认为是Owl Creek山脉的花岗岩。
Historical Estimates
历史估算
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.
尽管Myriad Uranium已经确定,本新闻稿中描述的历史估算与铜山项目区相关,并且考虑到其编制者和背景情况是相当可靠的,并适合公开披露,但读者们被告以不要过分依赖这些历史估算作为项目区当前矿产资源或矿业储量的指标。未满足NI 43-101规定的合格人员尚未进行足够工作将任何历史估算分类为当前矿产资源或矿业储量,而Myriad Uranium也不将这些历史估算视为当前矿产资源或矿业储量。此外,尽管铜山项目区包含提及的每个或大部分矿床,但提及的一些资源可能位于当前铜山项目区之外。此外,这些估算数十年前的数据,基于钻探数据,而这些钻井数据目前主要尚无法获取。因此,这些历史资源估算不应被过度依赖。
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.
历史估计的固有局限性包括,矿化性质(裂隙寄主)使得通过钻探数据进行估算比其他类型矿床(例如厚度均匀的矿床)的可靠性较低。 从Myriad Uranium的观点来看,局限性包括公司无法验证数据本身,而且估计值可能乐观,相对于后续应用“延迟裂变中子”(DFN)因子计算等级的工作。 另一方面,DFN是有争议的,一些专家认为这种方法过于保守。 尽管如此,联合太平洋关于铜山后续资源评估中也应用了这种方法。
In order 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.
为验证历史估计并可能重申其为当前资源,将需要进行可用数据的数字化计划。 这必须接着重新记录和/或重新钻探,以生成新数据,使其在与原始数据相比较方面具有可比性,或生成可用于建立地质和等级的相关性和连续性的新数据,以足以有信心估算矿产资源。
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.
这则新闻稿中关于公司的铜山项目的科学或技术信息已获得George van der Walt,MSc.,Pr.Sci.Nat.,FGSSA批准,他是根据加拿大43-101号《矿产项目披露标准》中定义的合格人员。 van der Walt先生受聘于The MSA Group (Pty) Ltd(MSA),这是总部位于南非约翰内斯堡的为矿业提供服务的领先地质咨询公司。 他在该行业拥有20多年的经验,并拥有在勘探结果上报告的相关矿化类型和风格的足够相关经验。
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.
信息及其解释是基于合格人对最近由公司获得的历史报告的初步评估。该信息未包括原始数据,例如作为书面文件中信息或意见基础的钻孔记录、采样、分析或测试数据。因此,合格人尚未审查或验证该信息,并且尚未做足够的工作将历史估计分类为当前矿物资源或矿物储量。鉴于已经进行的工作的数量和质量,合格人认为该信息是相关的。将进行更全面的对可用原始数据的审查,并将在将来的信息公告中更详细地报告。
About Myriad Uranium Corp.
无数还拥有加拿大新斯科舍省Millen Mountain Property的50%利益,另外50%归Probe Metals Inc.所有,并拥有尼日尔铀勘探许可的80%权益。有关详细信息,请参阅无数在SEDAR+()上的披露记录,通过电话+1.604.418.2877与无数联系,或参阅无数的网站。
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 planned 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 Uranium Corp.是一家铀勘探公司,在美国怀俄明州的铜山铀项目中拥有可赚取的75%股权。铜山拥有几个已知的铀矿床和历史悠久的铀矿山,包括产出50万磅eU3O8的Arrowhead矿山。在20世纪70年代末,联合太平洋进行了大规模的铜山钻探和开发工作,包括制定燃料计划以供应计划中的加利福尼亚爱迪生反应堆。由于铀价格下跌,1980年在挖矿开始之前,铜山的运营停止。在铜山已经钻探约2000口钻孔,项目区域具有重要的勘探潜力。据估计,联合太平洋在探索和开发铜山上花费了C$11700万(2024年美元),产生了详细历史资源估计,这些估计在此详细说明。最近一次详细更新与Crux Investor可以在此处查看。公司的介绍材料可以在此处查看。有关历史钻探的新闻稿可以在这里和这里查看。
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还拥有加拿大新斯科舍省Millen Mountain Property 50%的权益,另外50%由Probe Gold Inc.持有。 有关更多信息,请参阅Myriad在SEDAR+()的披露记录,通过电话联系Myriad,电话+1.604.418.2877,或访问Myriad的网站。
Myriad Contacts:
Thomas Lamb
President and CEO
tlamb@myriaduranium.com
Myriad联系方式:
Thomas Lamb
总裁和首席执行官
tlamb@myriaduranium.com
Forward-Looking Statements
前瞻性声明
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.
