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Mawson Finland Limited Presents Downhole EM (DHEM) Geophysics: Multiple Deep Conductors Newly Identified at Rajapalot

Mawson Finland Limited Presents Downhole EM (DHEM) Geophysics: Multiple Deep Conductors Newly Identified at Rajapalot

Mawson Finland Limited 提供井下电磁(DHEM)地球物理学:在 Rajapalot 新识别的多个深部导体
Accesswire ·  11/19 06:30

VANCOUVER, BC / ACCESSWIRE / November 19, 2024 / Mawson Finland Limited ("Mawson" or the "Company") (TSXV:MFL) is pleased to announce results from downhole electro-magnetic "DHEM" geophysical surveys conducted at the Rajapalot gold-cobalt project in Finland.

不列颠哥伦比亚省温哥华/ACCESSWIRE /2024年11月19日/Mawson Finland Limited(“Mawson” 或 “公司”)(TSXV: MFL)欣然宣布在芬兰拉贾帕洛特金钴项目进行的井下电磁 “DHEM” 地球物理调查的结果。

Highlights:

亮点:

  • Results and interpretation from downhole EM surveys found multiple deep conductors at Rajapalot

  • 井下 Em 调查的结果和解释在拉贾帕洛特发现了多种深层导体

  • Several strong conductors are located down-dip/down-plunge of both the Palokas and South Palokas zones suggesting gold-cobalt mineralization continues with depth

  • 帕洛卡斯和南帕洛卡斯带的向下倾/向下坠落都有几条强导体,这表明金钴矿化在深度上仍在继续

  • Additional deep conductors located along-strike from the Palokas Zone, ~500 metres to the north-east

  • 其他深层导体位于帕洛卡斯区沿线走向,向东北方向约500米

  • Five conductive targets identified within/nearby to inferred resource area and ready to be drill-tested in this up-coming 2025 winter drill-season

  • 在推断的资源区域内/附近确定了五个导电目标,准备在即将到来的2025年冬季钻探季进行钻探测试

Ms. Noora Ahola, Mawson Finland CEO, states:"We are very excited to report the results of our recent geophysics surveys at Rajapalot. We have identified several exciting targets in downhole EM surveys that suggest the gold-cobalt mineralization at Rajapalot continues with depth at Palokas and South Palokas, while further anomalies are also present in un-drilled areas close-by. We plan to conduct further EM geophysical studies at Rajapalot in the coming weeks in our lead-up to the 2025 winter drilling campaign, in addition to an approximate 600-hectare sub-audio magnetic "SAM" ground-survey presently being carried out over our high-grade Rompas gold project located 6 kilometres east of Rajapalot. We look forward to presenting the results of these additional surveys prior to the initiation of our winter drilling campaign planned to begin in January 2025."

莫森芬兰首席执行官努拉·阿霍拉女士表示:“我们非常高兴地报告最近在拉贾帕洛特进行的地球物理调查结果。我们在井下电磁调查中确定了几个令人兴奋的目标,这些目标表明,拉贾帕洛特的金钴矿化仍在继续,深度位于帕洛卡斯和南帕洛卡斯,而附近的未钻探区域也存在进一步的异常现象。在2025年冬季钻探活动之前,我们计划在未来几周内在拉贾帕洛特进行进一步的电磁地球物理研究,此外目前正在对位于拉贾帕洛特以东6公里处的高品位Rompas金矿项目进行约600公顷的亚音频磁场 “SAM” 地面调查。我们期待在计划于2025年1月开始的冬季钻探活动开始之前公布这些额外调查的结果。”

Downhole EM Results

井下宝石结果

Electromagnetic techniques were first used in 2013 by Mawson at Rajapalot with a helicopter-borne VTEMplus survey indicating the conductive nature of areas subsequently discovered to be the Palokas, South Palokas, The Hut, Terry's Hammer, Rumajärvi, Raja and Joki zones of gold-cobalt mineralization. Due to the close association of gold-cobalt mineralization with pyrrhotite accumulations at the known mineralized occurrences at the Rajapalot project, detection of these sulfide-bearing mineral-systems with EM geophysical methods is achievable due to their associative, highly-reactive EM properties.

