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Fathom Intersects Rottenstone-Like Nickel Tenor in Drillhole AL24077 at the Albert Lake Project

Fathom Intersects Rottenstone-Like Nickel Tenor in Drillhole AL24077 at the Albert Lake Project

Fathom 在 Albert Lake Project 的 Drillhole AL24077 中与烂石般的镍男高音相交
newsfile ·  04/16 07:44

Calgary, Alberta--(Newsfile Corp. - April 16, 2024) - Fathom Nickel Inc. (CSE: FNI) (FSE: 6Q5) (OTCQB: FNICF) (the "Company" or "Fathom") is pleased to announce results of the Q1 drill program at the Company's 100% owned Albert Lake Project. Additionally, effective April 8, 2024, drilling has been completed at the Gochager Lake Project. Assays for the Gochager Lake project are expected to be released by the end of May.

艾伯塔省卡尔加里--(Newsfile Corp.-2024 年 4 月 16 日)- Fathom Nickel Inc. (CSE:FNI)(FSE:6Q5)(OTCQB:FNICF)(公司“或”Fathom“)很高兴地宣布该公司100%拥有的艾伯特湖项目第一季度钻探计划的结果。此外,自2024年4月8日起,戈查格尔湖项目的钻探已经完成。Gochager Lake项目的化验结果预计将于5月底公布。

Highlights of Q1 Albert Lake Project drill program:

艾伯特湖项目第一季度钻探计划的亮点:

  • Six (6) drillholes (AL24075 - AL24080), totaling 1,386 meters drilled at the project (Figure 1, Table 1).
  • Drillhole AL24077 intersected 0.42% Ni over an intersection of 2.01 meters (Table 2).
  • Importantly, this nickel mineralization is hosted in orthopyroxenite. Orthopyroxenite is part of the host rock assemblage recognized at the historic, and very high-grade Ni-Cu+PGE Rottenstone deposit located approximately 1.2 kilometers to the northeast of AL24077 (Figure 1).
  • Also of importance, the AL24077 nickel intersection has a very high nickel tenor (~10%). Typical Rottenstone mineralization has a nickel tenor of in the 6-10% range (see Table 3, Figure 1).
  • Shallow off-hole BHEM conductivity anomalies were detected in all drillholes surveyed.
  • 该项目共钻了六 (6) 个钻孔(AL24075-AL24080),总共钻了 1,386 米(图 1,表 1)。
  • AL24077 钻孔在 2.01 米的交叉点上与 0.42% 的镍相交(表 2)。
  • 重要的是,这种镍矿化存在于正辉石中。Orthopyroxenite 是位于 AL24077 东北约 1.2 千米处的历史性极高品位的 Ni-Cu+PGE Rottenstone 矿床中认可的主岩组合的一部分(图 1)。
  • 同样重要的是,AL24077 镍交叉点的镍含量非常高(约 10%)。典型的烂石矿化层的镍含量在 6-10% 之间(参见表 3,图 1)。
  • 在所有调查的钻孔中都发现了浅层的井下 BHEM 电导率异常。

Ian Fraser, CEO and VP Exploration stated, "The elevated nickel concentration in Rottenstone-like ultramafic rock and the very-high associated nickel tenor identified in our drillhole AL24077 is a very significant development. We recognize high nickel tenors associated with Rottenstone-type mineralization and in ultramafic rock occurring along strike and in the structural trend that hosts the historic Rottenstone deposit / mine. The 10% nickel tenor defined in intervals comprising <3% sulphide in drillhole AL24077 indicates that net-textured to massive sulphide mineralization occurring along strike, and most likely at depth, within this same ultramafic unit could develop into a mineral deposit with metal grades similar to the historic Rottenstone deposit. We think the robustness and size of the multi-element soil geochemistry anomaly around AL24077 indicates chemical contributions from a large mineralized ultramafic body in the footprint of this soil geochemistry anomaly. The Company plans to further evaluate this robust soil geochemical anomaly by undertaking detailed surface geochemistry and geophysics to reconcile soil geochemistry with surface and BHEM anomalies. Understanding the coincident geochemical and geophysical responses coincident with the ultramafic stratigraphy in AL24077 will help guide the next phase of drilling. A nickel tenor of 6-10% is a feature of the Rottenstone Deposit which carried exceptionally high nickel grades. Identification of high nickel tenor 1.2 km south of historic Rottenstone, and within the multi-element soil anomaly is another very significant clue in our quest to discover a large nickel deposit with Rottenstone-like grades. More work is required; however, this is another important development at the Albert Lake project. We are getting closer."

