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Silver Storm Drills 1,000 G/t Ag.Eq Over 5.25 M

Silver Storm Drills 1,000 G/t Ag.Eq Over 5.25 M

Silver Storm 鑽探 1,000 g/t Ag.Eq 超過 525 M
newsfile ·  01/29 20:15

Identifies 370 m of Vertical Continuity in San Nicolas Zone

識別聖尼古拉斯區域內有 370 米的垂直連續性

Toronto, Ontario--(Newsfile Corp. - January 29, 2024) - Silver Storm Mining Ltd. (TSXV: SVRS) (OTCQB: SVRSF) (FSE: SVR) ("Silver Storm" or the "Company"), is pleased to announce further drill results from its Phase 1 diamond drilling program at the Company's 100% owned La Parrilla Silver Mine Complex, located in Durango Mexico. Results from the seven holes within this release are from the Quebradillas mine.

安大略省多倫多--(Newsfile Corp.,2024 年 1 月 29 日)-Silver Storm Mining Ltd.(多倫多證券交易所股票代碼:SVRS)(場外交易代碼:SVRS)(FSE:SVR)(”銀色風暴“或者”公司“),很高興地宣佈其位於墨西哥杜蘭戈的公司 100% 擁有的拉帕里拉銀礦綜合體的第一階段鑽石鑽探計劃的進一步鑽探結果。本次發佈的七個洞的結果來自克布拉迪拉斯礦。

Key highlights include:

主要亮點包括:

  • Hole Q-23-024 intersected the San Nicolas Zone returning 689 g/t Ag.Eq1 over 9.39 metres ("m") including 1,000 g/t Ag.Eq over 5.25 m from a breccia zone which can be traced 235 m toward the surface, where a 25 m deep artisanal shaft is located.

  • This intercept is located approximately 18 m above the last mine development in this area, with similar high-grade mineralization:

    • 1921 m EL composited historical channel samples returned 247 g/t Ag.Eq over a strike length of 19 m and width of 1.49 m.

  • Q-23-024 洞與聖尼古拉斯區域相交,返回 689 g/t Ag.Eq1 超過 9.39 米(“m”) 包括 1,000 g/t Ag.Eq 超過 5.25 m 從角礫岩區域向地表延伸 235 米,那裏有一根 25 米深的手工豎井。

  • 這個截距是 位於最後一個礦山開發區上方約 18 米處 在該地區,具有類似的高品位礦化:

    • 返回了 1921 m EL 合成歷史信道樣本 247 g/t Ag.Eq,衝擊長度爲 19 m,寬度爲 1.49 m

  • Hole Q-23-013A intersected the San Nicolas Zone returning 316 g/t Ag.Eq. over 4.09 m including 663 g/t Ag.Eq over 1.00 m and 297 g/t Ag.Eq over 1.58 m.

  • Surface mapping has uncovered several similar subparallel zones of interest to the west of San Nicolas with historical surface samples returning greater than 500 g/t Ag.Eq. (La Fe, La Virginia, and La Esperanza Zones).

  • High-grade mineralization at San Nicolas commences from surface and has now been traced with continuity to a depth of 370 m.

  • Q-23-013A 洞與聖尼古拉斯區相交,返回 316 g/t Ag.Eq. 超過 4.09 m,包括 663 g/t Ag.Eq 超過 1.00 m超過 1.58 m 的 297 g/t Ag.Eq

  • 地表測繪在聖尼古拉斯以西發現了幾個類似的亞平行感興趣區域,歷史地表樣本返回的Ag.Eq超過500 g/t Ag.Eq。(拉菲、拉弗吉尼亞和拉埃斯佩蘭薩區域)。

  • 聖尼古拉斯的高品位礦化始於地表,現已連續追溯到370米的深度。

Greg McKenzie, President and CEO, commented: "We are very pleased with the drilling and geologic mapping results at San Nicolas. Prior to placing La Parrilla on care and maintenance First Majestic had commenced mining over 5 established levels and 80 vertical metres at San Nicolas. We have now been able to expand and trace the high-grade mineralization 370 metres down from surface, with continuity. It is a tremendous benefit to have all the infrastructure available to support the potential mining and processing of these expanding zones."

總裁兼首席執行官格雷格·麥肯齊評論說: “我們對聖尼古拉斯的鑽探和地質測繪結果感到非常滿意。在對拉帕里拉進行保養和維護之前,First Majestic已開始在聖尼古拉斯的5個既定高度和80米的垂直高度上進行採礦。現在,我們已經能夠連續地在距地表 370 米處擴展和追蹤高品位礦化。擁有所有可用的基礎設施來支持這些擴張區域的潛在採礦和加工,這是一個巨大的好處。”

San Nicolas Zone

聖尼古拉斯區

The San Nicolas Zone is considered part of the Quebradillas Mine, located approximately 400 m to the SW and connected by underground development utilizing shared services from the mine. The San Nicolas Zone had 5 levels of development established and mined by First Majestic, and a ventilation raise from surface down to 275 m. As a result of the drilling and surface mapping conducted by the Company, high-grade silver mineralization can now be traced with continuity down to approximately 370 m from surface. Management anticipates follow-up drilling and mapping will continue to extend mineralization at the San Nicolas Zone, and the additional four proximal subparallel veins identified to date.