2013年,莫森在拉贾帕洛特首次使用了电磁技术,当时在直升机上进行了VTEMplus调查,结果显示随后发现的金钴矿化的帕洛卡斯、南帕洛卡斯、小屋、特里之锤、鲁玛雅尔维、拉贾和乔基区域的导电性质。由于金钴矿化作用与拉贾帕洛特项目已知矿化点的软铁矿堆积密切相关,因此可以用电磁地球物理方法探测这些含硫化物的矿物系统,因为它们具有关联性、高反应性的电磁特性。

In this downhole EM campaign, five EM-loops were set-out in order to measure conductivity responses in the vicinity of 8 selected drillholes to explore for further nearby gold-cobalt mineralized rock-bodies at Rajapalot (refer to map in Figure 1). Five of 8 drillholes, corresponding to 3-EM loops (loops 1-3), were located around the Palokas and South Palokas zones of gold-cobalt mineralization, while 1 drillhole (loop 4) was located 400 metres north-east of Palokas, and 2 drillholes (loop 5) located on the northern margin of the Raja zone (refer to Figure 1 for drillhole, and EM-loop locations/survey layout).

在这次井下 Em 活动中,设置了五个 EM 回路,以测量 8 个选定钻孔附近的电导率响应,以进一步探索拉贾帕洛特附近的金钴矿化岩体(参见图 1 中的地图)。8 个钻孔中有五个,对应于 3-Em 回路(回路 1-3),位于帕洛卡斯和南帕洛卡斯金钴矿化区周围,而 1 个钻孔(回路 4)位于帕洛卡斯东北 400 米处,2 个钻孔(回路 5)位于拉贾地带的北缘(钻孔和 EM-Loop 位置/勘测布局见图 1)。

At South Palokas, 2 strong EM conductors were located 'off-hole' to both the north and south of drillhole PAL0367 (loop 3) at the presently defined base of gold-cobalt mineralization. South Palokas conductive body "A" is found to the south of drillhole PAL0367, with the top of the conductor modelled at around -340mRL and continues for some 200 metres in the down-dip direction, while conductive body "B" is located to the north of drillhole PAL0367, with its top modelled at -370mRL and continues for a further 110 metres in the down-dip direction (refer Table 1, and to 3-D projections in Figure 2 and Figure 3). These results strongly suggest that further gold-cobalt mineralization may be present at depth at South Palokas.

在南帕洛卡斯,两个强电磁导体位于钻孔 PAL0367(环路 3)北部和南部的 “井外”,位于目前确定的金钴矿化底部。南帕洛卡的导电体 “A” 位于钻孔 PAL0367 以南,导体的顶部建模约为 -340mRL,向下倾方向延伸约 200 米,而导电体 “B” 位于钻孔 PAL0367 以北,其顶部建模为 -370mRL,向下倾方向再延伸 110 米(参见表 1,以及到图 2 和图 3 中的三维投影)。这些结果强烈表明,南帕洛卡斯深处可能存在进一步的金钴矿化。

At Palokas, a strong EM-conductive body is interpreted on the lower, northern margin of the mineralized zone, extending down-dip from PAL0200 (loop 3), with the top of this conductor modelled at -129mRL, continuing a further 135 metres in the down-dip direction. This modelled conductor initially appears coincident with the lower portions of the deeper areas of the Palokas mineralized zone however, it is interpreted to be separated from the main Palokas mineralized zone. The anomaly isn't readily explained by simply enlarging the presently known geometry of the Palokas mineralized system down-dip with a northerly plunge and as such, these results suggest an additional lens of gold-cobalt mineralization may exist beyond the known limits of mineralization in the deeper areas of the Palokas zone (refer Table 1, and to 3-D projections in Figure 2 and Figure 3).

在帕洛卡斯,在矿化带的下部北缘解释了一个强电磁导体,从 PAL0200(回路 3)向下延伸,该导体的顶部以 -129mRL 为模型,向下延伸 135 米。这种建模导体最初看起来与帕洛卡斯矿化区深层区域的下半部分重合,但是,据解释,它与帕洛卡斯矿化带的主矿化区是分开的。这种异常不容易通过简单地向下放大目前已知的帕洛卡斯矿化系统的几何形状并向北倾斜来解释,因此,这些结果表明,在帕洛卡斯带更深的区域,金钴矿化可能存在于已知矿化极限之外(参见表 1,以及图 2 和图 3 中的三维投影)。

Two further loops were set-out in the Palokas and South Palokas area in order to search for conductive rocks in between Palokas and South Palokas zones of mineralization (drillhole PAL0352; loop 1), and to search the footwall zone to Palokas in light of the recent discovery of "New Lens" in the footwall area of South Palokas (drillholes PAL0072 and PAL0362; loop 2; refer to Figure 1). No conductive anomalies were observed in these areas beyond that of the signals detected from the known mineralized conductive bodies of both Palokas and South Palokas.