首席执行官兼勘探副总裁伊恩·弗雷泽表示, “在我们的 AL24077 钻孔中发现的类似 Rottenstone 的超镁铁质岩石中镍浓度升高以及相关的镍含量非常高,这是一项非常重大的进展。我们认识到,与罗滕斯通型矿化以及走向沿线和构造趋势的超镁铁质岩石中存在的高镍矿相关,这些岩石构成了历史悠久的罗滕斯通矿床/矿山。在 AL24077 钻孔中,以

Figure - 1 Albert Lake Project Drillhole Plan Map

图-1 艾伯特湖项目钻孔平面图

Table - 1 Drillhole Location Summary

表-1 钻孔位置摘要

Drillhole Easting* Northing* Azimuth (°) Dip (°) Final Depth (m)
AL24075 510411 6243560 150 -70 401
AL24076 509767 6243090 40 -79 212
AL24077 509928 6243583 148 -68 209
AL24078 509918 6243467 150 -72 218
AL24079 510409 6244158 148 -80 200
AL24080 509917 6243466 120 -77 146
Drillhole 东方* Northing* 方位角 (°) 倾角 (°) 最终深度 (m)
AL24075 510411 6243560 150 -70 401
AL24076 509767 6243090 40 -79 212
AL24077 509928 6243583 148 -68 209
AL24078 509918 6243467 150 -72 218
AL24079 510409 6244158 148 -80 200
AL24080 509917 6243466 120 -77 146

* Drillhole locations are UTM NAD83 - Zone 13.

* 钻孔位置为 UTM NAD83-区域 13。

Table - 2 Drillhole Assay Summary

表-2 钻孔分析摘要

Drillhole From (m) To (m) Interval (m)* Ni
wt%
Cu
wt%
Co
wt%
3E
g/t**
AL24075 333.81 338.66 4.85 0.02 0.03 0.003 0.03
AL24076 No significant results
AL24077 25.44 27.45 2.01 0.42 0.06 0.013 0.18
Including 25.79 26.09 0.30 0.93 0.12 0.028 0.11
AL24078 72.76 78.68 5.92 0.02 0.002 0.004 0.02
AL24079 156.50 158.30 1.80 0.03 0.07 0.004 0.03
AL24080 129.8 130.8 1.00 0.09 0.004 0.009 0.03
Drillhole 从 (m) 到 (m) 间隔 (m) * Ni
wt%

wt%
有限公司
wt%
3E
g/t**
AL24075 333.81 338.66 4.85 0.02 0.03 0.003 0.03
AL24076 没有显著的结果
AL24077 25.44 27.45 2.01 0.42 0.06 0.013 0.18
包括 25.79 26.09 0.30 0.93 0.12 0.028 0.11
AL24078 72.76 78.68 5.92 0.02 0.002 0.004 0.02
AL24079 156.50 158.30 1.80 0.03 0.07 0.004 0.03
AL24080 129.8 130.8 1.00 0.09 0.004 0.009 0.03

* Interval is not true thickness. Insufficient data currently to determine true thickness.
** - 3E is palladium + platinum + gold.

* 间隔不是真实的厚度。目前数据不足,无法确定真实厚度。
**-3E 是钯金 + 铂金 + 金。

Comments on Individual Drillholes:

对个人钻孔的评论:

AL24075 - Drilled to test the source of very strong TDEM (conductivity) response, modelled to be more than 400m in strike and up to 100m in width, at a depth >300m below surface. The conductor is located on the eastern flank of the very robust soil geochemical anomaly and is coincident with a gravity inversion believed to correspond to a body of denser rock also at depths >300m. AL24075 determined the source of conductor to be sulphidic metapelite and sulphidic silicate-rich metasedimentary rocks containing up to 50% barren sulphides; primarily pyrrhotite + pyrite. These mineralized metasedimentary rocks, referred to as sulphidic iron formation, occur at 295-348.5m. Within this interval, weak nickel mineralization occurs at 333.81-338.66m (Table 2). This is not magmatic nickel sulphide mineralization. The hole ended in silicate rich metasedimentary rock at 401m depth. Due to caving in the drillhole, a BHEM survey was unsuccessful.

