Sun Summit Reports Final Exploration Results From the JD Project: Extends Footprint of Creek Zone Mineralization and Defines New Porphyry and Epithermal Targets
Sun Summit Reports Final Exploration Results From the JD Project: Extends Footprint of Creek Zone Mineralization and Defines New Porphyry and Epithermal Targets
Vancouver, British Columbia--(Newsfile Corp. - November 18, 2024) - Sun Summit Minerals Corp. (TSXV: SMN) (OTCQB: SMREF) announces final drilling, geochemical and geophysical results from the inaugural summer 2024 exploration program across the JD Project in the Toodoggone District, north-central B.C.
加拿大不列颠哥伦比亚省温哥华--(资讯 CORP - 2024年11月18日)- Sun Summit Minerals Corp.(TSXV: SMN)(OTCQB: SMREF)宣布了来自2024年夏季首次勘探项目的最终钻探、化学和地球物理结果,项目覆盖了位于不列颠哥伦比亚省中北部的JD项目,所在的区域为Toodoggone地区。
The latest exploration results further demonstrate the high-prospectivity for both epithermal-related gold-silver mineralization as well as porphyry-related copper-gold mineralization across the JD project. Follow-up targets at the emerging Creek Zone and priority new target areas have been identified and the Company has began planning for a significant exploration program set to commence in spring 2025.
最新的勘探结果进一步证明了JD项目中与低温热相关的黄金-白银矿化和与斑岩相关的铜-黄金矿化的高潜力。已识别在新出现的溪区及优先新目标区域的后续目标,公司已开始规划计划于2025年春季启动的重要勘探项目。
Key Highlights:
主要亮点:
- Mineralization intersected in every hole drilled in 2024: All 12 holes drilled across multiple targets intersected encouraging zones of mineralization.
- Creek Zone mineralization remains open: Results from 400 m step-out drill hole (JD-24-012) demonstrate that gold mineralization is open along strike to the southeast. Considerable follow-up drilling is required at Creek Zone to fully define gold mineralization extents and structural controls.
- Near-surface high-grade gold mineralization at Creek Zone: A grab sample returned 222 g/t Au, which supports the shallow, near-surface high-grade mineralization potential of the Creek Zone.
- Strong vein-hosted silver-gold mineralization discovered in reconnaissance holes along the Finn to Creek Corridor: Hole JD-24-011 intersected 2.4 metres of 114.39 g/t Ag with 0.40 g/t Au, which demonstrates the strong prospectivity for precious metal mineralization along the 4.5 km Finn to Creek Corridor.
- Porphyry system intersected in two wildcat holes north of the Creek Zone: A broad zone of interpreted porphyry-related distal alteration and local mineralization was identified in two exploration holes north of the Creek Zone. Further examination of existing airborne VTEM and radiometric geophysical data, plus additional IP, is warranted at this target as well as other look-alike targets north of the Creek Zone.
- Numerous multi-element soil geochemical anomalies defined on the Creek Zone and Belle Zone grids: New soil geochemical anomalies are locally associated with geophysical anomalies and represent possible epithermal or porphyry-targets.
- Significant exploration program in preparation for 2025: Planning is underway for an aggressive program at JD in 2025 which will include infill and step-out drilling at the Creek and Finn zones as well as exploration holes testing multiple priority targets. Additional geochemical and geophysical surveys will also be conducted across priority target areas lacking coverage.
- 2024年每个钻孔均有矿化交汇:在多个目标上钻探的12个孔中均发现了令人鼓舞的矿化区。
- 溪区矿化仍然开放:从40000万步进钻孔(JD-24-012)获得的结果表明,黄金矿化向东南方向延伸。溪区需要进行大量后续钻探,以充分确定黄金矿化的延伸及其结构控制。
- 溪区近表层高品位黄金矿化:一份取样返回了222克/吨黄金,这支持了溪区近表层高品位矿化的潜力。
- 在Finn到Creek走廊的侦查孔发现强脉带银-黄金矿化:JD-24-011号孔切割到2.4米的114.39克/吨银和0.40克/吨黄金,这表明在4.5公里的Finn到Creek走廊中贵金属矿化的强潜力。
- 在溪区北部的两个探索孔中发现斑岩系统:在溪区北部的两个勘探孔中识别到一片广泛的解释为斑岩相关的远端蚀变和局部矿化区域。针对这个目标以及其他在溪区北部相似的目标,进一步检查现有的航空VTEm和放射性地球物理数据,以及额外的IP,将是必要的。
- 在溪区和贝尔区网格上发现了大量多元素土壤地球化学异常:新的土壤地球化学异常与地球物理异常局部相关,并代表可能的热液或斜长岩靶区。
- 为2025年准备的重要勘探计划:JD的积极计划正在进行中,2025年将包括对溪区和芬区的填充钻探和延伸钻探,以及测试多个优先靶区的勘探孔。还将在缺乏覆盖的优先靶区进行额外的地球化学和地球物理调查。
"The final results from our 2024 exploration program at the JD Project underscore the exceptional potential of our project in the Toodoggone District," stated Sharyn Alexander, President of Sun Summit Minerals. "The successful expansion of the Creek Zone and the identification of multiple high-priority epithermal and porphyry targets highlight the extensive mineralization opportunities across the property. With the Creek Zone remaining open along strike and newly identified areas showing high-grade mineralization at surface, we're excited to prepare for an aggressive exploration program in 2025. Our upcoming program will build on these discoveries, with targeted infill and step-out drilling and additional geophysical and geochemical surveys to unlock the full potential of the JD Project. This next phase of exploration will ensure Sun Summit is well positioned to capitalize on high-grade and bulk-tonnage discoveries in this world-class mining district."
“我们在JD项目的2024年勘探计划的最终结果突显了我们在图多戈区项目的卓越潜力,”Sun Summit Minerals的总裁Sharyn Alexander表示。“溪区的成功扩展和多个高优先级的热液和斜长岩靶区的确定凸显了该物业广泛的矿化机会。随着溪区的延伸开放,新增的高品位矿化区域显示出表层的高品位矿化,我们很高兴为2025年准备一项积极的勘探计划。我们的即将计划将基于这些发现,进行有针对性的填充和扩展钻探,以及更多的地球物理和地球化学调查,以发掘JD项目的全部潜力。这一勘探的下一个阶段将确保Sun Summit能够充分利用这一世界级矿业区的高品位和大吨位发现。”
2024 Exploration Program
2024年勘探计划
The summer 2024 exploration program at JD consisted of over 2,500 metres of diamond drilling in twelve holes, the collection of over 1,200 soil samples and over 50 rock samples, and completion of over 20 line kilometres of induced polarization (IP) geophysical surveying (Figure 1). Work was carried out with two main objectives, 1) confirm and expand on reported high-grade gold mineralization at the Creek Zone (see September 19th, October 2nd, and October 16th, 2024 news releases), and 2) define new exploration targets to be evaluated in future exploration programs. Both objectives were met, highlighted by:
2024年夏季JD勘探计划包括进行了超过2500米的金刚石钻探,12个钻孔,收集超过1200个土壤样本和50多个岩石样本,并完成了超过20公里的诱导极化(IP)地球物理勘测(图1)。工作主要有两个目标:1)确认并扩展报告中的溪区高品位金矿化(见2024年9月19日、10月2日和10月16日的资讯发布),2)定义新的勘探靶区,以便在未来的勘探计划中进行评估。这两个目标都已实现,突出的特点包括:
1. Significant exploration potential at the Creek Zone:
1. Creek区域具有显著的勘探潜力:
- At the Creek Zone, broad zones of disseminated gold mineralization associated with moderate to strong potassic alteration, are cored by high-grade quartz-carbonate-gold-base metal veins and vein-breccias with strong potassium feldspar halos (e.g., 122.53 metres of 2.11 g/t gold including 4.04 metres of 46.78 g/t gold, see October 2nd, 2024 news release). Near-surface mineralization, with strong continuity, has been intersected over a northwest-trending area of approximately 650 by 300 metres where it remains open in most directions.
- An important outcome from the 2024 drilling at the Creek Zone is the recognition of previously undocumented, near-surface bulk-tonnage style disseminated gold mineralization (Figure 3). Most historical holes at the Creek Zone were not continuously sampled which resulted in a failure to recognise the bulk-tonnage potential of the target area (Figures 2 and 3).