鉴于最近在南帕洛卡斯脚下区域发现了 “新镜头”(钻孔 PAL0072 和 PAL0362;回路 2),在帕洛卡斯和南帕洛卡斯地区又开辟了两个环路,以便在帕洛卡斯和南帕洛卡斯矿化区(钻孔和;回路 1)之间寻找导电岩石;参见图 1)。PAL0352除了从帕洛卡斯和南帕洛卡斯已知的矿化导电体中探测到的信号外,在这些区域没有观察到任何传导异常。

North-east of Palokas, approximately 400 metres along-strike, a further drillhole, PAL0073 (loop 4), was used to measure for the presence of deep conductive anomalies in the vicinity of this drillhole. A strongly conductive, 150m by 150m sized EM anomaly was modelled 'off-hole' to the north of PAL0073, approximately 220 metres below surface at the -50mRL (refer to Table 1, Figure 1, and 3D EM-plate model in Figure 4). These data suggest the presence of a potentially mineralized rock-system located approximately 450 to 600 metres along-strike, to the north-east of the Palokas zone.

在帕洛卡斯东北部,沿走向约 400 米,又有一个钻孔,即 PAL0073(回路 4),用于测量该钻孔附近是否存在深度导电异常。在 PAL0073 以北、地表以下约 220 米处,在 -50mRL 处 “离孔” 建模了一个导电性强、大小为 15000万 x 15000万的电磁异常(参见表 1、图 1 和图 4 中的 3D 电磁板模型)。这些数据表明,在帕洛卡斯地区东北部沿走向约450至600米处存在潜在的矿化岩石系统。

A final loop was set-out in the Raja area, using drillholes PAL0171 and PAL0355 (loop 5; see figure 1). A smaller, 70m by 110m sized, 'off-hole' conductive anomaly was measured on the mid-northern margin of the Raja zone of gold-cobalt mineralization. Modelling of the conductive anomaly places a plate-anomaly in the footwall of the Raja zone of mineralization, only 30 metres below the known zone by approximately (refer to Figure 5). While this general area has received some drilling previously, no drilling has penetrated the specific area defined in the modelled EM plate, and as such presents a very compelling drill-target.

最后一个回路是使用钻孔 PAL0171 和 PAL0355 在拉贾地区设置的(回路 5;见图 1)。在拉贾金钴矿化区的中北部边缘测得了一个较小的、大小为7000万乘11000万的 “井外” 导电异常。对传导异常进行建模后,拉贾矿化区的底部出现了板块异常,仅比已知区域低约30米(参见图 5)。尽管此前已对该大致区域进行了一些钻探,但没有钻孔穿透建模的Em板中定义的特定区域,因此提供了一个非常有吸引力的钻探目标。

Geophysical Survey Parameters

地球物理调查参数

The downhole EM (DHEM) survey was conducted by Finnish geophysics provider Geovisor Oy from Rovaniemi, using a Zonge ZT-30 transmitter system. The acquisition was measured using the EMIT Smartem24 receiver system with EMIT DHEM Digiatlantis probe that measures the decaying magnetic field with three orthogonal Fluxgate magnetometer sensors producing along hole (A-component), and two perpendicular components (namely U and V- components). For each loop configuration, the base frequency was tested, and the base frequency was altered from 0.25 Hz to 1 Hz. The EM response was stacked over 32,128 EM pulses depending on the base frequency and the observed signal strength. The used time windows scheme was SMARTem standard containing 39 to 43 time channels depending on the base frequency. All the holes were measured in one piece from the collar with surveys having 10 metre reading intervals. The modelling was done using Maxwell software, using plate models. All maps have been created within the KKJ3/Finland Uniform Coordinate System (EPSG:2393).