本新闻稿包含基于公司目前期望、估计、预测和展望的“前瞻性信息”。这些前瞻性信息包括公司的业务、计划、展望和业务策略等内容。"可能","将","可能","应该","将","可能","预期","期待","打算","估计","计划","预测","项目"和"相信"等词语旨在识别前瞻性信息。读者应注意,在准备任何前瞻性信息时所使用的假设可能会被证明是错误的,包括涉及探索和开发公司矿产物业的公司业务计划、公司矿产物业上拟议的工作计划以及公司矿产物业的潜力和经济可行性。前瞻性信息受已知和未知的风险、不确定性和其他因素的影响,这可能导致公司的实际结果、活动水平、表现或成就与此类前瞻性信息所暗示或表达的实际结果存在重大差异。此类因素包括但不限于:经济状况或金融市场的变化;成本上升;诉讼;立法、环境和其他司法、监管、政治和竞争发展;以及技术或运营困难。这些列举的因素并非穷尽会影响我们前瞻性信息的因素。这些因素及其他因素应谨慎考虑,读者不应过度依赖此类前瞻性信息。公司无意,并明确否认任何更新或修订任何前瞻性信息的意图或义务,除非有适用法律要求。
The CSE has not reviewed, approved or disapproved the contents of this news release.
加拿大证券交易所未审查,未批准或不批准此新闻稿的内容。
APPENDIX 1: Equivalent uranium (eU3O8) intervals at 500 ppm and 200 ppm cut-off (over 3 ft minimum)
附录 1:相当于铀(eU3O8)的间隔,在500 ppm和200 ppm截断下(至少3英尺)
500 ppm Cut-off (minimum 3 feet) | ||||||
Hole ID | From (ft) | To (ft) | Length (ft) | eU3O8 (ppm) | eU3O8 (%) | GT (ft%) |
CAN0001 | 157.44 | 162.36 | 4.92 | 1,520 | 0.152 | 0.75 |
CAN0003 | 286.34 | 289.62 | 3.28 | 644 | 0.064 | 0.21 |
CAN0004 | 224.68 | 250.92 | 26.24 | 1,195 | 0.119 | 3.13 |
CAN0004 | 254.20 | 263.71 | 9.51 | 1,410 | 0.141 | 1.34 |
CAN0005 | 388.02 | 396.22 | 8.20 | 1,771 | 0.177 | 1.45 |
CAN0005 | 534.64 | 575.97 | 41.33 | 1,197 | 0.120 | 4.95 |
CAN0006 | 130.22 | 143.01 | 12.79 | 1,266 | 0.127 | 1.62 |
CAN0006 | 149.24 | 156.13 | 6.89 | 753 | 0.075 | 0.52 |
CAN0006 | 173.51 | 182.04 | 8.53 | 1,530 | 0.153 | 1.30 |
CAN0006 | 223.70 | 231.90 | 8.20 | 1,471 | 0.147 | 1.21 |
CAN0006 | 264.37 | 273.22 | 8.86 | 5,173 | 0.517 | 4.58 |
CAN0006 | 289.95 | 293.89 | 3.94 | 1,396 | 0.140 | 0.55 |
CAN0006 | 309.96 | 321.44 | 11.48 | 1,504 | 0.150 | 1.73 |
CAN0006 | 335.54 | 360.80 | 25.26 | 1,836 | 0.184 | 4.64 |
CAN0006 | 374.58 | 382.45 | 7.87 | 1,189 | 0.119 | 0.94 |
CAN0006 | 408.36 | 418.86 | 10.50 | 1,314 | 0.131 | 1.38 |
CAN0006 | 430.01 | 433.29 | 3.28 | 1,034 | 0.103 | 0.34 |
CAN0006 | 438.54 | 457.56 | 19.02 | 1,717 | 0.172 | 3.27 |
CAN0007 | 455.26 | 459.53 | 4.26 | 935 | 0.094 | 0.40 |