- Similar to the Finn Zone, 4.5 km to the east, epithermal-related mineralization at the Creek Zone is interpreted to have been emplaced proximal to a porphyry system. Future exploration programs will target both near-surface gold mineralization as well as related and deeper porphyry copper-gold mineralization.
- 在Creek区域,广泛的散布黄金矿化与中等到强烈的钾矿化相关,核心是高品位的石英-碳酸盐-黄金-基础金属矿脉和矿脉角砾,具有强烈的钾长石晕(例如,122.53米的2.11克/吨黄金,其中包括4.04米的46.78克/吨黄金,见2024年10月2日的资讯)。近表层矿化具有较强的连续性,在西北走向约650米乘300米的区域内被发现,其中大部分方向仍然开放。
- 2024年在Creek区域钻探的重要结果是识别出先前未记录的近表层大吨位风格散布黄金矿化(图3)。Creek区域的大部分历史钻孔未进行连续取样,导致未能识别目标区域的大吨位潜力(图2和图3)。
- 与东侧4.5公里的Finn区域相似,Creek区域的热液矿化被解释为与一个斑岩系统近邻。未来的勘探项目将针对近表层黄金矿化以及相关的深部斑岩铜-黄金矿化。
2. Numerous new targets have been defined across the project area, including:
2. 项目区域内定义出多个新的目标,包括:
- Fericrete - strong porphyry-related alteration associated with open-ended coincident high-chargeability and resistivity anomalies (Figure 5).
- Creek North - strong Cu-Au-Zn soil anomaly coincident with a high-chargeability and magnetic-high geophysical anomaly (Figure 5).
- Belle North - strong Au-As-Cu-Zn soil anomaly associated with a defined magnetic lineament (Figure 7).
- Belle South - strong Cu-Zn-Ag-Au soil anomaly associated with local high-grade Au veins discovered in historic trenching programs1 (Figure 7).
- Fericrete - 与开放的高电荷率和电阻异常相关的强斑岩相关矿化(图5)。
- Creek North - 强烈的铜-黄金-锌土壤异常与高电荷可测性和磁高地球物理异常重合(图5)。
- 贝尔北 - 强烈的黄金-砷-铜-锌土壤异常与定义的磁性特征相关(图7)。
- 贝尔南 - 强烈的铜-锌-银-黄金土壤异常与历史基坑程序中发现的局部高品位黄金脉相关(图7)。
Figure 1. Map showing the location of exploration work completed in 2024 at the JD project
图1. 显示2024年JD项目勘探工作的地点图
Planning for a significant exploration program in 2025 has commenced. Work is anticipated to include significant drilling at the Creek and Finn zones as well as initial and follow-up drill tests at additional high-priority epithermal and porphyry targets. Additional geophysical and geochemical surveys will also be completed.
2025年的重大勘探计划已开始规划。预计工作将包括在溪区和芬区的重大钻探以及对其他高优先级热液和斑岩目标的初步和后续钻探测试。还将完成额外的地球物理和地球化学调查。
Creek Zone Exploration
溪区勘探
The last hole of the drill program (JD-24-012) targeted the southeast extension of the modelled Creek Zone controlling fault system as well as a recently defined strong coincident chargeability-resistivity-high IP anomaly (Figures 2 and 4). Hole JD-24-012 was collared 400 metres southeast of holes CZ-24-003 (95.50 metres of 0.70 g/t gold including 34.0 metres of 1.32 g/t gold and including 18.0 g/t gold over 0.50 metres, see September 19th, 2024 news release) and CZ-24-004 (122.53 metres of 2.11 g/t gold including 4.04 metres of 46.78 g/t gold, see October 2nd, 2024 news release), and 375 metres southeast of hole CZ-24-005 (57.95 metres of 2.69 g/t gold from 145.05 metres including 19.50 metres of 7.31 g/t gold, see October 16th, 2024 news release) and drilled to the southwest.
钻探项目的最后一个孔(JD-24-012)瞄准了模型化的溪区控制断层系统的东南延伸,以及最近定义的强共振电荷率-电阻率-高IP异常(见图2和图4)。孔JD-24-012位于CZ-24-003(95.50米,含0.70克/吨黄金,包括34.0米,含1.32克/吨黄金,并且其中18.0克/吨黄金在0.50米内,详见2024年9月19日的新闻发布)和CZ-24-004(122.53米,含2.11克/吨黄金,包括4.04米,含46.78克/吨黄金,详见2024年10月2日的新闻发布)的东南方向400米处,距离孔CZ-24-005(57.95米,含2.69克/吨黄金,从145.05米起,包括19.50米的7.31克/吨黄金,详见2024年10月16日的新闻发布)东南375米,并向西南方向钻探。
Figure 2. Plan map of Creek Zone showing drill collar locations with selected highlights as well as soil and rock geochemistry
图2. 溪区的平面图,显示钻孔位置及选定亮点,以及土壤和岩石地球化学
Hole JD-24-012 collared in disseminated gold mineralization (Figures 2 and 3). The mineralized zone started at 4.5 metres and returned 17.8 metres of 0.59 g/t gold and 10.0 metres of 0.75 g/t gold including 1.8 metres of 2.49 g/t Au from 40.5 metres. Similar to the first five holes drilled at the Creek Zone, JD-24-012 intersected a bedded sequence of volcaniclastic and intermediate volcanic rocks interpreted to be a sequence within the McClair Member of the Early Jurassic Toodoggone formation. Near-surface, bulk-tonnage style disseminated gold mineralization is associated with selectively pervasive, epidote-chlorite-pyrite alteration.
孔JD-24-012在分散的金矿化中开始(见图2和图3)。矿化区在4.5米处开始,返回了17.8米的0.59克/吨黄金和10.0米的0.75克/吨黄金,包括从40.5米起的1.8米的2.49克/吨黄金。与在溪区钻探的前五个孔类似,JD-24-012交汇到一层层的火山碎屑岩和中间火山岩,这被解读为早侏罗世图多戈尼成因的麦克莱尔组中的一层。在近地表处,散布式金矿化与选择性的广泛的绿泥石-绿石-黄铁矿变质作用相关联。
It is interpreted that JD-24-012 collared in the footwall to the Creek Zone controlling fault system and only intersected peripheral disseminated mineralization. Step-out drilling to the northeast of JD-24-012 is warranted to fully test the structural model and confirm the extension of high-grade, vein-hosted mineralization along trend to the southeast.