聖尼古拉斯礦區被認爲是克布拉迪拉斯礦的一部分,該礦距離西南約400米,利用礦山的共享服務通過地下開發相連。聖尼古拉斯區有5個開發層由First Majestic建立和開採,通風量從地表向下提高到275米。由於該公司進行了鑽探和地表測繪, 現在可以連續追溯到距地表約370 m的高品位銀礦化。管理層預計,後續鑽探和測繪將繼續擴大聖尼古拉斯區的礦化,以及迄今爲止確定的另外四條近端亞平行礦脈。

The San Nicolas Zone is comprised of subvertical quartz-carbonate vein and breccia mineralization striking NW (315/87) over a known length of approximately 600 m. Massive sulphide replacement zones occur within the hanging wall and footwall along the bedding within the sediments. The sulphide mineralization consists of pyrite, galena, sphalerite, acanthite, and native silver and is oxidized from the surface down to approximately 100 m. A second set of east-west trending sulphide bearing quartz-carbonate veins crosscuts the principal NW trend. Breccia pipes (chimneys) form at the intersection of these two trends.

聖尼古拉斯區由亞垂直的石英碳酸鹽礦脈和角礫岩礦化區組成,在已知長度約爲600米的西北(315/87)上。塊狀硫化物置換區位於沉積物底層的懸壁和腳壁內。硫化物礦化由黃鐵礦、方鉛礦、閃鋅礦、棘石和原生銀組成,從地表向下氧化至大約 100 米。第二組東西向傾斜的硫化物含石英碳酸鹽礦脈橫穿了主要的西北走向。角礫岩管道(煙囪)形成於這兩種趨勢的交匯處。

Holes Q-23-013A to 015A targeted the southeastern down-dip extension of the zone beneath the 1886 m EL stope. Holes Q-23-024 to 026 targeted the central up-dip extension of the zone above the 1921 m EL stope - See Table 1; Figures 1, 2, 3, & 4.

Q-23-013A 至 015A 洞的目標是 1886 米 EL 停靠點下方的區域的東南向下延伸部分。Q-23-024 至 026 號孔的目標是 1921 米 EL 停靠點上方的中心向上延伸區域——參見表 1;圖 1、2、3 和 4。

Figure 1 - Cross-Section View to NNW of Key Results- San Nicolas Zone

圖 1-NNW 關鍵結果的橫截面圖-San Nicolas Zone

Hole Q-23-024

洞 Q-23-024

Hole Q-23-024 successfully intersected sulphide breccia mineralization, returning 689 g/t Ag.Eq over 9.39 m (71.75 to 81.14 m), including 1,000 g/t Ag.Eq over 5.25 m (72.75 to 78.00 m). This intercept is located approximately 18 m above the last mine development in this area, with similar mineralization (Table 2):

Q-23-024 孔成功穿透了硫化物角礫岩礦化,返回 超過 9.39 m 的 689 g/t Ag.Eq (71.75 到 81.14 m),包括 超過 5.25 m 的 1,000 g/t Ag.Eq (72.75 到 78.00 米)。該截距位於該地區最後一個礦山開發區上方約 18 米處,礦化程度相似(表 2):

  • The composited weighted average grade of historical channel samples from the 1921 m EL stope returned 247 g/t Ag.Eq over a strike length of 19 m and average width of 1.49 m.
  • 從1921米的EL採集點採集的歷史信道樣本的綜合加權平均品位返回了247 g/t Ag.Eq,走向長度爲19米,平均寬度爲1.49米。

This high-grade breccia zone lies at the intersection of the NW trending San Nicolas and the east-west trending Quebradillas structures and can be traced 235 m up-dip from this hole toward the surface. Historical hole ILP-SN-19-08, which returned 530 g/t Ag.Eq. over 7.50 m (186.10 to 193.60 m), located approximately 40 m above hole Q-23-024, confirms this trend of the breccia to surface within a 25 m deep artisanal shaft.

這個高品位角礫岩區域位於西北走向的聖尼古拉斯和東西向趨勢的克布拉迪拉斯結構的交匯處,可以追溯到從該洞向地表向上傾斜235米處。歷史漏洞 ILP-SN-19-08,它回來了 超過 7.50 m 的 530 g/t Ag.Eq. (186.10 至 193.60 米)位於 Q-23-024 孔上方約 40 米處,證實了角礫岩在 25 米深的手工豎井內浮出水面的這種趨勢。

Hole Q-23-013A

洞 Q-23-013A

Hole Q-23-013A successfully intersected sulphide replacement type mineralization returning 316 g/t Ag.Eq over 4.09 m (87.49 to 91.58 m) including 663 g/t Ag.Eq. over 1.00 m (88.55 to 89.55 m) and 297 g/t Ag.Eq over 1.58 m (90.00 to 91.58 m). This intercept is located approximately 30 m below the last mine development in this area, with similar mineralization (Table 2):