CAN0007 | 467.40 | 471.01 | 3.61 | 655 | 0.066 | 0.24 |
CAN0007 | 531.36 | 539.89 | 8.53 | 663 | 0.066 | 0.57 |
CAN0008 | 277.49 | 287.00 | 9.51 | 1,546 | 0.155 | 1.47 |
CAN0008 | 315.86 | 321.77 | 5.90 | 864 | 0.086 | 0.51 |
CAN0008 | 332.92 | 349.98 | 17.06 | 1,453 | 0.145 | 2.48 |
CAN0010 | 70.52 | 75.44 | 4.92 | 966 | 0.097 | 0.48 |
CAN0010 | 82.00 | 89.22 | 7.22 | 872 | 0.087 | 0.63 |
CAN0010 | 269.62 | 276.18 | 6.56 | 1,347 | 0.135 | 0.88 |
CAN0010 | 287.33 | 292.90 | 5.58 | 593 | 0.059 | 0.33 |
CAN0010 | 551.37 | 565.80 | 14.43 | 876 | 0.088 | 1.26 |
500 ppm截段(最小3英尺) | ||||||
孔ID | 从 (英尺) | 结束深度(英尺) | 长度 (英尺) | 铀(ppm) | eU3O8(%) | Gt(英尺%) |
CAN0001 | 157.44 | 162.36 | 4.92 | 1,520 | 0.152 | 固定费用覆盖率 |
CAN0003 | 286.34 | 289.62 | 3.28 | 644 | 0.064 | 0.21 |
CAN0004 | 224.68 | 250.92 | 26.24 | 1,195 | 0.119 | 3.13 |
CAN0004 | 254.20 | 263.71 | 9.51 | 1,410 | 0.141 | 1.34 |
CAN0005 | 388.02 | 396.22 | 8.20 | 1,771 | 0.177 | 1.45 |
CAN0005 | 534.64 | 575.97 | 41.33 | 1,197 | 0.120 | 4.95 |
CAN0006 | 130.22 | 143.01 | 12.79 | 1,266 | 0.127 | 1.62 |
CAN0006 | 149.24 | 156.13 | 6.89 | 753 | 0.075 | 0.52 |
CAN0006 | 173.51 | 182.04 | 8.53 | 1,530 | 0.153 | 1.30 |
CAN0006 | 223.70 | 231.90 | 8.20 | 1,471 | 0.147 | 1.21 |
CAN0006 | 264.37 | 273.22 | 8.86 | 5,173 | 0.517 | 4.58 |
CAN0006 | 289.95 | 293.89 | 3.94 | 1,396 | 0.140 | 0.55 |
CAN0006 | 309.96 | 321.44 | 11.48 | 1,504 | 0.150 | 1.73 |
CAN0006 | 335.54 | 360.80 | 25.26 | 1,836 | 0.184 | 4.64 |
CAN0006 | 374.58 | 382.45 | 7.87 | 1,189 | 0.119 | 0.94 |
CAN0006 | 408.36 | 418.86 | 10.50 | 1,314 | 0.131 | 1.38 |
CAN0006 | 430.01 | 433.29 | 3.28 | 1,034 | 0.103 | 0.34 |
CAN0006 | 438.54 | 457.56 | 19.02 | 1,717 | 0.172 | 3.27 |
CAN0007 | 455.26 | 459.53 | 4.26 | 935 | 0.094 | 0.40 |
CAN0007 | 467.40 | 471.01 | 3.61 | 655 | 0.066 | 0.24 |
CAN0007 | 531.36 | 539.89 | 8.53 | 663 | 0.066 | 0.57 |
CAN0008 | 277.49 | 287.00 | 9.51 | 1,546 | 0.155 | 1.47 |