据解读,JD-24-012在溪区控制断层系统的底壁处开始,仅交汇到外围散布矿化。需要在JD-24-012的东北方向进行步进钻探,以充分测试结构模型并确认沿东南趋势的高品位、脉体矿化的延伸。
Table 1. Creek Zone Assay Results 1,2, 3
表1. 溪区分析结果1,2, 3
Hole ID | From (m) |
To (m) |
Interval (m) |
Au (g/t) |
Ag (g/t) |
Zn (%) |
Cu (%) |
CZ-24-01* | 63.0 | 124.5 | 61.5 | 1.07 | 0.80 | 0.09 | |
inc. | 78.0 | 121.5 | 43.5 | 1.40 | 1.10 | 0.12 | |
inc. | 104.0 | 107.6 | 3.6 | 7.28 | 9.40 | 0.98 | |
inc. | 104.0 | 104.5 | 0.5 | 24.30 | 43.70 | 4.46 | |
CZ-24-02* | 41.9 | 71.0 | 29.1 | 1.64 | 1.40 | 0.45 | |
inc. | 48.7 | 58.3 | 9.5 | 3.89 | 3.60 | 1.10 | |
inc. | 51.1 | 52.0 | 0.9 | 16.60 | 11.60 | 4.47 | |
and | 111.0 | 123.0 | 12.0 | 0.33 | 0.20 | 0.01 | |
CZ-24-03* | 4.0 | 138.0 | 134.0 | 0.57 | 0.40 | 0.07 | |
inc. | 4.0 | 99.5 | 95.5 | 0.70 | 0.50 | 0.09 | |
inc. | 58.0 | 92.0 | 34.0 | 1.32 | 1.10 | 0.22 | |
inc. | 58.0 | 66.5 | 8.5 | 2.82 | 1.90 | 0.61 | |
inc. | 61.5 | 62.0 | 0.5 | 18.00 | 2.90 | 1.37 | |
inc. | 84.0 | 92.0 | 8.0 | 1.83 | 2.00 | 0.14 | |
CZ-24-004* | 3.0 | 125.5 | 122.5 | 2.11 | 0.30 | ||
inc. | 53.0 | 111.0 | 58.0 | 4.00 | 0.50 | ||
inc. | 66.0 | 66.7 | 0.7 | 16.70 | 1.10 | ||
inc. | 91.0 | 111.0 | 20.0 | 10.01 | 0.90 | ||
inc. | 107.0 | 111.0 | 4.0 | 46.78 | 3.10 | ||
inc. | 108.0 | 109.5 | 1.5 | 121.00 | 7.30 | ||
and | 146.5 | 159.0 | 12.5 | 0.32 | 0.10 | ||
CZ-24-005* | 46.8 | 111.0 | 64.2 | 0.69 | 0.61 | 0.00 | 0.08 |
inc. | 46.8 | 57.0 | 10.2 | 1.93 | 1.58 | 0.01 | 0.27 |
and | 145.1 | 203.0 | 58.0 | 2.69 | 1.72 | 0.01 | 0.17 |
inc. | 170.5 | 203.0 | 32.5 | 4.54 | 2.92 | 0.02 | 0.27 |
inc. | 179.5 | 199.0 | 19.5 | 7.31 | 4.66 | 0.04 | 0.44 |
inc. | 179.5 | 179.8 | 0.3 | 362.00 | 121.00 | 2.23 | 18.15 |
inc. | 196.9 | 199.0 | 2.1 | 21.63 | 26.58 | 0.06 | 1.45 |
inc. | 196.9 | 197.5 | 0.6 | 53.60 | 53.60 | 0.12 | 4.06 |
inc. | 198.5 | 199.0 | 0.5 | 21.60 | 33.90 | 0.03 | 0.15 |
JD-24-012 | 4.5 | 22.3 | 17.8 | 0.59 | 2.00 | ||
and | 34.0 | 44.0 | 10.0 | 0.75 | 3.18 | ||
inc. | 34.9 | 42.3 | 7.4 | 0.92 | 3.74 | ||
inc. | 40.5 | 42.3 | 1.8 | 2.49 | 3.97 |
孔 ID | 从 (米) |
到 (米) |
间隔 (米) |
黄金 (克/吨) |
银 (克/吨) |
锌 (%) |
铜 (%) |
CZ-24-01* | 63.0 | 124.5 | 61.5 | 1.07 | 0.80 | 0.09 | |
有限公司 | 78.0 | 121.5 | 43.5 | 1.40 | 1.10 | 0.12 | |
有限公司 | 104.0 | 107.6 | 3.6 | 7.28 | 9.40 | 0.98 | |
有限公司 | 104.0 | 104.5 | 0.5 | 24.30 | 43.70 | 4.46 | |
CZ-24-02* | 41.9 | 71.0 | 29.1 | 1.64 | 1.40 | 0.45 | |
有限公司 | 48.7 | 58.3 | 9.5 | 3.89 | 3.60 | 1.10 | |
有限公司 | 51.1 | 52.0 | 0.9 | 16.60 | 11.60 | 4.47 | |
和 | 111.0 | 123.0 | 12.0 | 0.33 | 0.20 | 0.01 | |
CZ-24-03* | 4.0 | 138.0 | 134.0 | 0.57 | 0.40 | 0.07 | |
有限公司 | 4.0 | 99.5 | 95.5 | 0.70 | 0.50 | 0.09 | |
有限公司 | 58.0 | 92.0 | 34.0 | 1.32 | 1.10 | 0.22 | |
有限公司 | 58.0 | 66.5 | 8.5 | 2.82 | 1.90 | 0.61 | |
有限公司 | 61.5 | 62.0 | 0.5 | 18.00 | 2.90 | 1.37 | |
有限公司 | 84.0 | 92.0 | 8.0 | 1.83 | 2.00 | 0.14 | |
CZ-24-004* | 3.0 | 125.5 | 122.5 | 2.11 | 0.30 | ||
有限公司 | 53.0 | 111.0 | 58.0 | 4.00 | 0.50 | ||
有限公司 | 66.0 | 66.7 | 0.7 | 16.70 | 1.10 | ||
有限公司 | 91.0 | 111.0 | 20.0 | 10.01 | 0.90 | ||
有限公司 | 107.0 | 111.0 | 4.0 | 46.78 | 3.10 | ||
有限公司 | 108.0 | 109.5 | 1.5 | 121.00 | 7.30 | ||
和 | 146.5 | 159.0 | 12.5 | 0.32 | 0.10 | ||
CZ-24-005* | 46.8 | 111.0 | 64.2 | 0.69 | 0.61 | 0.00 | 0.08 |
有限公司 | 46.8 | 57.0 | 10.2 | 1.93 | 1.58 | 0.01 | 0.27 |
和 | 145.1 | 203.0 | 58.0 | 2.69 | 1.72 | 0.01 | 0.17 |
有限公司 | 170.5 | 203.0 | 32.5 | 4.54 | 2.92 | 0.02 | 0.27 |
有限公司 | 179.5 | 199.0 | 19.5 | 7.31 | 4.66 | 0.04 | 0.44 |
有限公司 | 179.5 | 179.8 | 0.3 | 362.00 | 121.00 | 2.23 | 18.15 |
有限公司 | 196.9 | 199.0 | 2.1 | 21.63 | 26.58 | 0.06 | 1.45 |
有限公司 | 196.9 | 197.5 | 0.6 | 53.60 | 53.60 | 0.12 | 4.06 |
有限公司 | 198.5 | 199.0 | 0.5 | 21.60 | 33.90 | 0.03 | 0.15 |
JD-24-012 | 4.5 | 22.3 | 17.8 | 0.59 | 2.00 | ||
和 | 34.0 | 44.0 | 10.0 | 0.75 | 3.18 | ||
有限公司 | 34.9 | 42.3 | 7.4 | 0.92 | 3.74 | ||
有限公司 | 40.5 | 42.3 | 1.8 | 2.49 | 3.97 |
* Previously released results
* 之前发布的结果
- Intervals are downhole core lengths. True widths are unknown.
- Calculations are uncut and length-weighted using a 0.10 g/t gold cut-off.
- Grades have not been capped in the length-weighted averaging.
- 间隔为下井岩心长度。实际宽度未知。
- 计算未削减,并基于0.10克/吨黄金的下限进行长度加权。
- 等级在长度加权平均中未被限制。
Prospecting while geological and structural mapping across the Creek Zone resulted in the collection of over 20 grab samples. Rock samples were preferentially collected from outcrop when available, however, outcrop was generally scarce at lower elevations. Float samples in the Creek Zone trench and talus at higher elevations are angled pieces that are likely locally derived. Mapped geology in the Creek Zone area indicated rocks are dominantly andesitic tuffs with varying degrees of propylitic alteration. The Creek Zone showing outcrop is a silica-flooded breccia with euhedral quartz lining vugs and pervasive silicification of the surrounding rock, possibly a fault plane based on limited slickensides. The breccia is angular, monomictic, and poorly sorted, with a jigsaw-fit texture and a silica matrix that contains pyrite blebs.
在溪区进行地质和结构测绘的同时,收集了超过20个抓样。岩石样本优先从露头采集,但在较低的海拔,露头往往稀少。在溪区沟槽和较高海拔的崩积物中,漂浮样本为可能是当地来源的角度标本。溪区地区的地质测绘表明,岩石主要是安山岩凝灰岩,具有不同程度的碱性变质作用。溪区的露头样品为硅浸泡的角砾岩,内含有欧式晶体石英,沿着孔隙线分布,并且周围岩石的普遍硅化,可能是基于有限的平滑面而形成的断层面。角砾岩呈角状,单一岩石成分,级配差,具有拼图式的纹理和含有黄铁矿斑点的硅质基质。
Structural mapping suggests there is a steeply-dipping northwest orientation that aligns the surface Creek Zone exposure to distinct mineralized veins encountered in recent drilling (e.g., CZ-24-001 to 005). The vein and fault system can be traced over a strike length of at least 650 metres, with the possibility of an extension to the southeast by either fault off-set or a second, parallel, splay fault/vein system.