AL24075 -钻探的目的是测试非常强的 TDEM(电导率)响应源,该响应源的走向超过 400 米,宽度可达 100 米,深度在地表以下超过 300 米。导体位于非常坚固的土壤地球化学异常的东侧,与重力反演相吻合,据信重力反演对应于同样深度大于300米的密度更高的岩体。AL24075 确定导体的来源是硫化偏晶石和富含硫化硅酸盐的变沉积岩,其中含有高达 50% 的贫硫化物;主要是铁矿+黄铁矿。这些矿化超沉积岩被称为硫化铁层,位于295-348.5米处。在此间隔内,微弱的镍矿化发生在333.81-338.66米处(表2)。这不是岩浆硫化镍矿化。该洞的终点是深度为401米的富含硅酸盐的超沉积岩。由于钻孔中出现洞穴,BHEM 的调查没有成功。

AL24076 - Drilled to test a smaller, circular, near surface TDEM conductor. The drillhole intersected metasedimentary rocks with no significant mineralization and the drillhole was stopped at 212m. The source of surface TDEM conductivity was not explained by this drillhole. However, the BHEM data for this drillhole indicates a near miss. Flat-lying conductive features were established immediately off-hole within 15m of surface. The source of this conductive anomaly requires further drilling.

AL24076 -已钻孔以测试较小的圆形近表面 TDEM 导体。钻孔与超沉积岩相交,没有明显的矿化,钻孔停在212米处。这个钻孔无法解释表面 TDEM 电导率的来源。但是,该钻孔的BHEM数据表明差点失误。在距表面 15 米的孔外立即建立了平坦的导电特征。这种传导异常的来源需要进一步钻探。

AL24077 - Drilled to test very anomalous soil geochemistry coincident with subtle conductive features identified in the TDEM survey. At 25.44-27.45, the drillhole intersected weakly mineralized ultramafic rock and pegmatite (see Table 2). The ultramafic rock is typical of the rock type occurring at the historic Rottenstone deposit. The remainder of drillhole comprised largely metasedimentary rock, and the drillhole was stopped at 209m. A BHEM survey detected an off-hole conductive feature at 60-70m. The source of this anomaly has not yet been tested by drilling, nor has the continuation along strike of the mineralized ultramafic interval occurring at 25.44-27.45m.

AL24077 -钻探是为了测试非常异常的土壤地球化学特征,该地球化学特征与TDEM调查中确定的细微导电特征相吻合。钻孔在 25.44-27.45 处与弱矿化的超镁铁质岩石和伟晶岩相交(见表 2)。超镁铁质岩石是历史悠久的罗滕斯通矿床中典型的岩石类型。钻孔的其余部分主要由超沉积岩组成,钻孔停在209米处。BHEM 的一项调查在 60-70 米处发现了井外导电特征。这种异常的来源尚未经过钻探测试,矿化超镁铁质区间的延续走向也没有发生在25.44-27.45m。

AL24078 - Designed to drill below a surface gossan within an area of highly anomalous soil geochemistry. A mafic unit interpreted to be gabbro was intersected at 72.7-78.8m (see Table 2). The drillhole was dominated by metapelite and metasedimentary rock and no other zones of mafic-ultramafic stratigraphy were intersected. The hole was stopped at 218m. A BHEM survey detected an off-hole response 65-75m coincident with mafic unit occurring at 72.7-78.8m and an in-hole response indicating continuation beyond the drillhole occurs at a depth of 120m. At 126.1-128.1m mineralized metapelite was encountered, consisting of ~10% pyrrhotite-chalcopyrite-pyrite as stringers and disseminations.

AL24078 -设计用于在土壤地球化学高度异常的区域内钻探地表棉下方。一个被解释为辉长石的魔法单位在72.7-78.8米处相交(见表2)。钻孔以变质岩和超沉积岩为主,没有其他镁质-超镁铁质地层学区域相交。这个洞在 218 米处停了下来。BHEM的一项调查发现,65-75米的井外响应与72.7-78.8米处的镁质单元重合,而井内响应表明钻孔以外的延伸发生在120米的深度。在 126.1-128.1m 处遇到了矿化偏晶石,由大约 10% 的硫铁矿-黄铜矿-黄铁矿作为纵梁和散播物组成。

AL24079 - Drilled from ice and designed to test a magnetic feature trending from the historic Rottenstone deposit towards the southwest. The drillhole encountered metapelite and metasedimentary rock and was stopped at 200m. A BHEM survey detected an off-hole anomaly at 180m and a building conductive signal towards the bottom of the drillhole. The source of this conductive feature has not yet been tested.