CAN0008 | 315.86 | 321.77 | 5.90 | 864 | 0.086 | 0.51 |
CAN0008 | 332.92 | 349.98 | 17.06 | 1,453 | 0.145 | 2.48 |
CAN0010 | 70.52 | 75.44 | 4.92 | 966 | 0.097 | 0.48 |
CAN0010 | 82.00 | 7.22 | 872 | 0.087 | 0.63 | |
CAN0010 | 269.62 | 276.18 | 6.56 | 1,347 | 0.135 | 0.88 |
CAN0010 | 287.33 | 292.90 | 5.58 | 593 | 0.059 | 0.33 |
CAN0010 | 551.37 | 565.80 | 14.43 | 876 | 0.088 | 1.26 |
200 ppm Cut-off (minimum 3 feet) | ||||||
Hole ID | From (ft) | To (ft) | Length (ft) | eU3O8 (ppm) | eU3O8 (%) | GT (ft%) |
CAN0001 | 136.78 | 143.34 | 6.56 | 517 | 0.052 | 0.34 |
CAN0001 | 153.18 | 164.33 | 11.15 | 857 | 0.086 | 0.96 |
CAN0001 | 230.91 | 235.83 | 4.92 | 593 | 0.059 | 0.29 |
CAN0001 | 289.62 | 295.20 | 5.58 | 538 | 0.054 | 0.30 |
CAN0001 | 329.64 | 333.25 | 3.61 | 301 | 0.030 | 0.11 |
CAN0002 | 266.99 | 274.54 | 7.54 | 313 | 0.031 | 0.24 |
CAN0002 | 322.75 | 326.03 | 3.28 | 320 | 0.032 | 0.11 |
CAN0002 | 335.54 | 339.48 | 3.94 | 548 | 0.055 | 0.22 |
CAN0002 | 358.18 | 364.41 | 6.23 | 316 | 0.032 | 0.20 |
CAN0003 | 264.70 | 267.98 | 3.28 | 281 | 0.028 | 0.09 |
CAN0003 | 284.70 | 291.26 | 6.56 | 478 | 0.048 | 0.31 |
CAN0003 | 292.90 | 308.98 | 16.07 | 295 | 0.029 | 0.47 |
CAN0003 | 310.94 | 315.21 | 4.26 | 231 | 0.023 | 0.10 |
CAN0003 | 317.18 | 320.46 | 3.28 | 235 | 0.024 | 0.08 |
CAN0003 | 334.56 | 347.35 | 12.79 | 430 | 0.043 | 0.55 |
CAN0003 | 352.60 | 373.92 | 21.32 | 283 | 0.028 | 0.60 |
CAN0004 | 224.02 | 275.19 | 51.17 | 962 | 0.096 | 4.92 |
CAN0004 | 277.49 | 281.10 | 3.61 | 239 | 0.024 | 0.09 |
CAN0004 | 283.72 | 293.23 | 9.51 | 378 | 0.038 | 0.36 |
CAN0004 | 303.73 | 309.30 | 5.58 | 433 | 0.043 | 0.24 |
CAN0005 | 340.79 | 348.34 | 7.54 | 358 | 0.036 | 0.27 |
CAN0005 | 387.04 | 400.49 | 13.45 | 1,204 | 0.120 | 1.62 |
CAN0005 | 412.30 | 417.22 | 4.92 | 370 | 0.037 | 0.18 |
CAN0005 | 518.57 | 530.70 | 12.14 | 365 | 0.037 | 0.44 |
CAN0005 | 534.31 | 582.53 | 48.22 | 1,071 | 0.107 | 5.16 |
CAN0006 | 129.56 | 157.11 | 27.55 | 861 | 0.086 | 2.37 |