井下电击(DHEM)调查由来自罗瓦涅米的芬兰地球物理提供商Geovisor Oy使用Zonge Zt-30发射系统进行。这次采集是使用带有emIT dHEM Digiatlantis探头的eMit Smartem24接收器系统测量的,该探头使用沿孔产生的三个正交磁通门磁强计传感器(A组件)和两个垂直分量(即U和V-分量)来测量衰减的磁场。对于每种回路配置,都对基本频率进行了测试,并将基本频率从 0.25 Hz 更改为 1 Hz。电磁响应堆叠在 32,128 个 Em 脉冲上,具体取决于基本频率和观测到的信号强度。使用的时间窗口方案是SmartEM标准,包含39至43个时间通道,具体取决于基本频率。所有孔洞都是从项圈开始一块地测量的,测量间隔为10米。建模是使用Maxwell软件和板块模型完成的。所有地图都是在KKj3/芬兰统一坐标系(EPSG: 2393)中创建的。

Technical Background

技术背景

At Rajapalot, all examples of gold-cobalt mineralization are consistently located within highly-sheared and foliated wall-rocks adjacent to strongly hydrothermally altered, northwest to north dipping shear-zones. Mineralization is typically encountered as disseminated to semi-massive sulfide lenses (predominantly pyrrhotite and lesser pyrite ± cobaltite), hosted within strongly deformed and altered, mafic volcanic and volcaniclasitic stratigraphy of the upper portions of the Paleoproterozoic-aged Kivalo Group of the Peräpohja Greenstone Belt. Prospects with high-grade gold and cobalt mineralization at Rajapalot occur across a 3 km (east-west) by 2 km (north-south) area within the larger Rajapalot project area measuring 4 km by 4 km with multiple mineralized boulders, base-of-till (BOT). Gold-Cobalt mineralization at Rajapalot has been drilled to approximately 470 metres below surface at both South Palokas and Raja prospects, and mineralization remains open at depth across the entire project.

在拉贾帕洛特,所有金钴矿化的例子都位于高度剪切和叶状的墙岩中,毗邻强烈的水热变化,从西北到北的倾斜剪切带附近。矿化通常以弥散到半块状硫化物透镜(主要是黄铁矿和次要的黄铁矿±钴铁矿)的形式出现,这些透镜位于佩拉波哈绿岩带古元代时代基瓦洛群上部强烈变形和变化的镁铁质火山岩和火山岩地层中。拉贾帕洛特的高品位金和钴矿化前景分布在较大的拉贾帕洛特项目区域内,跨越3千米(东西向)乘2千米(南北)的区域,该区域面积为4千米乘4千米,有多个矿化巨石,即耕作基地(BOT)。拉贾帕洛特的金钴矿化区已在南帕洛卡斯和拉贾勘探区钻探至地表以下约470米,整个项目的深度矿化仍处于开放状态。

Qualified Person

合格人员

The technical and scientific information in this news release was reviewed, verified and approved by Dr. Thomas Fromhold, an employee of Fromhold Geoconsult AB, and Member of The Australian Institute of Geosciences (MAIG, Membership No. 8838). Dr. Fromhold is a "qualified person" as defined under NI 43-101. Dr. Fromhold is not considered independent of the Company under NI 43-101 as he is a consultant of the Company.

本新闻稿中的技术和科学信息由Fromhold Geoconsult Ab的员工、澳大利亚地球科学研究所(MAIG,成员编号8838)成员托马斯·弗罗姆霍尔德博士的审查、验证和批准。根据NI 43-101的定义,弗罗姆霍尔德博士是 “合格人员”。根据NI 43-101,弗罗姆霍尔德博士不被视为独立于公司,因为他是公司的顾问。

About Mawson Finland Limited

关于莫森芬兰有限公司

Mawson Finland Limited is an exploration stage mining development company engaged in the acquisition and exploration of precious and base metal properties in Finland. The Company is primarily focused on gold and cobalt. The Corporation currently holds a 100% interest in the Rajapalot Gold-Cobalt Project located in Finland. The Rajapalot Project represents approximately 5% of the 100-square kilometre Rompas-Rajapalot Property, which is wholly owned by Mawson and consists of 11 granted exploration permits for 10,204 hectares and 2 exploration permit applications and a reservation notification area for a combined total of 40,496 hectares. In Finland, all operations are carried out through the Company's fully owned subsidiary, Mawson Oy. Mawson maintains an active local presence of Finnish staff with close ties to the communities of Rajapalot.