AL24079 -从冰上钻探,旨在测试从历史悠久的罗滕斯通矿床向西南延伸的磁特征。钻孔遇到了变质岩和超沉积岩,并在 200 米处停了下来。BHEM 的一项调查在 180 米处发现了井下异常,钻孔底部有建筑物传导信号。这种传导特性的来源尚未经过测试。

AL24080 - Designed to follow up on BHEM conductors defined from drillhole AL24078. The drillhole consisted of metapelite and granitized metasedimentary rock. A thin section of mafic-ultramafic rock was intersected at 129.8-130.8m containing minor amounts of pyrrhotite mineralization as stringers (see Table 2). Off-hole BHEM conductive anomalies were detected at ~85m and at ~135m depth. The sources of the BHEM conductors detected in AL24078 and AL24080 have not been further tested by drilling.

AL24080 -专为跟踪根据钻孔 AL24078 定义的 BHEM 导体而设计。钻孔由偏质岩和花岗岩化超沉积岩组成。一小部分的镁铁矿-超镁铁质岩石在129.8-130.8米处相交,其中含有少量的铁矿化物作为纵梁(见表2)。在大约 85 米和大约 135 米深处检测到井外 BHEM 导电异常。在 AL24078 和 AL24080 中检测到的 BHEM 导体的来源尚未通过钻探进行进一步测试。

A full interpretation of the BHEM results is pending, but the Company is encouraged by the presence of multiple near surface BHEM conductors. Detailed surface infill geochemistry along with tighter, detailed surface TDEM will further fine tune these targets.

对BHEM结果的全面解释尚待确定,但该公司对多根近地表BHEM导体的存在感到鼓舞。详细的地表填充地球化学以及更紧密、更详细的表面 TDEM 将进一步微调这些目标。

Table - 3 Nickel Tenor Calculations (see Figure 1 for locations)

表-3 镍期限的计算(位置参见图 1)

Drillhole / sample From
(m)
To
(m)
Interval
(m)*
Ni
wt%
Cu
wt%
Co
wt%
3E
g/t**
S wt% Ni
Tenor wt%***
AL24077 25.44 26.37 0.93 0.72 0.10 0.02 0.28 2.59 10.17
RL03032 77.2 78.7 1.5 0.78 0.12 0.02 0.90 2.81 10.35
MET772134 Rottenstone Met Sample 4.04 1.40 0.09 9.89 14.60 10.07
AL22052 99.03 102.57 3.54 1.09 0.42 0.07 0.75 15.29 2.82
AL21024 5.71 11.41 5.70 1.28 1.10 0.04 5.21 7.32 6.59
钻孔/样品 来自
(m)

(m)
间隔
(m) *
Ni
wt%

wt%
有限公司
wt%
3E
g/t**
S wt% Ni
男高音 wt%***
AL24077 25.44 26.37 0.93 0.72 0.10 0.02 0.28 2.59 10.17
RL03032 77.2 78.7 1.5 0.78 0.12 0.02 0.90 2.81 10.35
MET772134 烂石肉类样品 4.04 1.40 0.09 9.89 14.60 10.07
AL22052 99.03 102.57 3.54 1.09 0.42 0.07 0.75 15.29 2.82
AL21024 5.71 11.41 5.70 1.28 1.10 0.04 5.21 7.32 6.59

* - Interval is not true thickness.
** - 3E is palladium + platinum + gold.
*** - Nickel tenor is defined as the calculated nickel concentration in 100% sulphides and note in the case above to calculate Ni tenor a minimum assay of 1% S is required together with the evidence that the mineralization comprises a magmatic assemblage of pyrrhotite, pentlandite, and chalcopyrite.

*-间隔不是真实的厚度。
**-3E 是钯金 + 铂金 + 金。
***-镍期量定义为 100% 硫化物中计算出的镍浓度,请注意,在上述情况下,要计算镍含量,至少需要测定 1% S,并提供矿化由铁矿、戊兰岩和黄铜矿组成的岩浆组合的证据。

Comment on Nickel Tenor (see Figure 1 for drillhole and sample locations, Table 3 for calculations):

评论 Nickel Tenor(钻孔和样品位置见图 1,计算见表 3):