结构测绘表明存在一个倾斜的西北方向,使得表面溪区的暴露与最近钻探中遇到的明显矿化脉络(例如,CZ-24-001至005)对齐。该脉络和断层系统可以追踪至少650米的走向长度,并且可能向东南延伸,或者是通过断层偏移或第二条平行的支脉断层/脉络系统。
Surface sampling at the Creek Zone was focused mostly along a creek bed that transects the target area (Figure 2). Sample B03976, a frost-heaved flat slab laying directly on exposed bedrock is comprised of a vuggy quartz-carbonate cemented breccia that ran 222 g/t Au with 46.4 g/t Ag and 0.09 % Zn (Figure 2, Table 2). Other samples collected from outcrop along the creek bed returned grades up to 4.7 g/t Au (Table 2). These assay results demonstrate the strong near-surface, high-grade gold potential of the Creek Zone.
溪区的表面采样主要集中在横穿目标区域的溪床上(图2)。样本B03976,是一块直接放置在暴露基岩上的霜升平板,包含一个孔隙丰富的石英-碳酸盐粘结的角砾岩,含有222克/吨Au,46.4克/吨Ag和0.09% Zn(图2,表2)。其他从溪床露头采集的样本返回了最高达4.7克/吨Au的品位(表2)。这些分析结果表明溪区的近表层高品位黄金潜力强大。
Table 2. Select assay highlights of rock chip sample results from the Creek Zone
表2. 流域区域岩石芯样品结果的选定分析亮点
Sample ID |
Description | Sample Type | Au (g/t) |
Ag (g/t) |
Zn (ppm) |
UTM E | UTM N | Elevation |
B03976 | quartz vein in volcanic breccia | subcrop | 222 | 46.4 | 862 | 608462 | 6368044 | 1576 |
B01501 | quartz vein in volcanic breccia | subcrop | 4.74 | 3.09 | 779 | 608462 | 6368044 | 1576 |
B03954 | silicified breccia | outcrop | 3.68 | 2.24 | 409 | 608461 | 6368043 | 1578 |
B03999 | quartz vein in volcanic breccia | subcrop | 1.795 | 0.64 | 606 | 608462 | 6368044 | 1576 |
B03958 | silicified breccia | outcrop | 1.79 | 1.52 | 530 | 608459 | 6368054 | 1573 |
B03955 | altered andesite | outcrop | 1.565 | 0.44 | 529 | 608462 | 6368044 | 1576 |
B03953 | altered andesite | outcrop | 1.37 | 0.26 | 616 | 608462 | 6368054 | 1572 |
B03990 | altered andesite | outcrop | 0.399 | 3.21 | 29900 | 608448 | 6368074 | 1567 |
B04000 | quartz vein in volcanic breccia | subcrop | 0.378 | 1.38 | 614 | 608462 | 6368044 | 1576 |
B03988 | altered andesite | outcrop | 0.305 | 0.34 | 513 | 608463 | 6368055 | 1571 |
样品 身份证明 |
描述 | 样品类型 | 黄金 (克/吨) |
银 (克/吨) |
锌 (ppm) |
UTm E | UTm N | 标高 |
B03976 | 火山角砾岩中的石英脉 | 次生矿 | 222 | 46.4 | 862 | 608462 | 6368044 | 1576 |
B01501 | 火山砾岩中的石英脉 | 露头 | 4.74 | 3.09 | 779 | 608462 | 6368044 | 1576 |
B03954 | 硅化角砾岩 | 露头 | 3.68 | 2.24 | 409 | 608461 | 6368043 | 1578 |
B03999 | 火山碎屑岩中的石英脉 | 露头 | 1.795 | 0.64 | 606 | 608462 | 6368044 | 1576 |
B03958 | 硅化角砾岩 | 露头 | 1.79 | 1.52 | 530 | 608459 | 6368054 | 1573 |
B03955 | 改良安山岩 | 露头 | 1.565 | 0.44 | 529 | 608462 | 6368044 | 1576 |
B03953 | 变质安山岩 | 露头 | 1.37 | 0.26 | 616 | 608462 | 6368054 | 1572 |
B03990 | 变质安山岩 | 露头 | 0.399 | 3.21 | 29900 | 608448 | 6368074 | 1567 |
B04000 | 火山角砾岩中的石英脉 | 浅层矿床 | 0.378 | 1.38 | 614 | 608462 | 6368044 | 1576 |
B03988 | 变质安山岩 | 露头 | 0.305 | 0.34 | 513 | 608463 | 6368055 | 1571 |
In addition, over 20 line kilometres of induced polarization (IP) geophysical surveying was completed across the Creek Zone and surrounding areas to the north (Figures 4 and 5). Lines were spaced 200 metres with reading on 25 to 50 metres stations covering a footprint of 2.3 by 1.3 kilometres. Results of the survey confirm the presence of a coincident high-chargeability and high-resistivity anomaly spatially associated with the core of the Creek Zone as presently defined by limited drilling (Figure 4). A similar intensity high-resistivity anomaly was defined to the southeast and slightly offset. A significant ~1.4 km by 1.2 km high-chargeability and resistivity, open-ended anomaly was defined north of the Creek Zone associated with the margins of the Fericrete Porphyry target considered prospective for concealed porphyry-related copper-gold mineralization (Figure 5). Additional IP lines are warranted north and northeast of the Creek Zone survey.
In addition, over 20 line kilometres of induced polarization (IP) geophysical surveying was completed across the Creek Zone and surrounding areas to the north (Figures 4 and 5). Lines were spaced 200 metres with reading on 25 to 50 metres stations covering a footprint of 2.3 by 1.3 kilometres. Results of the survey confirm the presence of a coincident high-chargeability and high-resistivity anomaly spatially associated with the core of the Creek Zone as presently defined by limited drilling (Figure 4). A similar intensity high-resistivity anomaly was defined to the southeast and slightly offset. A significant ~1.4 km by 1.2 km high-chargeability and resistivity, open-ended anomaly was defined north of the Creek Zone associated with the margins of the Fericrete Porphyry target considered prospective for concealed porphyry-related copper-gold mineralization (Figure 5). Additional IP lines are warranted north and northeast of the Creek Zone survey.
Fericrete Epithermal-Porphyry Target
Fericrete Epithermal-Porphyry Target
Two holes (CZ-24-006 and JD-24-007) were drilled northeast of the Creek Zone targeting a broad zone of strong argillic + pyrite alteration, formerly known as the Fericrete Gossan target (Figure 5). Outcropping, texture-destructive hydrothermally altered andesite is associated with a broad magnetic-low and a newly defined coincident high-chargeability and resistivity anomaly (Figures 4 and 5). The holes were designed to test for epithermal-related gold-base metal mineralization as well as deeper and concealed porphyry-related copper and gold mineralization. A similar targeting rationale by a former operator led to the discovery of the JD Porphyry in 2013 near the Finn Zone, ~3.2 km to the east of Fericrete (Figure 1).
Two holes (CZ-24-006 and JD-24-007) were drilled northeast of the Creek Zone targeting a broad zone of strong argillic + pyrite alteration, formerly known as the Fericrete Gossan target (Figure 5). Outcropping, texture-destructive hydrothermally altered andesite is associated with a broad magnetic-low and a newly defined coincident high-chargeability and resistivity anomaly (Figures 4 and 5). The holes were designed to test for epithermal-related gold-base metal mineralization as well as deeper and concealed porphyry-related copper and gold mineralization. A similar targeting rationale by a former operator led to the discovery of the JD Porphyry in 2013 near the Finn Zone, ~3.2 km to the east of Fericrete (Figure 1).
Hole JD-24-006 intersected porphyritic intrusive rocks to 170 metres followed by andesite and volcaniclastic rocks to bottom of hole, whereas JD-24-007 intersected mostly andesites, volcaniclastic rocks and a breccia interpreted to be comprised of strongly altered monzonitic clasts (Figure 5c). The volcanic and intrusive rocks contain local zones of early-potassic alteration associated with zones of variable propylitic alteration (epidote-chlorite-pyrite) overprinted by local intervals of strong silicification with sooty pyrite with minor clots of sphalerite and galena (phyllic alteration) and locally intense anhydrite-carbonate veins and stockwork zones. Zones of anomalous gold mineralization were intersected in both holes (e.g., 6.0 metres of 0.69 g/t Au in CZ-24-006 and 10.0 metres of 0.48 g/t Au in JD-24-007, Table 3) associated with strong silicification. Based on observed lithology, alteration assemblages and mineralization styles in holes CZ-24-006 and JD-24-007, it is interpreted that the drilling intersected a potential zone of hydrothermal telescoping (e.g., lower-temperature alteration with epithermal-related mineralization overprinting early high-temperature, porphyry-related alteration).