Mawson Finland Limited是一家勘探阶段的矿业开发公司,从事芬兰贵金属和基本金属资产的收购和勘探。该公司主要专注于黄金和钴。该公司目前持有位于芬兰的拉贾帕洛特金钴项目100%的权益。拉贾帕洛特项目约占占地100平方千米的Rompas-Rajapalot地产的5%,该地产由莫森全资拥有,包括11份已批准的10,204公顷勘探许可证和2份勘探许可申请以及总面积为40,496公顷的保留通知区域。在芬兰,所有业务均通过该公司的全资子公司Mawson Oy进行。Mawson在当地拥有活跃的芬兰员工,他们与拉贾帕洛特社区关系密切。

Additional disclosure including the Company's financial statements, technical reports, news releases and other information can be obtained at mawsonfinland.com or on SEDAR+ at .

其他披露信息,包括公司的财务报表、技术报告、新闻稿和其他信息,可在mawsonfinland.com或SEDAR+上获得,网址为。

Media and Investor Relations Inquiries

媒体和投资者关系查询

Please contact: Neil MacRae Executive Chairman at neil@mawsonfinland.com or +1 (778) 999-4653, or Noora Ahola Chief Executive Officer at nahola@mawson.fi or +358 (505) 213-515.

请致电 neil@mawsonfinland.com 或 +1 (778) 999-4653 联系:尼尔·麦克雷执行董事长,或致电 nahola@mawson.fi 或 +358 (505) 213-515 与 Noora Ahola 首席执行官联系。

Neither TSX Venture Exchange nor its Regulation Services Provider (as that term is defined in the policies of the TSX Venture Exchange) accepts responsibility for the adequacy or accuracy of this news release. No securities regulatory authority has reviewed or approved of the contents of this news release.

多伦多证券交易所风险交易所及其监管服务提供商(该术语在多伦多证券交易所风险交易所的政策中定义)均不对本新闻稿的充分性或准确性承担责任。没有证券监管机构审查或批准本新闻稿的内容。

Forward-looking Information

前瞻性信息

This news release includes certain "forward-looking information" and "forward-looking statements" within the meaning of applicable securities laws (collectively, "forward-looking information") which are not comprised of historical facts. Forward-looking information includes, without limitation, estimates and statements that describe the Company's future plans, objectives or goals, including words to the effect that the Company or management expects a stated condition or result to occur. Forward-looking information may be identified by such terms as "believes", "anticipates", "expects", "estimates", "aims", "may", "could", "would", "will", "must" or "plan". Since forward-looking information is based on assumptions and address future events and conditions, by their very nature they involve inherent risks and uncertainties. Although these statements are based on information currently available to the Company, and management of the Company believes them to be reasonable based upon, among other information, the contents of the PEA and the exploration information disclosed in this news release, the Company provides no assurance that actual results will meet management's expectations. Risks, uncertainties and other factors involved with forward-looking information could cause actual events, results, performance, prospects and opportunities to differ materially from those expressed or implied by such forward-looking information. Forward-looking information in this news release includes, but is not limited to, the Company's objectives, goals or future plans, any expected receipt of additional assay results or other exploration results and the impact upon the Company thereof, any expected milestone independent data verification, the continuance of the Company's quality assurance and quality control program, potential mineralization whether peripheral to the existing Rajapalot resource or elsewhere, any anticipated disclosure of assay or other exploration results and the timing thereof, the estimation of mineral resources, exploration and mine development plans, including drilling, soil sampling, geophysical and geochemical work, any expected search for additional exploration targets and any results of such searches, potential acquisition by the Company of any property, the growth potential of the Rajapalot resource, all values, estimates and expectations drawn from or based upon the PEA, and estimates of market conditions. Factors that could cause actual results to differ materially from such forward-looking information include, but are not limited to: any change in industry or wider economic conditions which could cause the Company to adjust or cancel entirely its exploration plans, failure to identify mineral resources or any additional exploration targets, failure to convert estimated mineral resources to reserves, any failure to receive the results of completed assays or other exploration work, poor exploration results, the inability to complete a feasibility study which recommends a production decision, the preliminary and uncertain nature of the PEA, the preliminary nature of metallurgical test results, delays in obtaining or failures to obtain required governmental, environmental or other project approvals, political risks, uncertainties relating to the availability and costs of financing needed in the future, changes in equity markets, inflation, changes in exchange rates, fluctuations in commodity prices, delays in the development of projects, capital and operating costs varying significantly from estimates and the other risks involved in the mineral exploration and development industry, and those risks set out in the Company's public documents filed on SEDAR+. Although the Company believes that the assumptions and factors used in preparing the forward-looking information in this news release are reasonable, undue reliance should not be placed on such information, which only applies as of the date of this news release, and no assurance can be given that such events will occur in the disclosed time frames or at all. The Company disclaims any intention or obligation to update or revise any forward-looking information, whether as a result of new information, future events or otherwise, other than as required by law.