  • AL24077 - The high nickel tenor (10.17%) calculated for the ultramafic intersection in hole AL24077 is based on the significant nickel concentration (0.932%) observed in an interval containing small amounts of sulphide mineralization (S concentration of 3.4%).
  • RL03032 - Historic drillhole RL03032 also contains a sulphide interval with high nickel tenor (10.35%) and small amounts of sulphide mineralization (2.81% S). RL03032 was collared ~125m north of the historic Rottenstone mine and one can interpret the thin band of ultramafic hosted mineralization as an apophysis of the adjacent high nickel tenor Rottenstone Deposit to the south. The elevated nickel tenor in AL24077 is interpreted to also be a strong indicator of a proximal ultramafic intrusion with elevated nickel tenor.
  • MET772134 - The MET772134 sample is the head grade obtained from a 23kg sample of net-textured Rottenstone mineralization that Fathom submitted for metallurgical testing in 2017. This sample has a calculated nickel tenor of 10.07%. Note nickel tenors for AL24077 and RL03032 (10.17% and 10.35% respectively) discussed above. The MET sample returned: 4.04% Ni, 1.40% Cu, 0.09% Co, 9.89 g/t 3E with a S concentration of 14.6%.
  • Bay Island Trend - It is also interesting to note calculated nickel grade and low nickel tenor at the Company's Bay-Island Trend discovery; where 300+ meters strike length of ultramafic-hosted mineralization was previously reported by Fathom (see AL22052, Table 3, Figure 1). The mineralized interval 99.03-102.57m in drillhole AL22052 returned 1.09% Ni with a S concentration of 15.29% and note the low nickel tenor of 2.82%. The Rottenstone MET sample has similar contained S (14.6%) but the AL22052 intersection yielded ~ 1/3rd of the nickel grade of MET772134 (1.09% Ni vs. 4.04% Ni) and yet the host rock and mineralogy are very similar.
  • AL21024 - Drillhole AL21024 was collared south of the Rottenstone Deposit indicating that the Rottenstone mineralization continues to the south. The associated nickel tenor is 6.59%.
  • AL24077 -针对 AL24077 孔中超镁铁质交叉点计算的高镍含量(10.17%)基于在含有少量硫化物矿化(S 浓度为 3.4%)的间隔内观察到的显著镍浓度(0.932%)。
  • RL03032 -历史钻孔 RL03032 还包含一个硫化物区间,镍含量高(10.35%),硫化物矿化程度低(2.81% S)。RL03032 位于历史悠久的罗滕斯通矿以北约 125 米处,人们可以将超镁铁质宿主矿化的薄带解释为南边邻近的高镍质罗滕斯通矿床的缩影。AL24077 中镍基的升高也被解释为有力地表明近端的超镁铁质侵入伴随镍基含量升高。
  • MET772134 -MET772134 样本是从 Fathom 于 2017 年提交冶金测试的 23 千克净纹理烂石矿化样本中获得的矿头等级。该样本的计算镍期为10.07%。注意上面讨论的 AL24077 和 RL03032 的镍期限(分别为 10.17% 和 10.35%)。MET 样本返回了:4.04% 镍,1.40% 铜,0.09% 一氧化碳,9.89 g/t 3E,硫浓度为 14.6%。
  • 海湾岛趋势 -还值得注意的是,该公司在海湾岛趋势的发现中计算出的镍品位和低镍期限;Fathom此前报告了超镁质主体矿化的走向长度超过300米(见 AL22052,表 3,图 1)。AL22052 钻孔中的矿化间隔 99.03-102.57m 返回 1.09% 的镍,硫浓度为 15.29%,并注意到镍含量低,为 2.82%。Rottenstone MET 样本中类似的含有 S(14.6%),但是 AL22052 交叉点的产量约为 1/3第三方 MET772134 的镍品位(1.09% 的镍对比 4.04% 的镍),但主岩和矿物学非常相似。
  • AL21024 -AL21024 钻孔位于烂石矿床以南,这表明烂石矿化继续向南延伸。相关的镍期限为6.59%。

Together with other exploration methodologies that Fathom utilizes, nickel tenor can also be used as a vectoring tool. Higher nickel tenors in the Rottenstone area coincide with elevated nickel, copper, cobalt and 3E grades. The high nickel tenor in AL24077 encourages further drilling to investigate the possibility of a larger body of ultramafic rock with net-texture to massive sulphide mineralization occurring along strike, and in the root of this system. This possible system occurs beneath a robust surface geochemical anomaly, coincident with a NE-SW trending major gravity ridge, and multiple TDEM and BHEM anomalies. This is a high priority target for further exploration.