Hole JD-24-006 intersected porphyritic intrusive rocks to 170 metres followed by andesite and volcaniclastic rocks to bottom of hole, whereas JD-24-007 intersected mostly andesites, volcaniclastic rocks and a breccia interpreted to be comprised of strongly altered monzonitic clasts (Figure 5c). The volcanic and intrusive rocks contain local zones of early-potassic alteration associated with zones of variable propylitic alteration (epidote-chlorite-pyrite) overprinted by local intervals of strong silicification with sooty pyrite with minor clots of sphalerite and galena (phyllic alteration) and locally intense anhydrite-carbonate veins and stockwork zones. Zones of anomalous gold mineralization were intersected in both holes (e.g., 6.0 metres of 0.69 g/t Au in CZ-24-006 and 10.0 metres of 0.48 g/t Au in JD-24-007, Table 3) associated with strong silicification. Based on observed lithology, alteration assemblages and mineralization styles in holes CZ-24-006 and JD-24-007, it is interpreted that the drilling intersected a potential zone of hydrothermal telescoping (e.g., lower-temperature alteration with epithermal-related mineralization overprinting early high-temperature, porphyry-related alteration).
Additional IP geophysics and targeted drilling is warranted to the northeast to investigate a broad magnetic-high anomaly coincident with the open edge of the strongest chargeability response (Figure 5a). The definition of this new porphyry target further demonstrates the high-prospectivity of the JD Project for both epithermal and porphyry-related mineralizing systems.
有必要在东北进行额外的IP地球物理勘探和定向钻探,以调查与最强电性响应的开放边缘相吻合的广泛磁高异常(图5a)。这个新的斑岩靶区的定义进一步证明了JD项目在热泉和斑岩相关矿化系统的高前景性。
Table 3. Additional Assay Results 1,2, 3
表3. 额外的分析结果 1,2, 3
Target | Hole ID | From (m) |
To (m) |
Interval (m) |
Au (g/t) |
Ag (g/t) |
Fericrete | CZ-24-006105.5 | 111.5 | 6.0 | 0.69 | 0.92 | |
and240.5 | 249.5 | 9.0 | 0.09 | 0.16 | ||
Fericrete | JD-24-007283.0 | 293.0 | 10.0 | 0.48 | 0.94 | |
and357.4 | 366.8 | 9.4 | 0.08 | 0.94 | ||
JD West | JD-24-00814.7 | 32.8 | 18.1 | 0.03 | 5.63 | |
inc.14.7 | 20.0 | 5.3 | 0.03 | 5.67 | ||
inc.26.0 | 32.0 | 6.0 | 0.04 | 8.62 | ||
JD West | JD-24-00922.0 | 37.4 | 15.4 | 0.11 | 17.30 | |
inc.33.0 | 37.4 | 4.4 | 0.10 | 42.59 | ||
inc.35.0 | 36.2 | 1.2 | 0.15 | 118.00 | ||
JD West | JD-24-01039.0 | 49.0 | 10.0 | 0.14 | 11.36 | |
and93.0 | 95.5 | 2.5 | 1.95 | 129.79 | ||
JD West | JD-24-0119.0 | 19.2 | 10.2 | 1.18 | 2.73 | |
inc.9.0 | 10.0 | 1.0 | 9.98 | 3.76 | ||
inc.31.0 | 39.2 | 8.2 | 0.34 | 34.70 | ||
inc.36.8 | 39.2 | 2.4 | 0.40 | 114.39 |
目标 | 孔 ID | 从 (米) |
到 (米) |
间隔 (米) |
黄金 (克/吨) |
银 (克/吨) |
Fericrete | CZ-24-006105.5 | 111.5 | 6.0 | 0.69 | 0.92 | |
和240.5 | 249.5 | 9.0 | 0.09 | 0.16 | ||
铁水泥 | JD-24-007283.0 | 293.0 | 10.0 | 0.48 | 0.94 | |
和357.4 | 366.8 | 9.4 | 0.08 | 0.94 | ||
京东西部 | JD-24-00814.7 | 32.8 | 18.1 | 0.03 | 5.63 | |
增幅14.7 | 20.0 | 5.3 | 0.03 | 5.67 | ||
增幅26.0 | 32.0 | 6.0 | 0.04 | 8.62 | ||
京东西 | JD-24-00922.0 | 37.4 | 15.4 | 0.11 | 17.30 | |
增收33.0 | 37.4 | 4.4 | 0.10 | 42.59 | ||
增收35.0 | 36.2 | 1.2 | 0.15 | 118.00 | ||
JD西部 | JD-24-01039.0 | 49.0 | 10.0 | 0.14 | 11.36 | |
和93.0 | 95.5 | 2.5 | 1.95 | 129.79 | ||
京东西 | JD-24-0119.0 | 19.2 | 10.2 | 1.18 | 2.73 | |
inc.9.0 | 10.0 | 1.0 | 9.98 | 3.76 | ||
增益31.0 | 39.2 | 8.2 | 0.34 | 34.70 | ||
增益36.8 | 39.2 | 2.4 | 0.40 | 114.39 |
- Intervals are downhole core lengths. True widths are unknown.
- Calculations are uncut and length-weighted using a 0.10 g/t gold cut-off.
- Grades have not been capped in the length-weighted averaging.
- 区间是井下岩心长度。真实宽度未知。
- 计算未经过限制,并采用0.10克/吨黄金作为切割标准进行加权计算。
- 在长度加权平均中,品位没有被限制。
JD West - Ag Carbonate Target
JD West - 银碳酸盐目标
Four short (~100 metre) reconnaissance holes (JD-24-008, JD-24-009, JD-24-010 and JD-24-011) were drilled from two pads near the historic Ag Carbonate zone, approximately 1.8 km east of the Creek zone and 1.4 km west of the Finn Zone (Figure 6). The holes were designed to test the down-dip potential of high-grade silver-gold veins discovered during historical trenching and prospecting programs (see May 28th, 2024 news release). All four holes intersected strongly altered and brecciated wall-rock andesite with quartz-carbonate cemented breccias and local silver-gold-base metal bearing quartz veins. Highlight intercepts from Table 3 include:
Four short (~100 metre) reconnaissance holes (JD-24-008, JD-24-009, JD-24-010 and JD-24-011) were drilled from two pads near the historic Ag Carbonate zone, approximately 1.8 km east of the Creek zone and 1.4 km west of the Finn Zone (Figure 6). The holes were designed to test the down-dip potential of high-grade silver-gold veins discovered during historical trenching and prospecting programs (see May 28th, 2024 news release). All four holes intersected strongly altered and brecciated wall-rock andesite with quartz-carbonate cemented breccias and local silver-gold-base metal bearing quartz veins. Highlight intercepts from Table 3 include:
- 4.4 metres of 42.59 g/t Ag with 0.10 g/t Au, including 1.2 metres of 118.0 g/t Ag with 0.15 g/t Au in hole JD-24-009
- 2.5 metres of 129.8 g/t Ag with 1.95 g/t Au in hole JD-24-010
- 10.2 metres of 1.18 g/t Au, including 1.0 metre of 9.98 g/t Au, and 8.2 metres of 34.7 g/t Ag with 0.34 g/t Au, including 2.4 metres of 114.39 g/t Ag with 0.40 g/t Au in hole JD-24-011
- 4.4 metres of 42.59 g/t Ag with 0.10 g/t Au, including 1.2 metres of 118.0 g/t Ag with 0.15 g/t Au in hole JD-24-009
- 2.5 metres of 129.8 g/t Ag with 1.95 g/t Au in hole JD-24-010
- 10.2 metres of 1.18 g/t Au, including 1.0 metre of 9.98 g/t Au, and 8.2 metres of 34.7 g/t Ag with 0.34 g/t Au, including 2.4 metres of 114.39 g/t Ag with 0.40 g/t Au in hole JD-24-011
The north-striking, steeply dipping veins cross-cut favorable Toodoggone Formation volcaniclastic rocks. This extensive volcaniclastic unit is interpreted to also host strong gold-silver mineralization at the Finn Zone approximately 1.0 km to the east (e.g., 35.7 metres of 7.26 g/t Au and 94.1 g/t Ag, JD95-047, see February 1st, 2024 news release). The JD West area is therefore also prospective for breccia hosted, Finn Zone-style gold-silver mineralization as well as cross-cutting high-grade silver-gold mineralization. Follow-up holes will be designed to target both styles of mineralization.