本新闻稿包括适用证券法所指的某些不包含历史事实的 “前瞻性信息” 和 “前瞻性陈述”(统称为 “前瞻性信息”)。前瞻性信息包括但不限于描述公司未来计划、目标或目标的估计和陈述,包括大意为公司或管理层预计将出现既定条件或结果的言论。前瞻性信息可以用 “相信”、“预期”、“预期”、“估计”、“目标”、“可能”、“可能”、“将”、“将”、“必须” 或 “计划” 等术语来识别。由于前瞻性信息基于假设并涉及未来的事件和状况,因此就其本质而言,它们涉及固有的风险和不确定性。尽管这些陈述基于公司目前获得的信息,而且根据PEA的内容和本新闻稿中披露的勘探信息等信息,公司管理层认为这些陈述是合理的,但公司无法保证实际业绩会达到管理层的预期。与前瞻性信息相关的风险、不确定性和其他因素可能导致实际事件、结果、业绩、前景和机会与此类前瞻性信息所表达或暗示的重大差异。本新闻稿中的前瞻性信息包括但不限于公司的目标、目标或未来计划、预计收到的额外化验结果或其他勘探结果及其对公司的影响、任何预期的里程碑独立数据验证、公司质量保证和质量控制计划的继续、位于现有拉贾帕洛特资源或其他地方的潜在矿化、化验或其他勘探结果的预期披露及其时间,的矿产资源估算、勘探和矿山开发计划,包括钻探、土壤取样、地球物理和地球化学工作、对额外勘探目标的任何预期搜索以及此类搜索的任何结果、公司可能收购任何财产、拉贾帕洛特资源的增长潜力、来自或基于PEA的所有价值、估计和预期,以及对市场状况的估计。可能导致实际结果与此类前瞻性信息存在重大差异的因素包括但不限于:任何可能导致公司调整或完全取消其勘探计划的行业或更广泛的经济状况的变化、未能确定矿产资源或任何其他勘探目标、未能将估计的矿产资源转换为储量、未能收到已完成的化验或其他勘探工作的结果、勘探结果不佳、无法完成可行性研究建议生产决策、PEA的初步和不确定性质、冶金测试结果的初步性质、延迟获得或未能获得所需的政府、环境或其他项目批准、政治风险、与未来所需融资的可得性和成本相关的不确定性、股票市场的变化、通货膨胀、汇率变化、大宗商品价格波动、项目开发延迟、资本和运营成本与估计值有很大差异等矿产勘探和开发行业所涉及的风险,以及公司在SEDAR+上提交的公开文件中列出的风险。尽管公司认为在本新闻稿中准备前瞻性信息时使用的假设和因素是合理的,但不应过分依赖此类信息,这仅适用于本新闻稿发布之日,也无法保证此类事件将在披露的时间范围内发生或根本无法保证。除非法律要求,否则公司不打算或义务更新或修改任何前瞻性信息,无论是由于新信息、未来事件还是其他原因。

SCHEDULE "A" - TABLES AND FIGURES

附表 “A”-表格和数字

Figure 1: Locality map illustrating the drillhole, loop and interpreted conductors (modelled EM plates) of the DHEM geophysics campaign at Rajapalot. Background graphics is a TMI-image from a ground-based, 50 metre line-spacing magnetic survey.
图 1:位置图,描绘了拉贾帕洛特的 dHem 地球物理战役的钻孔、回路和解释导体(模拟电磁板)。背景图片是来自地面 50 米线间距磁场测量的 TMI 图像。

Loop

Conductor

Drillhole

Conductivity-thickness (s)

Dimensions (Strike x Dip)

Dip/Dip-direction

Depth to top (mRL)

Loop 1

NA

PAL0352

-

-

-

-

Loop 2

NA

PAL0072, PAL0362

-

-

-

-

Loop 3

South Palokas Deep "A"

PAL0367

100

130m x 200m

48/333

-340m

Loop 3

South Palokas Deep "B"