与Fathom使用的其他勘探方法一起,镍基期限也可以用作矢量工具。罗滕斯通地区镍矿期的上涨与镍、铜、钴和3E品位的上升相吻合。AL24077 中的高镍含量鼓励进一步钻探,以研究在走向沿线和该系统的根部出现更大的具有净纹理到块状硫化物矿化的超镁铁质岩石的可能性。这个可能的系统出现在一个强大的地表地球化学异常之下,与东南方向的主重力脊以及多个TDEM和BHEM异常相吻合。这是进一步探索的高优先目标。

Comment on Couloir Capital Ltd. (Couloir) Research Coverage

评论Couloir Capital Ltd.(Couloir)的研究报道

Fathom has engaged Couloir Capital Ltd. ("Couloir") to provide research coverage of the Company. A Couloir press release issued on April 3, 2024, announcing this arrangement, contained certain misleading information that we feel is in need of clarification:

Fathom已聘请Couloir Capital Ltd.(“Couloir”)为该公司提供研究报道。Couloir于2024年4月3日发布的新闻稿宣布了这一安排,其中包含一些我们认为需要澄清的误导性信息:

  • Fathom's 2-tranche financing that closed in Dec. 2023 and Feb. 2024, totaling approximately $4.5M raised, was sufficient to complete the Company's H1 exploration programs at the Albert Lake and Gochager Lake projects and add approximately $1 million working capital to the Company's treasury.
  • The new exploration permit application for the Gochager Lake project, submitted to the Saskatchewan Ministry of Environment on January 19, 2024, is under review. The application indicates and requests that the Company will drill up to 15,000 meters at the Gochager Lake project. To facilitate this anticipated and future drilling additional exploration, the Company will establish a 20-25-person camp on the Gochager Lake property.
  • Fathom的2期融资于2023年12月和2024年2月完成,共筹集了约450万美元,足以完成公司在艾伯特湖和戈查格尔湖项目的上半年勘探计划,并为公司的财政增加约100万美元的营运资金。
  • 2024年1月19日向萨斯喀彻温省环境部提交的戈查格尔湖项目的新勘探许可申请正在审查中。该申请表明并要求该公司将在戈查格尔湖项目钻探长达15,000米。为了促进预期和未来的进一步钻探,该公司将在Gochager Lake物业上建立一个可容纳20-25人的营地。

Fathom apologizes for the confusion this may have caused. Fathom has also requested that Couloir edit and correct the original research document from which the press release information was drawn. Couloir has complied with this request and has now posted the revised version on its website. Fathom would like to thank Couloir for their cooperation in rectifying this matter.

对于由此可能造成的混乱,Fathom 深表歉意。Fathom还要求Couloir编辑和更正新闻稿信息所依据的原始研究文件。Couloir已遵守了这一要求,现已在其网站上发布了修订后的版本。Fathom 要感谢 Couloir 在纠正此事方面的合作。

Quality Assurance / Quality Control (QA/QC) Disclosure Statement

质量保证/质量控制 (QA/QC) 披露声明

Fathom implements an industry-standard QA/QC for all field and diamond drill programs. Fathom, through the services of TerraLogic Exploration Inc., inserts QA/QC samples in its diamond drill programs at a rate of one sample per approximately every 12-13 samples collected. Standards sourced from CDN Resource Laboratories and CCRMP were inserted into the sample stream at a rate of 1 in 30 samples. Additionally, lab duplicates (coarse rejects) were inserted and positioned in the sample sequence at a rate of 1 in 30 samples and positioned in the sample sequence alternating with standards to result in a QA/QC insertion rate of no less than 1 in 15 samples. Blanks were inserted at the start of every sample batch and additionally after samples of anticipated high-grade or high sulphide content.

Fathom 对所有实地和金刚石钻探项目实施行业标准 QA/QC。Fathom通过TerraLogic Exploration Inc. 的服务,在其钻石钻探计划中插入质量保证/质量控制样本,大约每采集12-13个样本就有一个样本。来自CDN资源实验室和CCRMP的标准以每30个样本中1个的速率插入样本流中。此外,实验室副本(粗糙不合格)以每30个样品中1个的速率插入和定位在样品序列中,并与标准品交替放置在样品序列中,从而使质量保证/质量控制插入率不低于15个样品中的1个。在每批样品的开始处插入空白,此外还会在预期的高硫化物含量或较高的样品之后插入空白。

Assaying is performed at ALS Canada Ltd. ("ALS"). ALS is an accredited laboratory (SCC - CAN-P-1579 and CAN-P-4E ISO/IEC 17025) and is independent of Fathom. All drill core samples are analyzed using a 4-Acid digestion followed by 33 element ICP-AES analyses (Code ME-ICP61). Over limit Ni, Cu results are further analyzed by 4-Acid ore grade elements ICP-AES process (Code ME-OG62). Analyses for Au, Pd and Pt utilized the ore grade Pt, Pd and Au by ICP-AES (Code PGM-ICP27). Total sulphur is analysed by (S-IR08).