The north-striking, steeply dipping veins cross-cut favorable Toodoggone Formation volcaniclastic rocks. This extensive volcaniclastic unit is interpreted to also host strong gold-silver mineralization at the Finn Zone approximately 1.0 km to the east (e.g., 35.7 metres of 7.26 g/t Au and 94.1 g/t Ag, JD95-047, see February 1st, 2024 news release). The JD West area is therefore also prospective for breccia hosted, Finn Zone-style gold-silver mineralization as well as cross-cutting high-grade silver-gold mineralization. Follow-up holes will be designed to target both styles of mineralization.
Project-wide Geochemistry
Project-wide Geochemistry
Over 1,200 soil samples were collected across two grid areas, the Creek Zone and the Belle Zone (Figures 1 and 7). Soil sampling at the Creek Zone was designed to infill lines from 2012 soil surveying, whereas sampling across the Belle Zone, 2.6 kilometres south of the Finn Zone, was designed to expand soil coverage to the south across a zone of historically documented epithermal-related gold mineralization1.
Over 1,200 soil samples were collected across two grid areas, the Creek Zone and the Belle Zone (Figures 1 and 7). Soil sampling at the Creek Zone was designed to infill lines from 2012 soil surveying, whereas sampling across the Belle Zone, 2.6 kilometres south of the Finn Zone, was designed to expand soil coverage to the south across a zone of historically documented epithermal-related gold mineralization1.
Results from the Creek Zone grid infill soil sampling confirm previous results and highlight a strong gold-in-soil anomaly spatially associated with Creek Zone mineralization. Numerous untested and open strong gold-in-soil anomalies to the north were also defined (Figure 8). The Creek North coincident gold-copper-zinc anomaly spans at least 1.2 by 1.2 kilometres and is locally coincident with the recently defined high-chargeability anomaly (Figures 4 and 5). This area represents a new target with no previous exploration.
溪区网格填充土壤取样的结果确认了之前的结果,并突出了一个强大的土壤金异常,该异常空间上与溪区矿化相关。北部还有众多未测试的强金土壤异常(图8)。溪北重叠的金-铜-锌异常至少横跨1.2公里×1.2公里,并在局部与近期定义的高电荷异常重合(图4和图5)。该区域代表一个新的目标,以前没有进行过勘探。
Sampling across the Belle Zone grid defined two strong and broad multi-element soil geochemical anomalies; Belle North and Belle South (Figure 8). The Belle North anomaly is strongly anomalous in gold-copper-zinc-arsenic whereas the Belle South anomaly comprises copper-zinc-silver-gold. Both targets represent newly defined priority targets, which are untested by drilling and lack IP coverage.
在贝尔区网格取样中定义了两个强大而广泛的多元素土壤地球化学异常:贝尔北和贝尔南(图8)。贝尔北异常在金-铜-锌-砷上表现出强烈的异常,而贝尔南异常则由铜-锌-白银-黄金组成。这两个目标代表最近定义的优先目标,尚未通过钻探进行测试,并且缺乏IP覆盖。
Planning for 2025
2025年规划
Planning is underway for the next phase of exploration at the JD Project, set to commence in spring 2025. Exploration is anticipated to include step-out drilling at the Creek Zone, confirmation and step-out drilling at the Finn Zone, as well as initial and follow-up drill testing at additional targets which may include Fericrete, JD West, Belle, Creek North, Moosehorn, MVT, and/or Schmit and Wolf targets. Additional geophysical and geochemical surveys will also be completed across select target areas lacking coverage.
正在为JD项目的下一阶段探索进行规划,预计将在2025年春季开始。预计勘探将包括在溪区的扩展钻探,在芬区的确认和扩展钻探,以及在其他目标的初步和后续钻探测试,这些目标可能包括Fericrete、JD西、贝尔、溪北、Moosehorn、MVt和/或Schmit及Wolf目标。还将在缺乏覆盖的选定目标区域完成额外的地球物理和地球化学调查。
Table 3. Drill Collar Locations
表3. 钻孔位置
Hole ID | Easting | Northing | Elevation (m) | Azimuth | Dip | Depth (m) |
CZ-24-001* | 608166 | 6368268 | 1504 | 82.4 | -50.9 | 203 |
CZ-24-002* | 608165 | 6368268 | 1504 | 100.2 | -70.3 | 281 |
CZ-24-003* | 608257 | 6368317 | 1511 | 199.5 | -55 | 186.2 |
CZ-24-004* | 608256 | 6368318 | 1511 | 239.7 | -55 | 193 |
CZ-24-005* | 608357 | 6368346 | 1534 | 209.9 | -45 | 269 |
CZ-24-006 | 608759 | 6368645 | 1622 | 50 | -55 | 401 |
JD-24-007 | 609365 | 6368677 | 1569 | 50 | -55 | 380 |
JD-24-008 | 610327 | 6367943 | 1846 | 210 | -55 | 128 |
JD-24-009 | 610329 | 6367945 | 1848 | 191.5 | -70 | 90 |
JD-24-010 | 610488 | 6367940 | 1859 | 220 | -55 | 110 |
JD-24-011 | 610489 | 6367941 | 1859 | 202.5 | -70 | 108 |
JD-24-012 | 608519 | 6368012 | 1609 | 230.5 | -50 | 188 |
孔 ID | 东坐标 | 北坐标 | 海拔(米) | 方位 | 倾斜 | 深度(米) |
CZ-24-001* | 608166 | 6368268 | 1504 | 82.4 | -50.9 | 203 |
CZ-24-002* | 608165 | 6368268 | 1504 | 100.2 | -70.3 | 281 |
CZ-24-003* | 608257 | 6368317 | 1511 | 199.5 | -55 | 186.2 |
CZ-24-004* | 608256 | 6368318 | 1511 | 239.7 | -55 | 193 |
CZ-24-005* | 608357 | 6368346 | 1534 | 209.9 | -45 | 269 |
CZ-24-006 | 608759 | 6368645 | 1622 | 50 | -55 | 401 |
JD-24-007 | 609365 | 6368677 | 1569 | 50 | -55 | 380 |
JD-24-008 | 610327 | 6367943 | 1846 | 210 | -55 | 128 |
JD-24-009 | 610329 | 6367945 | 1848 | 191.5 | -70 | 90 |
JD-24-010 | 610488 | 6367940 | 1859 | 220 | -55 | 110 |
JD-24-011 | 610489 | 6367941 | 1859 | 202.5 | -70 | 108 |
JD-24-012 | 608519 | 6368012 | 1609 | 230.5 | -50 | 188 |
* Previously reported
Coordinates are in UTM NAD83 Zone 9N
* 之前报告过
坐标为UTm NAD83第9区N
Upcoming Webinar
即将举行的网络研讨会
Sun Summit Minerals invites shareholders and other interested parties to attend a video webinar to be held Monday, November 18, 2024, at 1:15 pm PST / 4:15 pm EST.
Sun Summit Minerals邀请股东和其他感兴趣的各方参加将于2024年11月18日星期一,在太平洋标准时间下午1:15 / 东部标准时间下午4:15举行的视频网络研讨会。
Sharyn Alexander, President, will provide an overview on the JD Project in the Toodoggone gold-copper district of northern-central British Columbia. The webinar will focus on the interpretation and summary of the 2024 exploration program, as well as plans for the upcoming 2025 field season. A question and answer session will allow all attendees to ask questions directly to management about current and future catalysts.