Q-23-013A 孔成功穿透硫化物置換型礦化回歸 超過 4.09 m 的 316 g/t Ag.Eq (87.49 到 91.58 m)包括 超過 1.00 m 的 663 g/t Ag.Eq. (88.55 到 89.55 米)和 超過 1.58 m 的 297 g/t Ag.Eq (90.00 到 91.58 m)。該截距位於該地區最後一個礦山開發區下方約 30 米處,礦化程度相似(表 2):

  • The composited weighted average grade of historical channel samples from the 1886 SE1 m EL stope returned 289 g/t Ag.Eq over a strike length of 8 m and average width of 1.62 m.

  • The composited weighted average grade of historical channel samples from the 1887 W m EL stope returned 243 g/t Ag.Eq over a strike length of 10 m and average width of 2.61 m.

  • 1886年SE1 m EL採集場歷史信道樣本的綜合加權平均品位返回289 g/t Ag.Eq,走向長度爲8 m,平均寬度爲1.62 m。

  • 1887 W m EL 採集場歷史信道樣本的綜合加權平均品位返回了 243 g/t Ag.Eq,走向長度爲 10 m,平均寬度爲 2.61 m。

This hole also intersected sulphide replacement type mineralization returning 547 g/t Ag.Eq. over 0.30 m (106.87 to 107.17 m).

該孔還與硫化物置換型礦化層相交,在0.30米(106.87至107.17米)上返回了547克/噸銀當量。

Hole Q-23-014

洞 Q-23-014

Hole Q-23-014 intersected sulphide fault zone associated breccia and quartz-carbonate vein type mineralization returning 240 g/t Ag.Eq. over 1.90 m (111.80 to 113.70 m).

Q-23-014 孔與硫化物斷層帶相交,與角礫岩和石英碳酸鹽礦脈型礦化層相交,在 1.90 米(111.80 至 113.70 米)上返回 240 g/t Ag.Eq.

Hole Q-23-025

洞 Q-23-025

Hole Q-23-025 intersected sulphide fault zone associated breccia and quartz-carbonate vein type mineralization returning 211 g/t Ag.Eq. over 1.09 m (85.65 to 86.74 m).

Q-23-025 孔與硫化物斷層帶相交,與角礫岩和石英碳酸鹽礦脈型礦化作用相交,在 1.09 米(85.65 至 86.74 米)上返回 211 g/t Ag.Eq.。

San Nicolas Area Surface Mapping

聖尼古拉斯地區地表測繪

Surface mapping of the San Nicolas Zone and surrounding area commenced in December 2023 and is ongoing - See Figure 5; Table 3. Several subparallel zones like San Nicolas have been mapped and sampled to the west, namely, the La Fe, La Virginia, and La Esperanza Zones. There exist several historical pits, trenches, and shafts on surface which have been mapped over the four zone trends. Historical surface samples of 1,215 g/t Ag.Eq. at La Virginia, 1,855 g/t Ag.Eq. at La Esperanza, and 556 g/t Ag.Eq. at La Fe indicate the exploration potential of each of these zones. The Company is planning a future program of trenching and surface diamond drilling in this area.

聖尼古拉斯區及周邊地區的地表測繪於 2023 年 12 月開始,目前仍在進行中-見圖 5;表 3。已經對西部的幾個亞平行區域(例如聖尼古拉斯區)進行了測繪和採樣,即拉菲區、拉弗吉尼亞區和拉埃斯佩蘭薩區。地表上有幾個歷史礦坑、戰溝和豎井,這些礦坑和豎井已經繪製了四個區域的趨勢圖。拉弗吉尼亞州1,215克/噸銀當量、拉埃斯佩蘭薩的1,855克/噸銀當量和拉菲的556克/噸銀當量的歷史地表樣本表明了每個區域的勘探潛力。該公司正在計劃未來在該地區進行挖溝和露天金剛石鑽探計劃。

Veta Nueva Zone

維塔新區

The Veta Nueva Zone is located approximately 200 m to the NE and subparallel to the San Nicolas Zone, characterized by a NW trending fault-zone quartz-carbonate vein which dips 50 degrees to the NE (130/50). First Majestic had mined one Level of Veta Nueva prior to placing the mine on care and maintenance.