化验在 ALS 加拿大有限公司(“ALS”)进行。ALS 是一家经认证的实验室(SCC-CAN-P-1579 和 CAN-P-4E ISO/IEC 17025),独立于 Fathom。所有钻芯样品均采用 4 酸消解法进行分析,然后进行 33 种元素 ICP-AES 分析(代码 ME-ICP61)。通过4-酸性矿石等级元素 ICP-AES 工艺(代码 ME-OG62)进一步分析超限的镍、铜结果。对金、钯和铂的分析使用了 ICP-AES(代码 PGM-ICP27)的矿石品位铂、钯和金。(S-IR08) 对总硫含量进行了分析。

Qualified Person and Data Verification

合格人员和数据验证

Ian Fraser, P.Geo., CEO, VP Exploration, and a Director of the Company and the "qualified person" as defined by National Instrument 43-101, has verified the data disclosed in this news release, and has otherwise reviewed and approved the technical information in this news release on behalf of the Company.

P.Geo.、首席执行官兼勘探副总裁、公司董事和National Instrument 43-101定义的 “合格人员” Ian Fraser已经验证了本新闻稿中披露的数据,并以其他方式代表公司审查和批准了本新闻稿中的技术信息。

About Fathom Nickel Inc.

关于 Fathom Nickel Inc.

Fathom is an exploration company that is targeting magmatic nickel sulphide discoveries to support the rapidly growing global electric vehicle market.

Fathom 是一家勘探公司,其目标是发现岩浆硫化镍,以支持快速增长的全球电动汽车市场。

The Company now has a portfolio of two high-quality exploration projects located in the prolific Trans Hudson Corridor in Saskatchewan: 1) the Albert Lake Project, a 90,000+ hectare project that was host to the historic and past producing Rottenstone deposit (produced high-grade Ni-Cu+PGE, 1965-1969), and 2) the 22,000+ hectare Gochager Lake Project that is host to a historic, NI43-101 non-compliant open pit resource consisting of 4.3M tons at 0.295% Ni and 0.081% Cu2

该公司现在拥有位于萨斯喀彻温省多产的跨哈德逊走廊的两个高质量勘探项目的投资组合:1) 阿尔伯特湖项目,一个占地 90,000 多公顷的项目,曾是历史上和过去生产的罗滕斯通矿床(1965-1969 年生产了高品质 Ni-Cu+PGE)的所在地,2) 占地 22,000 多公顷 Gochager Lake 项目 这里有历史性的、不符合 NI43-101 标准的露天矿资源,包括 430 万吨,镍含量为 0.295%,铜含量为 0.081%2

1 - The Saskatchewan Mineral Deposit Index (SMID#0950) Tremblay-Olson Ni-Cu Deposit or Showing

1-萨斯喀彻温省矿床指数 (SMID #0950) Tremblay-Olson 镍铜矿床或显示

2 - The Saskatchewan Mineral Deposit Index (SMID#0880) reports drill indicated reserves at the historic Gochager Lake Deposit of 4,262,400 tons grading 0.295% Ni and 0.081% Cu mineable by open pit. Fathom cannot confirm the resource estimate, nor the parameters and methods used to prepare the reserve estimate. The estimate is not considered NI43-101 compliant and further work is required to verify this historical drill indicated reserve.

2-萨斯喀彻温省矿床指数(SMID #0880)报告称,历史悠久的戈查格尔湖矿床的钻探表明储量为4,262,400吨,镍品位为0.295%,铜含量为0.081%,可通过露天开采。Fathom无法确认资源估算,也无法确认用于准备储量估算的参数和方法。该估计值不符合 NI43-101 标准,需要进一步工作来验证历史钻探表明的储量。

ON BEHALF OF THE BOARD

代表董事会

Ian Fraser, Chief Executive Officer and Vice-President, Exploration
1-403-650-9760
Email: ifraser@fathomnickel.com