董事长Sharyn Alexander将提供关于位于不列颠哥伦比亚省中北部Toodoggone金铜区JD项目的概述。网络研讨会将重点介绍2024年勘探计划的解读和总结,以及即将到来的2025年野外季节的计划。问答环节将允许所有与会者直接向管理层提问关于当前和未来催化剂的问题。
Those interested in getting an update or learning more about Sun Summit Minerals should register for the event using the URL link provided. Alternatively, email Sun Summit's Corporate Communications team (mbenedetto@simonecapital.ca) to register for the event.
有兴趣获取更新或了解Sun Summit Minerals的人员应通过提供的URL链接注册该活动。或者,可以通过电子邮件联系Sun Summit的企业通讯团队(mbenedetto@simonecapital.ca)来注册该活动。
Quality Assurance and Quality Control
质量保证和质量控制
All drill core, rock and soil sample assays and analytical results have been monitored through the Company's quality assurance and quality control program (QA/QC). Drill core was sawn in half at Sun Summit's dedicated and secure core logging and processing facility at the Lawyers exploration camp owned by Thesis Gold. Only Sun Summit and assigned APEX Geoscience field staff were allowed access to the core.
所有钻探核心、岩石和土壤样本的测定和分析结果均通过公司的质量保证和质量控制程序(QA/QC)进行监测。钻探核心在Sun Summit专用且安全的核心记录和处理设施中被切成两半,该设施位于Thesis Gold拥有的Lawyers勘探营地。只有Sun Summit和指定的APEX地球科学现场工作人员被允许进入核心。
Half of the drill core was sampled and shipped by a bonded courier in sealed and secured woven polyester bags to the ALS Global preparation facilities in Langley, BC, or Winnipeg, Manitoba. Core samples were prepared using ALS standard preparation procedure PREP-31A which involves crushing the sample to 70% less than 2mm, followed by a riffle split of 250g, and then a pulverised split to better than 85% passing 75 microns.
一半的钻芯被取样并通过保税快递公司以密封和加固的织物聚酯袋送往哥伦比亚不列颠省兰里市或曼尼托巴省温尼伯的ALS Global准备设施。钻芯样本按照ALS标准准备程序PREP-31A进行处理,该程序涉及将样本破碎到70%小于2mm,然后进行250g的分割,再进行更好于85%通过75微米的粉碎分割。
Following sample preparation, the pulps were sent to the ALS Global analytical laboratory in North Vancouver, B.C. for analysis. ALS Global is registered to ISO/IEC 17025:2017 accreditations for laboratory procedures.
样本准备后,浆料被送往位于北温哥华的ALS Global分析实验室进行分析。ALS Global已获得ISO/IEC 17025:2017实验室程序的注册认证。
Drill core samples were analyzed for 48 elements by ICP-MS on a 0.25-gram aliquot using a four-acid digestion (method ME-MS61). This method is considered a "ultra trace element" analytical method with low detection limits on key pathfinder elements such as Ag, As, Sb, Se and Tl.
通过四酸消化法(方法ME-MS61),在0.25克样品上使用ICP-MS分析了48种元素的岩心样本。这种方法被认为是"超微量元素"分析方法,对于关键的指示元素如银、砷、锑、硒和铊具有低检测限。
Gold was analyzed by fire assay on a 30-gram aliquot with an AES finish (inductively coupled plasma atomic emission spectroscopy - method Au-ICP21). Samples that returned >10 parts per million (ppm) gold were re-analyzed by fire assay using a gravimetric finish on a 30-gram aliquot (method Au-GRA21).
黄金通过火法在30克样品上进行分析,采用AES结果(感应耦合等离子体原子发射光谱法 - 方法Au-ICP21)。对于返回超过10ppm黄金的样品,使用重力法在30克样品上重新进行了火法分析(方法Au-GRA21)。
Overlimit samples (e.g. Ag, Cu, Pb & Zn) were re-analyzed using an ore-grade, four-acid digestion and ICP-AES finish (method ME-OG62). Overlimits for key elements: samples with >100 ppm silver, >10,000 ppm Cu, >10,000 ppm Pb and >10,000 ppm Zn.
超过限制的样品(例如银、铜、铅和锌)使用矿石等级的四酸消化法和ICP-AES结果进行了重新分析(方法ME-OG62)。关键元素的超限值:银超过100ppm,铜超过10,000ppm,铅超过10,000ppm和锌超过10,000ppm。
Similar to drill core, field rock samples were prepared and then analysed for 48 elements by ICP-MS on a 0.25-gram aliquot using a four-acid digestion (method ME-MS61). Gold was analyzed by fire assay on a 30-gram aliquot with an AES finish (inductively coupled plasma atomic emission spectroscopy - method Au-ICP21). Samples that returned >10 parts per million (ppm) gold were re-analyzed by fire assay using a gravimetric finish on a 30-gram aliquot (method Au-GRA21). Overlimit samples (e.g. Ag, Cu, Pb & Zn) were re-analyzed using an ore-grade, four-acid digestion and ICP-AES finish (method ME-OG62).
与岩心相似,现场岩石样本经过准备后,使用四酸消化法(方法ME-MS61)在0.25克样品上通过ICP-MS分析了48种元素。黄金通过火法在30克样品上进行分析,采用AES结果(感应耦合等离子体原子发射光谱法 - 方法Au-ICP21)。对于返回超过10ppm黄金的样品,使用重力法在30克样品上重新进行了火法分析(方法Au-GRA21)。超过限制的样品(例如银、铜、铅和锌)使用矿石等级的四酸消化法和ICP-AES结果进行了重新分析(方法ME-OG62)。
Soil samples were field dried in a temperature-controlled field tent in camp before being shipped to the ALS lab in Langley or Kamloops, BC. The samples were then screened to -180 microns and followed by 34-element analysis by ICP-MS on a 0.25-gram aliquot using a four-acid digestion (method ME-ICP61). Gold was analyzed by fire assay on a 30-gram aliquot with an AES finish (inductively coupled plasma atomic emission spectroscopy - method Au-ICP21).
土壤样本在营地的温控野外帐篷中进行了现场干燥,然后运送到BC省的Langley或Kamloops的ALS实验室。样本经过筛选,达到-180微米,然后使用四酸消化(方法ME-ICP61)在0.25克的分样上进行了34元素分析。黄金则在30克的分样上通过火法分析,采用AES(感应耦合等离子体原子发射光谱法 - 方法Au-ICP21)完成。
In addition to ALS Global laboratory QA/QC protocols, Sun Summit implements a rigorous internal QA/QC program that includes the insertion of duplicates, certified reference materials (standards prepared by an independent lab) and blanks into the sample stream.
除了ALS Global实验室的质量保证/质量控制协议,Sun Summit还实施了一项严格的内部质量保证/质量控制程序,其中包括将重复样本、认证参考材料(由独立实验室准备的标准)和空白样本插入样本流中。
National Instrument 43-101 Disclosure
国家仪器43-101披露
This news release has been reviewed and approved by Sun Summit's Vice President Exploration, Ken MacDonald, P. Geo., a "Qualified Person" as defined in National Instrument 43-101 Standards of Disclosure for Mineral Projects of the Canadian Securities Administrators. He has not been able to verify the historical exploration data disclosed, including sampling, analytical and test data, underlying the technical information in this news release since such data is historical and the original drill core is not readily available. Some technical information contained in this release is historical in nature and has been compiled from public sources believed to be accurate. The historical technical information has not been verified by Sun Summit and may in some instances be unverifiable dependent on the existence of historical drill core and grab samples.