維塔努埃瓦區位於東北約200米處,與聖尼古拉斯區平行,其特徵是向西北傾斜的石英碳酸鹽岩脈,向東北(130/50)傾斜50度。在對維塔努埃瓦進行保養和維護之前,First Majestic 已經開採了一層 Veta Nueva。

Hole Q-23-016

洞 Q-23-016

Hole Q-23-016 successfully intersected sulphide fault zone associated quartz-carbonate vein type mineralization returning 525 g/t Ag.Eq over 0.4 m (53.83 to 54.23 m). This intercept is located approximately 19 m above the last mine development in this area, with similar mineralization (Figure 1; Table 2):

Q-23-016 孔成功穿過硫化物斷層帶相關的石英碳酸鹽礦脈型礦化,在 0.4 米(53.83 至 54.23 米)上返回了 525 g/t Ag.Eq。該截距位於該地區最後一個礦山開發區上方約 19 米處,礦化程度相似(圖 1;表 2):

  • The composited weighted average grade of historical channel samples from the 1870 m EL stope returned 169 g/t Ag.Eq over a strike length of 23 m and average width of 1.16 m.
  • 在23米的走向長度爲23米,平均寬度爲1.16米的範圍內,來自1870米的EL 採樣歷史信道樣本的綜合加權平均品位返回了169 g/t Ag.Eq。

Table 1 - Select Assay Intervals from Holes Q-23-013A to 016 & Q-23-024 to 026 & Historical Results - San Nicolas and Veta Nueva Zones

表 1-從 Q-23-013A 到 016 孔、Q-23-024 到 026 孔中選擇化驗間隔以及歷史結果-San Nicolas 和 Veta Nueva 區域

Zone Hole From To Length
(m)
Ag.Eq(1)
g/t
Ag
g/t
Au
g/t
Pb
%
Zn
%
Cu
%
SN Q-23-013A 87.49 91.58 4.09 316 172 0.01 2.18 3.08 0.04

including 88.55 89.55 1.00 663 379 0.01 4.37 6.11 0.06

and 90.00 91.58 1.58 297 135 0.02 2.40 3.51 0.04
SN Q-23-013A 106.87 107.17 0.30 547 199 0.05 6.06 6.65 0.06











SN Q-23-014 111.80 113.70 1.90 240 174 0.07 1.71 0.55 0.06











SN Q-23-024 71.75 81.14 9.39 689 676 0.01 0.32 0.13 0.12

including 72.75 78.00 5.25 1,000 988 0.01 0.33 0.10 0.18











SN Q-23-025 85.65 86.74 1.09 211 101 0.02 1.37 2.63 0.02











VN Q-23-016 53.83 54.23 0.40 525 261 0.12 3.48 5.90 0.05











SN ILP-SN-16-01-A 405.45 407.20 1.75 1,580 1,479 0.13 1.25 2.09 0.25
SN ILP-SN-17-35 211.85 212.50 0.65 453 310 0.07 1.71 3.35 0.04
SN and 222.40 224.60 2.20 1,193 1,186 0.01 0.21 0.06 0.32
SN ILP-SN-19-01 263.40 264.30 0.90 168 113 0.11 0.70 1.00 0.03
SN ILP-SN-19-04 301.05 301.55 0.50 503 26 5.90 0.02 0.06 0.00
SN ILP-SN-19-08 186.10 193.60 7.50 530 325 0.03 3.71 3.80 0.06
SN including 190.15 193.60 3.45 951 600 0.02 6.06 6.87 0.08
SN SLP-SN-12-03 276.85 278.85 2.00 145 96 0.07 0.75 0.86 0.03
SN and 291.45 293.90 2.45 305 150 0.03 2.62 3.03 0.04
區域 來自 長度
(m)
Ag.Eq(1)
g/t
Ag
g/t
Au
g/t
Pb
%

%

%
SN Q-23-013A 87.49 91.58 4.09 316 172 0.01 2.18 3.08 0.04

包括 88.55 89.55 1.00 663 379 0.01 4.37 6.11 0.06

90.00 91.58 1.58 297 135 0.02 2.40 3.51 0.04
SN Q-23-013A 106.87 107.17 0.30 547 199 0.05 6.06 6.65 0.06











SN Q-23-014 111.80 113.70 1.90 240 174 0.07 1.71 0.55 0.06











SN Q-23-024 71.75 81.14 9.39 689 676 0.01 0.32 0.13 0.12

包括 72.75 78.00 5.25 1,000 988 0.01 0.33 0.10 0.18











SN Q-23-025 85.65 86.74 1.09 211 101 0.02 1.37 2.63 0.02











VN Q-23-016 53.83 54.23 0.40 525 261 0.12 3.48 5.90 0.05











SN ILP-SN-16-01-A 405.45 407.20 1.75 1,580 1,479 0.13 1.25 2.09 0.25
SN ILP-SN-17-35 211.85 212.50 0.65 453 310 0.07 1.71 3.35 0.04
SN 222.40 224.60 2.20 1,193 1,186 0.01 0.21 0.06 0.32
SN ILP-SN-19-01 263.40 264.30 0.90 168 113 0.11 0.70 1.00 0.03
SN ILP-SN-19-04 301.05 301.55 0.50 503 26 5.90 0.02 0.06 0.00
SN ILP-SN-19-08 186.10 193.60 7.50 530 325 0.03 3.71 3.80 0.06
SN 包括 190.15 193.60 3.45 951 600 0.02 6.06 6.87 0.08
SN SLP-SN-12-03 276.85 278.85 2.00 145 96 0.07 0.75 0.86 0.03
SN 291.45 293.90 2.45 305 150 0.03 2.62 3.03 0.04