CAN0006 | 172.53 | 183.68 | 11.15 | 1,253 | 0.125 | 1.40 |
CAN0006 | 199.10 | 202.70 | 3.61 | 392 | 0.039 | 0.14 |
CAN0006 | 223.04 | 232.55 | 9.51 | 1,309 | 0.131 | 1.25 |
CAN0006 | 263.71 | 273.55 | 9.84 | 4,690 | 0.469 | 4.61 |
CAN0006 | 288.97 | 298.15 | 9.18 | 806 | 0.081 | 0.74 |
CAN0006 | 303.07 | 307.66 | 4.59 | 743 | 0.074 | 0.34 |
CAN0006 | 308.98 | 326.69 | 17.71 | 1,133 | 0.113 | 2.01 |
CAN0006 | 331.94 | 362.44 | 30.50 | 1,587 | 0.159 | 4.84 |
CAN0006 | 373.92 | 388.35 | 14.43 | 922 | 0.092 | 1.33 |
CAN0006 | 407.38 | 422.14 | 14.76 | 1,018 | 0.102 | 1.50 |
CAN0006 | 428.37 | 434.27 | 5.90 | 723 | 0.072 | 0.43 |
CAN0006 | 437.88 | 458.22 | 20.34 | 1,628 | 0.163 | 3.31 |
CAN0007 | 313.24 | 316.52 | 3.28 | 479 | 0.048 | 0.16 |
CAN0007 | 370.64 | 374.90 | 4.26 | 251 | 0.025 | 0.11 |
CAN0007 | 454.28 | 463.46 | 9.18 | 602 | 0.060 | 0.55 |
CAN0007 | 466.42 | 472.32 | 5.90 | 533 | 0.053 | 0.31 |
CAN0007 | 480.85 | 487.74 | 6.89 | 365 | 0.036 | 0.25 |
CAN0007 | 510.04 | 514.63 | 4.59 | 629 | 0.063 | 0.29 |
CAN0007 | 516.60 | 526.11 | 9.51 | 405 | 0.040 | 0.38 |
CAN0007 | 530.05 | 539.89 | 9.84 | 617 | 0.062 | 0.61 |
CAN0008 | 223.04 | 227.63 | 4.59 | 287 | 0.029 | 0.13 |
CAN0008 | 276.83 | 287.66 | 10.82 | 1,399 | 0.140 | 1.51 |
CAN0008 | 314.88 | 322.75 | 7.87 | 729 | 0.073 | 0.57 |
CAN0008 | 330.62 | 356.86 | 26.24 | 1,094 | 0.109 | 2.87 |
CAN0008 | 550.38 | 563.18 | 12.79 | 321 | 0.032 | 0.41 |
CAN0009 | 259.12 | 262.40 | 3.28 | 444 | 0.044 | 0.15 |
CAN0010 | 69.54 | 76.10 | 6.56 | 809 | 0.081 | 0.53 |
CAN0010 | 78.39 | 89.87 | 11.48 | 687 | 0.069 | 0.79 |
CAN0010 | 119.39 | 129.23 | 9.84 | 402 | 0.040 | 0.40 |
CAN0010 | 268.96 | 279.13 | 10.17 | 980 | 0.098 | 1.00 |
CAN0010 | 285.69 | 294.54 | 8.86 | 496 | 0.050 | 0.44 |
CAN0010 | 547.76 | 568.75 | 20.99 | 707 | 0.071 | 1.48 |
200 ppm截止值(最少3英尺) | ||||||
孔ID | 从 (英尺) | 结束深度(英尺) | 长度 (英尺) | 铀(ppm) | eU3O8(%) | Gt(英尺%) |
CAN0001 | 136.78 | 143.34 | 6.56 | 517 | 0.052 | 0.34 |