伊恩·弗雷泽,首席执行官兼勘探副总裁
1-403-650-9760
电子邮件:ifraser@fathomnickel.com

or

要么

Doug Porter, President & CFO
+1-403-870-4349
Email: dporter@fathomnickel.com

道格·波特,总裁兼首席财务官
+1-403-870-4349
电子邮件:dporter@fathomnickel.com

Forward-Looking Statements:

前瞻性陈述:

This news release contains "forward-looking statements" that are based on expectations, estimates, projections and interpretations as at the date of this news release. Forward-looking statements are frequently characterized by words such as "plan", "expect", "project", "seek", "intend", "believe", "anticipate", "estimate", "suggest", "indicate" and other similar words or statements that certain events or conditions "may" or "will" occur, and include, without limitation, statements regarding intended future exploration work, including drilling, and the timing of such activities. Forward-looking statements relate to information that is based on assumptions of management, forecasts of future results, and estimates of amounts not yet determinable. Any statements that express predictions, expectations, beliefs, plans, projections, objectives, assumptions or future events or performance are not statements of historical fact and may be "forward-looking statements." Forward-looking statements are subject to a variety of risks and uncertainties which could cause actual events or results to differ from those reflected in the forward-looking statements, including, without limitation: risks related to failure to obtain adequate financing on a timely basis and on acceptable terms; risks related to the outcome of legal proceedings; political and regulatory risks associated with mining and exploration; risks related to the maintenance of stock exchange listings; risks related to environmental regulation and liability; the potential for delays in exploration or development activities or the completion of feasibility studies; the uncertainty of profitability; risks and uncertainties relating to the interpretation of drill results, the geology, grade and continuity of mineral deposits; risks related to the inherent uncertainty of production and cost estimates and the potential for unexpected costs and expenses; results of prefeasibility and feasibility studies, and the possibility that future exploration, development or mining results will not be consistent with the Company's expectations; risks related to commodity price fluctuations; and other risks and uncertainties related to the Company's prospects, properties and business detailed elsewhere in the Company's disclosure record. Such forward looking statements involve known and unknown risks, uncertainties and other factors which may cause the actual results, performance or achievements of the Company to be materially different from any future results, performance or achievements expressed or implied by such forward-looking statements. These forward-looking statements are made as of the date hereof and the Company does not assume any obligation to update or revise them to reflect new events or circumstances except in accordance with applicable securities laws. Actual events or results could differ materially from the Company's expectations or projections.

本新闻稿包含 “前瞻性陈述”,这些陈述基于截至本新闻稿发布之日的预期、估计、预测和解释。前瞻性陈述通常以 “计划”、“预期”、“项目”、“寻求”、“打算”、“相信”、“预期”、“估计”、“建议”、“表明” 等词语或陈述为某些事件或条件 “可能” 或 “将” 发生,包括但不限于关于未来预期勘探工作(包括钻探)以及此类活动时间的陈述。前瞻性陈述涉及基于管理层假设、对未来业绩的预测以及对尚未确定的金额的估计的信息。任何表达预测、期望、信念、计划、预测、目标、假设或未来事件或表现的陈述都不是对历史事实的陈述,可能是 “前瞻性陈述”。前瞻性陈述存在各种风险和不确定性,这些风险和不确定性可能导致实际事件或结果与前瞻性陈述中反映的有所不同,包括但不限于:与未能按可接受的条件及时获得充足融资相关的风险;与法律诉讼结果相关的风险;与采矿和勘探相关的政治和监管风险;与维持证券交易所上市相关的风险;与环境监管和责任相关的风险;潜在风险勘探或开发活动或可行性研究完成的延迟;盈利能力的不确定性;与解释钻探结果、矿床的地质情况、品位和连续性有关的风险和不确定性;与生产和成本估算固有的不确定性以及可能出现意想不到的成本和支出相关的风险;预可行性和可行性研究的结果,以及未来的勘探、开发或采矿结果可能与公司预期不一致;与大宗商品价格波动相关的风险;以及公司披露记录中其他地方详述的与公司前景、财产和业务相关的其他风险和不确定性。此类前瞻性陈述涉及已知和未知的风险、不确定性和其他因素,这些因素可能导致公司的实际业绩、业绩或成就与此类前瞻性陈述所表达或暗示的任何未来业绩、业绩或成就存在重大差异。这些前瞻性陈述自本文发布之日起作出,除非根据适用的证券法,否则公司不承担任何更新或修改这些陈述以反映新事件或情况的义务。实际事件或业绩可能与公司的预期或预测存在重大差异。

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