Table 2 - Historical Channel Sample Results (2) - San Nicolas and Veta Nueva Zones

表 2-歷史頻道樣本結果 (2) -聖尼古拉斯和維塔努埃瓦區域

Elevation Zone Channel Width Ag.Eq(1) g/t Ag g/t Pb % Zn %
1870 VN VNU-1870-189 1.30 334 273 1.13 1.13
1870 VN VNU-1870-191 1.90 138 104 0.64 0.64
1870 VN VNU-1870-197 1.50 282 167 2.12 2.12
1870 VN VNU-1870-200 0.70 9 0 0.17 0.17
1870 VN VNU-1870-204 0.60 105 97 0.14 0.14
1870 VN VNU-1870-206 0.70 158 122 0.65 0.65
1870 VN VNU-1870-211 1.40 159 61 1.82 1.82








1874 SN NW VSN-1873-26 1.10 355 135 1.55 6.58
1874 SN NW VSN-1873-29 2.30 242 175 1.20 1.29








1874 SN SW VSN-1874-40 3.50 810 312 4.99 13.38
1874 SN SW VSN-1874-44 2.70 358 150 3.23 4.47
1874 SN SW VSN-1874-45 2.90 339 139 3.49 3.89
1874 SN SW VSN-1875-43 0.50 434 355 2.66 0.28
1874 SN SW VSN-1875-51 5.30 535 424 2.09 2.01








1874 SN SE VSN-1874-42 3.10 286 195 2.05 1.31
1874 SN SE VSN-1874-54 3.20 266 231 1.02 0.29
1874 SN SE VSN-1874-56 2.80 222 176 0.92 0.77
1874 SN SE VSN-1874-58 0.40 174 60 1.83 2.39
1874 SN SE VSN-1873-62 0.40 301 103 3.24 4.06
1874 SN SE VSN-1873-64 0.30 192 64 2.17 2.55
1874 SN SE VSN-1873-65 0.70 751 253 7.30 11.10
1874 SN SE VSN-1873-66 1.70 155 40 1.49 2.75
1874 SN SE VSN-1873-73 0.30 157 41 1.58 2.70
1874 SN SE VSN-1873-75 0.30 47 0 0.15 1.58
1874 SN SE VSN-1873-76 0.40 1,073 405 11.20 13.50
1874 SN SE VSN-1873-78 0.60 168 39 1.38 3.36
1874 SN SE VSN-1873-79 0.80 518 217 7.27 3.87








1886 SN SE2 VSN-1885-82 0.70 131 88 0.58 1.00
1886 SN SE2 VSN-1885-84 0.65 271 103 2.90 3.33
1886 SN SE2 VSN-1885-89 3.65 312 103 3.47 4.25
1886 SN SE2 VSN-1885-92 0.60 322 73 3.83 5.38








1886 SN SE1 VSN-1886-108 1.10 215 96 2.45 1.93
1886 SN SE1 VSN-1886-111 3.15 188 65 2.05 2.48
1886 SN SE1 VSN-1886-112 2.40 251 146 2.15 1.74
1886 SN SE1 VSN-1886-113 0.85 328 192 3.40 1.67
1886 SN SE1 VSN-1886-115 0.60 461 253 4.12 3.56








1887 SN W VSN-1888-47 1.75 124 90 0.81 0.47
1887 SN W VSN-1888-48 5.05 163 86 1.50 1.34
1887 SN W VSN-1886-49 2.00 256 120 2.78 2.24
1887 SN W VSN-1886-51 1.65 428 356 1.39 1.26








1882 SN NW VSN-1888-28 0.50 359 307 1.15 0.76
1882 SN NW VSN-1887-31 2.30 269 242 0.59 0.38
1882 SN NW VSN-1887-37 2.00 202 112 2.51 0.82
1882 SN NW VSN-1887-40 3.00 374 337 1.01 0.35
1882 SN NW VSN-1887-43 4.90 264 142 2.57 1.95
1882 SN NW VSN-1887-49 6.45 481 325 3.59 2.18
1882 SN NW VSN-1887-52 4.20 307 63 2.54 6.46
1882 SN NW VSN-1888-48 2.10 357 205 3.74 1.86
1882 SN NW VSN-1888-51 3.70 428 344 2.35 0.79
1882 SN NW VSN-1887-55 0.65 249 61 1.91 5.01
1882 SN NW VSN-1884-60 1.75 317 122 2.52 4.67
1882 SN NW VSN-1883-63 1.75 360 197 3.00 3.04
1882 SN NW VSN-1885-57 2.70 220 101 2.33 2.05
1882 SN NW VSN-1887-58 1.20 461 163 3.93 7.09
1882 SN NW VSN-1887-61 1.40 501 163 5.50 6.97
1882 SN NW VSN-1887-64 2.20 620 119 3.80 14.66
1882 SN NW VSN-1882-66 1.20 405 166 4.05 4.79