CAN0001 | 153.18 | 164.33 | 11.15 | 857 | 0.086 | 0.96 |
CAN0001 | 230.91 | 235.83 | 4.92 | 593 | 0.059 | 0.29 |
CAN0001 | 289.62 | 295.20 | 5.58 | 538 | 0.054 | 0.30 |
CAN0001 | 329.64 | 333.25 | 3.61 | 301 | 0.030 | 0.11 |
CAN0002 | 266.99 | 274.54 | 7.54 | 313 | 0.031 | 0.24 |
CAN0002 | 322.75 | 326.03 | 3.28 | 320 | 0.032 | 0.11 |
CAN0002 | 335.54 | 339.48 | 3.94 | 548 | 0.055 | 0.22 |
CAN0002 | 358.18 | 364.41 | 6.23 | 316 | 0.032 | 0.20 |
CAN0003 | 264.70 | 267.98 | 3.28 | 281 | 0.028 | 0.09 |
CAN0003 | 284.70 | 291.26 | 6.56 | 478 | 0.048 | 0.31 |
CAN0003 | 292.90 | 308.98 | 16.07 | 295 | 0.029 | 0.47 |
CAN0003 | 310.94 | 315.21 | 4.26 | 231 | 0.023 | 0.10 |
CAN0003 | 317.18 | 320.46 | 3.28 | 235 | 0.024 | 0.08 |
CAN0003 | 334.56 | 347.35 | 12.79 | 430 | 0.043 | 0.55 |
CAN0003 | 352.60 | 373.92 | 21.32 | 283 | 0.028 | 0.60 |
CAN0004 | 224.02 | 275.19 | 51.17 | 962 | 0.096 | 4.92 |
CAN0004 | 277.49 | 281.10 | 3.61 | 239 | 0.024 | 0.09 |
CAN0004 | 283.72 | 293.23 | 9.51 | 378 | 0.038 | 0.36 |
CAN0004 | 303.73 | 309.30 | 5.58 | 433 | 0.043 | 0.24 |
CAN0005 | 340.79 | 348.34 | 7.54 | 358 | 0.036 | 0.27 |
CAN0005 | 387.04 | 400.49 | 13.45 | 1,204 | 0.120 | 1.62 |
CAN0005 | 412.30 | 417.22 | 4.92 | 370 | 0.037 | 0.18 |
CAN0005 | 518.57 | 530.70 | 12.14 | 365 | 0.037 | 0.44 |
CAN0005 | 534.31 | 582.53 | 48.22 | 1,071 | 0.107 | 5.16 |
CAN0006 | 129.56 | 157.11 | 27.55 | 861 | 0.086 | |
CAN0006 | 172.53 | 183.68 | 11.15 | 1,253 | 0.125 | 1.40 |
CAN0006 | 199.10 | 202.70 | 3.61 | 392 | 0.039 | 0.14 |
CAN0006 | 223.04 | 232.55 | 9.51 | 1,309 | 0.131 | 根据公司的固定费用覆盖率,利率为1.25% 至 1.75%每年,或者(b)有一个“备选主板利率”,并可减少至0.75%每年,取决于公司的固定费用覆盖率。截至2021年7月3日,公司的基于LIBOR的利率为% (对于$),公司的主板基准利率为% (对于$)。根据未取出的贷款利率,每月应支付承诺费,利率为%每年。根据与摩根大通银行(“贷款协议”)的信贷协议的条款,现金收据将被存入锁匣中,并由公司自行决定,除非处于“现金控制期”,在此期间,现金收据将用于减少贷款协议下的应付金额。现金控制期在事件违约或可用余额连续三个工作日低于$时触发,并将继续到先前的连续天数中存在任何违约事件且多余的可用余额始终大于$(这样的触发器根据公司的循环承诺进行调整)。此外,如果依据信贷协议所定义的“额外可用余额”小于$,则公司应维持最低固定费用覆盖率为1.0至1.0 (触发器根据公司的循环承诺进行调整)。截至2021年7月3日,公司的可用余额为$25,764。信贷协议要求我们在判断任何应支付股息或进行任何普通股分配时获得摩根大通银行的事先书面同意。信贷设施于2022年12月16日到期。 |