PAL0367

110

120m x 110m

17/314

-370m

Loop 3

Palokas Deep

PAL0200

160

100m x 135m

34/330

-129m

Loop 4

Hirvimaa

PAL0073

150

150m x 150m

12/103

-50m

Loop 5

Raja Footwall

PAL0171, PAL0355

80

70m x 110m

44/326

-125m

循环

指挥家

钻孔

电导率-厚度 (s)

尺寸(Strike x Dip)

倾角/倾斜方向

到顶部的深度 (mRL)

循环 1

NA

PAL0352

-

-

-

-

循环 2

NA

PAL0072,PAL0362

-

-

-

-

循环 3

南帕洛卡斯深处 “A”

PAL0367

100

13000万 x 200m

48/333

-340 米

循环 3

南帕洛卡斯深处 “B”

PAL0367

110

12000万 x 110m

17/314

-370 米

循环 3

帕洛卡斯深处

PAL0200

160

10000万 x 135m

34/330

-129 亿

循环 4

Hirvimaa

PAL0073

150

15000万 x 150m

12/103

-50 米

循环 5

Raja Footwall

PAL0171,PAL0355

80

7000万 x 110m

44/326

-125 米

Table 1: Results from the DHEM survey, with anomaly names and areas listed, their conductance, size, orientation and depth below surface (surface level across survey area is between ~+165m - +175mRL).

表 1:dHEM 调查结果,列出了异常名称和区域,以及它们的电导率、大小、方向和地表以下深度(整个调查区域的表面水平介于~+16500万-+175MRL 之间)。

Figure 2: "Maxwell" 3D image of various interpreted and modelled conductive EM plates around the Palokas and South Palokas zones of gold-cobalt mineralisation. Strong, deep conductors are seen extending down-dip from both the Palokas (purple) and South Palokas (red) systems.
图 2:帕洛卡斯和南帕洛卡斯金钴矿化带周围各种经过解释和建模的导电电磁板的 “Maxwell” 三维图像。可以看到强而深的导体从帕洛卡斯(紫色)和南帕洛卡斯(红色)系统向下延伸。
Figure 3: Long-section projection of the Palokas and South Palokas mineralized zones illustrating drill-intercepts, and results of the PAL0200-PAL0367 Loop 3 DHEM survey. Pink boxes are modelled plates projected onto the drilling long-section, demonstrating their vertical positions relative to extents of current drilling data. Red arrows demonstrate approximate direction of the geometry of the modelled conductive plates.
图 3:显示钻探截距的帕洛卡斯和南帕洛卡斯矿化带的长截面预测,以及 PAL0200-PAL0367 Loop 3 dHEM 调查的结果。粉色方框是投影在钻探长截面上的建模板,显示了它们相对于当前钻探数据范围的垂直位置。红色箭头表示建模导电板几何形状的近似方向。
Figure 4: "Maxwell" 3D image of various interpreted and modelled conductive EM plates around the Hirvimaa area, located 400 metres to the north-east of the Palokas zone. A strong, deep, 'off-hole' conductor is found extending northwards from drillhole PAL0073. Shallow 'in-hole' conductors are also found however, these represent the occurrence of un-mineralized, but heavily conductive pyrrhotite-bearing graphitic rock-units.
图 4:位于帕洛卡斯区域东北 400 米处的 Hirvimaa 区域周围各种经过解释和建模的导电 Em 板块的 “Maxwell” 三维图像。发现了一种坚固、深的 “井外” 导体,从 PAL0073 钻孔向北延伸。但是,也发现了浅层的 “孔内” 导体,这些导体表示存在未矿化但导电性强的含硫铁矿石的石墨岩单元。
Figure 5: "Maxwell" 3D image of interpreted and modelled conductive EM plates around the Raja zone of gold-cobalt mineralization. The Raja zone of mineralization is modelled with the larger red EM-plate, while a weaker and smaller 'off-hole' conductor (pink plate) is found 30 metres into the footwall below the Raja zone.
图 5:金钴矿化 Raja 区域周围经过解释和建模的导电 Em 板块的 “Maxwell” 三维图像。拉贾矿化区以较大的红色 EM-plate 为模型,而在 Raja 带下方的脚下 30 米处发现了一条较弱且较小的 “井外” 导体(粉色板块)。

SOURCE: Mawson Finland Limited

来源:芬兰莫森有限公司


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