1901 SN SE VSN-1901-26 0.70 129 51 1.51 1.39
1901 SN SE VSN-1901-29 1.45 395 150 5.35 3.70
1901 SN SE VSN-1901-32 0.60 261 126 2.88 2.10
1901 SN SE VSN-1901-35 1.30 141 93 1.01 0.72
1901 SN SE VSN-1901-38 2.80 379 132 4.19 4.93
1901 SN SE VSN-1901-44 1.30 172 88 1.92 1.20
1901 SN SE VSN-1901-47 1.60 148 58 1.55 1.76
1901 SN SE VSN-1901-50 4.20 206 99 2.25 1.72
1901 SN SE VSN-1901-53 5.20 459 411 1.51 0.78








1921 SN NW VSN-1921-L49 0.40 135 105 0.10 1.01
1921 SN NW VSN-1921-L52 1.70 406 277 1.08 3.67








1921 SN SE VSN-1921-L70 2.50 349 183 0.01 0.03
1921 SN SE VSN-1921-L73 1.60 417 173 4.08 4.94
1921 SN SE VSN-1921-L76 1.85 240 112 2.16 2.55
1921 SN SE VSN-1921-L79 0.85 117 62 0.50 1.51
1921 SN SE VSN-1921-L82 0.90 111 73 0.80 0.61
1921 SN SE VSN-1921-L84 2.10 349 227 2.15 2.36
1921 SN SE VSN-1921-L85 0.60 206 107 2.96 0.72
1921 SN SE VSN-1921-L88 1.50 189 94 1.95 1.58
海拔 區域 頻道 寬度 Ag.Eq(1) g/t Ag g/t Pb% 鋅%
1870 VN VNU-1870-189 1.30 334 273 1.13 1.13
1870 VN VNU-1870-191 1.90 138 104 0.64 0.64
1870 VN VNU-1870-197 1.50 282 167 2.12 2.12
1870 VN VNU-1870-200 0.70 9 0 0.17 0.17
1870 VN VNU-1870-204 0.60 105 97 0.14 0.14
1870 VN VNU-1870-206 0.70 158 122 0.65 0.65
1870 VN VNU-1870-211 1.40 159 61 1.82 1.82








1874 現在太陽 VSN-1873-26 1.10 355 135 1.55 6.58
1874 現在太陽 VSN-1873-29 2.30 242 175 1.20 1.29








1874 SN SW VSN-1874-40 3.50 810 312 4.99 13.38
1874 SN SW VSN-1874-44 2.70 358 150 3.23 4.47
1874 SN SW VSN-1874-45 2.90 339 139 3.49 3.89
1874 SN SW VSN-1875-43 0.50 434 355 2.66 0.28
1874 SN SW VSN-1875-51 5.30 535 424 2.09 2.01








1874 SN SE VSN-1874-42 3.10 286 195 2.05 1.31
1874 SN SE VSN-1874-54 3.20 266 231 1.02 0.29
1874 SN SE VSN-1874-56 2.80 222 176 0.92 0.77
1874 SN SE VSN-1874-58 0.40 174 60 1.83 2.39
1874 SN SE VSN-1873-62 0.40 301 103 3.24 4.06
1874 SN SE VSN-1873-64 0.30 192 64 2.17 2.55
1874 SN SE VSN-1873-65 0.70 751 253 7.30 11.10
1874 SN SE VSN-1873-66 1.70 155 40 1.49 2.75
1874 SN SE VSN-1873-73 0.30 157 41 1.58 2.70
1874 SN SE VSN-1873-75 0.30 47 0 0.15 1.58
1874 SN SE VSN-1873-76 0.40 1,073 405 11.20 13.50
1874 SN SE VSN-1873-78 0.60 168 39 1.38 3.36
1874 SN SE VSN-1873-79 0.80 518 217 7.27 3.87








1886 SN SE2 VSN-1885-82 0.70 131 88 0.58 1.00
1886 SN SE2 VSN-1885-84 0.65 271 103 2.90 3.33
1886 SN SE2 VSN-1885-89 3.65 312 103 3.47 4.25
1886 SN SE2 VSN-1885-92 0.60 322 73 3.83 5.38








1886 SN SE1 VSN-1886-108 1.10 215 96 2.45 1.93
1886 SN SE1 VSN-1886-111 3.15 188 65 2.05 2.48
1886 SN SE1 VSN-1886-112 2.40 251 146 2.15 1.74
1886 SN SE1 VSN-1886-113 0.85 328 192 3.40 1.67
1886 SN SE1 VSN-1886-115 0.60 461 253 4.12 3.56








1887 SN W VSN-1888-47 1.75 124 90 0.81 0.47
1887 SN W VSN-1888-48 5.05 163 86 1.50 1.34
1887 SN W VSN-1886-49 2.00 256 120 2.78 2.24
1887 SN W VSN-1886-51 1.65 428 356 1.39 1.26