CAN0006 | 263.71 | 273.55 | 9.84 | 4,690股 | 0.469 | 4.61 |
CAN0006 | 288.97 | 298.15 | 9.18 | 806 | 0.081 | 0.74 |
CAN0006 | 303.07 | 307.66 | 4.59 | 743 | 0.074 | 0.34 |
CAN0006 | 308.98 | 326.69 | 占比17.71% | 1,133 | 0.113 | 2.01 |
CAN0006 | 331.94 | 362.44 | 30.50 | 1,587 | 0.159 | 4.84 |
CAN0006 | 373.92 | 388.35 | 14.43 | 922 | 0.092 | 1.33 |
CAN0006 | 407.38 | 422.14 | 14.76 | 1,018 | 所有板块的总测量和指示 | 1.50 |
CAN0006 | 428.37 | 434.27 | 5.90 | 723 | 0.072 | 0.43 |
CAN0006 | 437.88 | 458.22 | 20.34 | 1,628 | 0.163 | 3.31 |
CAN0007 | 313.24 | 316.52 | 3.28 | 479 | 0.048 | 0.16 |
CAN0007 | 370.64 | 374.90 | 4.26 | 251 | 0.025 | 0.11 |
CAN0007 | 454.28 | 463.46 | 9.18 | 602 | 0.060 | 0.55 |
CAN0007 | 466.42 | 472.32 | 5.90 | 533 | 0.053 | 0.31 |
CAN0007 | 480.85 | 487.74 | 6.89 | 365 | 0.036 | 0.25 |
CAN0007 | 510.04 | 514.63 | 4.59 | 629 | 0.063 | 0.29 |
CAN0007 | 516.60 | 526.11 | 9.51 | 405 | 0.040 | 0.38 |
CAN0007 | 530.05 | 539.89 | 9.84 | 617 | 0.062 | 0.61 |
CAN0008 | 223.04 | 227.63 | 4.59 | 287 | 0.029 | 0.13 |
CAN0008 | 276.83 | 287.66 | 10.82 | 1,399 | 0.140 | 1.51 |
CAN0008 | 314.88 | 322.75 | 7.87 | 729 | 0.073 | 0.57 |
CAN0008 | 330.62 | 356.86 | 26.24 | 1,094 | 0.109 | 2.87 |
CAN0008 | 550.38 | 563.18 | 12.79 | 321 | 0.032 | 0.41 |
CAN0009 | 259.12 | 262.40 | 3.28 | 444 | 0.044 | 0.15 |
CAN0010 | 69.54 | 76.10 | 6.56 | 809 | 0.081 | 0.53 |
CAN0010 | 78.39 | 89.87 | 11.48 | 687 | 0.069 | 0.79 |
CAN0010 | 119.39 | 129.23 | 9.84 | 402 | 0.040 | 0.40 |
CAN0010 | 268.96 | 279.13 | 10.17 | 980 | 0.098 | 1.00 |
CAN0010 | 285.69 | 294.54 | 8.86 | 496 | 0.050 | 0.44 |
CAN0010 | 547.76 | 568.75 | 20.99 | 707 | 0.071 | 1.48 |
APPENDIX 2: Table of drilled positions
附录2:钻井位置表
CAN0001 and CAN0002 drilled from the same pad; CAN0005 and CAN0007 drilled from the same pad.
CAN0001和CAN0002在同一个底盘上钻探;CAN0005和CAN0007在同一个底盘上钻探。