本新闻稿已由Sun Summit的副总裁勘探Ken MacDonald审查并批准,Ken MacDonald,P. Geo. 是根据加拿大证券管理局国家仪器43-101矿产项目披露标准定义的“合格人员”。他无法验证披露的历史勘探数据,包括样品、分析和测试数据,这些数据构成了本新闻稿中技术信息的基础,因为这些数据是历史性的,原始钻探核心并不易于获取。本声明中包含的一些技术信息是历史性质的,并已从被认为准确的公共来源汇编而来。历史技术信息未经过Sun Summit的验证,并且在某些情况下可能无法验证,具体取决于历史钻探核心和抓样的存在。
Community Engagement
关于JD项目:JD项目位于不列颠哥伦比亚省中北部的Toodoggone采矿区,这是一个非常有前途的含矿床矿产趋势。该项目涵盖了一个超过15,000公顷的区域,并且靠近正在进行的勘探和开发项目,例如Thesis Gold的律政与牧场项目,TDG Gold的贝克-莎斯塔项目,Centerra Gold的Kemess East(金)和地下项目,以及 Kemess开放式铜金矿的地方矿。该项目位于距离Prince George市450公里以北,并且靠近斯特迪机场以北25公里处。它接近现有的基础设施,可支持 Kemess矿山的开采,包括道路和一条水电线路。JD项目位于有利的地质环境中,表现为高品位浅成因金银矿化和斑岩型铜金矿化。该物业上已经开展了一些历史勘探活动,包括钻探、地球化学和地球物理学等活动,但该项目区域在很大程度上尚未得到充分勘探。
Sun Summit is engaging with First Nations on whose territory our projects are located and is discussing their interests and identifying contract and work opportunities, as well as opportunities to support community initiatives. The Company looks forward to continuing to work with local and regional First Nations with ongoing exploration.
Sun Summit正在与我们的项目所在领域的第一民族进行接触,讨论他们的利益并识别合同和工作机会,以及支持社区倡议的机会。公司期待继续与地方和区域第一民族合作,进行持续的勘探。
About the JD Project
关于JD项目
The JD Project is located in the Toodoggone mining district in north-central British Columbia, a highly prospective deposit-rich mineral trend. The project covers an area of over 15,000 hectares and is in close proximity to active exploration and development projects, such as Thesis Gold's Lawyers and Ranch projects, TDG Gold's Baker-Shasta projects, Centerra's Gold's Kemess East and Underground projects, as well as the past-producing Kemess open pit copper-gold mine.
JD项目位于不列颠哥伦比亚省中北部的Toodoggone矿区,这是一个极具前景的矿藏丰富的矿产趋势。该项目覆盖超过15,000公顷的面积,靠近正在进行的勘探和开发项目,如Thesis Gold的Lawyers和Ranch项目、TDG Gold的Baker-Shasta项目、Centerra Gold的Kemess East和地下项目,以及以前生产的Kemess露天铜金矿。
The project is 450 kilometres northwest of the city of Prince George, and 25 kilometres north of the Sturdee airstrip. It is proximal to existing infrastructure in place to support the past-producing Kemess mine, including roads and a hydroelectric power line.
该项目位于乔治王子市西北450公里,斯图尔德机场以北25公里。它靠近现有的基础设施,以支持曾经生产的凯梅斯矿,包括道路和一条水电线路。
The JD Project is in a favourable geological environment characterized by both high-grade epithermal gold and silver mineralization, as well as porphyry-related copper and gold mineralization. Some historical exploration, including drilling, geochemistry and geophysics, has been carried out on the property, however the project area is largely underexplored.
JD项目位于一个有利的地质环境中,特点是高品位的热液黄金和白银矿化,以及与岩浆相关的铜和黄金矿化。该物业上进行过一些历史勘探,包括钻探、地球化学和地球物理勘探,但项目区域大部分尚未勘查。
About Sun Summit
关于太阳峰
Sun Summit Minerals (TSX-V: SMN; OTCQB: SMREF) is a mineral exploration company focused on expansion and discovery of district scale gold and copper assets in British Columbia. The Company's diverse portfolio includes the JD Project in the Toodoggone region of north-central B.C., and the Buck Project in central B.C.
太阳峰矿业(TSX-V: SMN; OTCQB: SMREF)是一家矿产勘探公司,专注于扩展和发现不列颠哥伦比亚省地区规模的黄金和铜资产。公司的多元化投资组合包括位于不列颠哥伦比亚省中北部托多戈地区的JD项目和位于不列颠哥伦比亚省中部的巴克项目。
Further details are available at .
更多细节请见于。
Reference
参考
1. Millinoff, T.B., Davis, J.W. (1985), Geochemical and trenching report on the Belle 1, 2, and 4 mineral claims, Omineca Mining Division, Assessment Report Indexing System, Report 14489, .
1. Millinoff万亿.b., Davis, J.W.(1985),关于贝尔1、2和4号矿权的地球化学和沟槽报告,Omineca采矿分区,评估报告索引系统,报告号14489,。
Link to Figures
链接到图表
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On behalf of the board of directors
Brian Lock
代表董事会
布莱恩·洛克
For further information, contact:
欲了解更多信息,请联系:
Sharyn Alexander
President
info@sunsummitminerals.com
莎伦·亚历山大
总裁
info@sunsummitminerals.com
Matthew Benedetto
Simone Capital
mbenedetto@simonecapital.ca
马修·贝内代托
西蒙资本
mbenedetto@simonecapital.ca
Tel. 416-817-1226
电话: 416-817-1226
Forward-Looking Information
前瞻性信息
Statements contained in this news release that are not historical facts may be forward-looking statements, which involve risks, uncertainties and other factors that could cause actual results to differ materially from those expressed or implied by such forward-looking statements. In addition, the forward-looking statements require management to make assumptions and are subject to inherent risks and uncertainties. There is significant risk that the forward-looking statements will not prove to be accurate, that the management's assumptions may not be correct and that actual results may differ materially from such forward-looking statements. Accordingly, readers should not place undue reliance on the forward-looking statements. Generally forward-looking statements can be identified by the use of terminology such as "anticipate", "will", "expect", "may", "continue", "could", "estimate", "forecast", "plan", "potential" and similar expressions. Forward-looking statements contained in this press release may include, but are not limited to, potential mineralization, exploration plans, and engagement with First Nations communities. These forward-looking statements are based on a number of assumptions which may prove to be incorrect which, without limiting the generality of the following, include: risks inherent in exploration activities; the impact of exploration competition; unexpected geological or hydrological conditions; changes in government regulations and policies, including trade laws and policies; failure to obtain necessary permits and approvals from government authorities; volatility and sensitivity to market prices; volatility and sensitivity to capital market fluctuations; the ability to raise funds through private or public equity financings; environmental and safety risks including increased regulatory burdens; weather and other natural phenomena; and other exploration, development, operating, financial market and regulatory risks. The forward-looking statements contained in this press release are made as of the date hereof or the dates specifically referenced in this press release, where applicable. Except as required by applicable securities laws and regulation, Sun Summit disclaims any intention or obligation to update or revise any forward-looking statement, whether as a result of new information, future events or otherwise, except as required by applicable securities laws. All forward-looking statements contained in this press release are expressly qualified by this cautionary statement.
本新闻稿中包含的说明不是历史事实,可能是前瞻性声明,这涉及到可能导致实际结果与这些前瞻性声明所表达或暗示的结果产生重大差异的风险、不确定性和其他因素。此外,前瞻性声明要求管理层做出假设,并且受到固有风险和不确定性的影响。前瞻性声明不准确的风险显著,管理层的假设可能不正确,实际结果可能与这些前瞻性声明有重大差异。因此,读者不应对此类前瞻性声明过度依赖。通常,可以通过使用诸如“预期”、“将”、“期望”、“可能”、“继续”、“能够”、“估计”、“预测”、“计划”、“潜在”和类似表述的术语来识别前瞻性声明。本新闻稿中包含的前瞻性声明可能包括但不限于潜在矿化、勘探计划以及与原住民社区的互动。这些前瞻性声明基于许多可能证明不正确的假设,其中包括但不限于:勘探活动中固有的风险;勘探竞争的影响;意外的地质或水文学条件;政府法规和政策的变化,包括贸易法规和政策;未能获得政府当局所需的许可证和批准;对市场价格的波动性和敏感性;对资本市场波动的波动性和敏感性;通过私募或公开股权融资筹集资金的能力;包括增加的监管负担在内的环境和安全风险;天气和其他自然现象;以及其他勘探、开发、经营、金融市场和监管风险。本新闻稿中包含的前瞻性声明是在本日期或在本新闻稿中具体提到的日期作出的,适用时。除适用的证券法律和法规要求外,Sun Summit明确表示不打算或义务更新或修订任何前瞻性声明,无论是由于新信息、未来事件还是其他原因,除非适用的证券法律要求。本新闻稿中包含的所有前瞻性声明均受到此警示声明的明确限制。
Neither the 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 release.
TSX创业公司交易所或其监管服务提供商(如TSX创业公司政策中定义的那样)不对本公告的充分性或准确性负责。