1882 現在太陽 VSN-1888-28 0.50 359 307 1.15 0.76
1882 現在太陽 VSN-1887-31 2.30 269 242 0.59 0.38
1882 現在太陽 VSN-1887-37 2.00 202 112 2.51 0.82
1882 現在太陽 VSN-1887-40 3.00 374 337 1.01 0.35
1882 現在太陽 VSN-1887-43 4.90 264 142 2.57 1.95
1882 現在太陽 VSN-1887-49 6.45 481 325 3.59 2.18
1882 現在太陽 VSN-1887-52 4.20 307 63 2.54 6.46
1882 現在太陽 VSN-1888-48 2.10 357 205 3.74 1.86
1882 現在太陽 VSN-1888-51 3.70 428 344 2.35 0.79
1882 現在太陽 VSN-1887-55 0.65 249 61 1.91 5.01
1882 現在太陽 VSN-1884-60 1.75 317 122 2.52 4.67
1882 現在太陽 VSN-1883-63 1.75 360 197 3.00 3.04
1882 現在太陽 VSN-1885-57 2.70 220 101 2.33 2.05
1882 現在太陽 VSN-1887-58 1.20 461 163 3.93 7.09
1882 現在太陽 VSN-1887-61 1.40 501 163 5.50 6.97
1882 現在太陽 VSN-1887-64 2.20 620 119 3.80 14.66
1882 現在太陽 VSN-1882-66 1.20 405 166 4.05 4.79








1901 SN SE VSN-1901-26 0.70 129 51 1.51 1.39
1901 SN SE VSN-1901-29 1.45 395 150 5.35 3.70
1901 SN SE VSN-1901-32 0.60 261 126 2.88 2.10
1901 SN SE VSN-1901-35 1.30 141 93 1.01 0.72
1901 SN SE VSN-1901-38 2.80 379 132 4.19 4.93
1901 SN SE VSN-1901-44 1.30 172 88 1.92 1.20
1901 SN SE VSN-1901-47 1.60 148 58 1.55 1.76
1901 SN SE VSN-1901-50 4.20 206 99 2.25 1.72
1901 SN SE VSN-1901-53 5.20 459 411 1.51 0.78








1921 現在太陽 VSN-1921-L49 0.40 135 105 0.10 1.01
1921 現在太陽 VSN-1921-L52 1.70 406 277 1.08 3.67








1921 SN SE VSN-1921-L70 2.50 349 183 0.01 0.03
1921 SN SE VSN-1921-L73 1.60 417 173 4.08 4.94
1921 SN SE VSN-1921-L76 1.85 240 112 2.16 2.55
1921 SN SE VSN-1921-L79 0.85 117 62 0.50 1.51
1921 SN SE VSN-1921-L82 0.90 111 73 0.80 0.61
1921 SN SE VSN-1921-L84 2.10 349 227 2.15 2.36
1921 SN SE VSN-1921-L85 0.60 206 107 2.96 0.72
1921 SN SE VSN-1921-L88 1.50 189 94 1.95 1.58

Table 3 - 2023 Surface Mapping Grab Sample Results (3) - San Nicolas Area

表 3-2023 年地表測繪採集樣本結果 (3) -聖尼古拉斯區

Company Sample Width Ag.Eq(1) g/t Au g/t Ag g/t Pb % Zn %
Silver Storm 437951 0.5 3 0.01 2.2 0.0630 0.0178
Silver Storm 437952 - 172 0.03 169 0.2750 0.0505
Silver Storm 437953 1.0 11 0.01 10 0.0129 0.0543
Silver Storm 437954 1.5 102 0.03 99 0.0558 0.1300
Silver Storm 437955 0.5 95 0.01 95 0.0410 0.2400
FMS EXS00684 - 357 0.22 338 1.37 0.47
FMS EXS00700 - 761 0.01 761 0.32 0.13
FMS EXS00713 - 1,855 0.19 1,838 0.67 0
FMS EXS00802 - 589 0.12 578 1.99 0.04
FMS EXS00805 - 1,215 0.04 1,212 1.74 0.04
FMS EXS00839 - 392 0.11 382 1.62 0.63
FMS EXS00932 - 556 0.16 542 1.52 0.16
公司 示例 寬度 Ag.Eq(1) g/t Au g/t Ag g/t Pb% 鋅%
銀色風暴 437951 0.5 3 0.01 2.2 0.0630 0.0178
銀色風暴 437952 - 172 0.03 169 0.2750 0.0505
銀色風暴 437953 1.0 11 0.01 10 0.0129 0.0543
銀色風暴 437954 1.5 102 0.03 99 0.0558 0.1300
銀色風暴 437955 0.5 95 0.01 95 0.0410 0.2400
FMS EXS00684 - 357 0.22 338 1.37 0.47
FMS EXS00700 - 761 0.01 761 0.32 0.13
FMS EXS00713 - 1,855 0.19 1,838 0.67 0
FMS EXS00802 - 589 0.12 578 1.99 0.04
FMS EXS00805 - 1,215 0.04 1,212 1.74 0.04
FMS EXS00839 - 392 0.11 382 1.62 0.63
FMS EXS00932 - 556 0.16 542 1.52 0.16
  1. All results in this release are rounded. Assays are uncut and undiluted. Widths are core-lengths, not true widths. Silver equivalent: Ag.Eq g/t was calculated using commodity prices of US$22.50 /oz Ag, US$1,800 /oz Au, US$0.94 /lb Pb, and US$1.35 /lb Zn applying metallurgical recoveries of 70.1% for silver and 82.8% for gold in oxides and 79.6% for silver, 80.1% for gold, 74.7% for lead and 58.8% for zinc in sulphides. Metal payable used was 99.6% for silver and 95% for gold in doré produced from oxides, and 95% for silver, gold, and lead and 85% for zinc in concentrates produced from sulphides. Cut-off grades considered for oxide and sulphide were, respectively 140 g/t Ag.Eq and 125 g/t Ag.Eq and are based on 2017 costs adjusted by the inflation rate and include sustaining costs.

  2. Weighted average grades were calculated over the mineralized widths of each channel (Figures 2-4).

  3. Surface sample mineralization is considered oxide and thus Ag.Eq calculation for oxides is applied. First Majestic Silver (FMS) surface samples were taken in 2015 and are considered historical in nature (Figure 5).

  1. 此版本中的所有結果均爲四捨五入。化驗未經切割且未稀釋。寬度是核心長度,而不是真正的寬度。白銀當量:Ag.Eq g/t是使用大宗商品價格爲22.50美元/盎司銀、1,800美元/盎司金、0.94美元/磅鋅和1.35美元/磅鋅的冶金回收率計算得出的,其中銀的冶金回收率爲70.1%,氧化物中的金爲89.6%,金爲80.1%,鉛爲74.7%,硫化物中的鋅爲58.8%。在由氧化物生產的多雷中,銀的應付金屬爲99.6%,金的應付金屬爲95%,銀、金和鉛的應付金屬爲95%,由硫化物生產的精礦中的鋅爲85%。考慮的氧化物和硫化物的臨界品位分別爲140克/噸Ag.Eq和125克/噸Ag.Eq,以2017年成本爲基礎,經通貨膨脹率調整後幷包括維持成本。

  2. 加權平均品位是根據每個通道的礦化寬度計算得出的(圖 2-4)。

  3. 表面樣品礦化被視爲氧化物,因此應用氧化物的 Ag.Eq 計算。第一批 Majestic Silver (FMS) 表面樣本是在 2015 年採集的,本質上被認爲是歷史性的(圖 5)。

Sample Analysis and QA/QC Program

樣品分析和質量保證/質量控制計劃

Silver Storm uses a quality assurance/quality control (QA/QC) program that monitors the chain of custody of samples and includes the insertion of blanks, duplicates, and reference standards in each batch of samples sent for analysis. The drill core is photographed, logged, and cut in half, with one half retained in a secured location for verification purposes and one half shipped for analysis. Sample preparation (crushing and pulverizing) is performed at ALS Geochemistry, an independent ISO 9001:2001 certified laboratory, in Zacatecas, Mexico and pulps are sent to ALS Geochemistry in Vancouver, Canada for analysis. The entire sample is crushed to 70% passing -2 mm, and a riffle split of 250 grams is taken and pulverized to better than 85% passing 75 microns. Samples are analyzed for gold using a standard fire assay with Atomic Absorption Spectrometry (AAS) (Au-AA23) from a 30-gram pulp. Gold assays greater than 10 g/t are re-analyzed on a 30-gram pulp by fire assay with a gravimetric finish (Au-GRA21). Samples are also analyzed using a 34 element inductively coupled plasma (ICP) method with atomic emission spectroscopy (AES) on a pulp digested by four acids (ME-ICP61). Overlimit sample values for silver (>100 g/t), lead (>1%), zinc (>1%), and copper (>1%) are re-assayed using a four-acid digestion overlimit method with ICP-AES (ME-OG62). For silver values greater than 1,500 g/t, samples are re-assayed using a fire assay with gravimetric finish on a 30-gram pulp (Ag-GRA21). Samples with lead values over 20% are re-assayed using volumetric titration with EDTA on a 1-gram pulp (Pb-VOL70). No QA/QC issues were noted with the results reported herein.

Silver Storm 使用質量保證/質量控制 (QA/QC) 程序來監控樣品的監管鏈,包括在送交分析的每批樣品中插入空白、副本和參考標準。對鑽芯進行拍照、記錄並切成兩半,其中一半保存在安全位置以進行驗證,一半運送進行分析。樣品製備(破碎和粉碎)由位於墨西哥薩卡特卡斯州的ALS Geochemistrics進行,該實驗室是經過ISO 9001:2001 認證的獨立實驗室,並將紙漿送到加拿大溫哥華的ALS地球化學進行分析。通過-2 mm將整個樣品粉碎至70%,然後取出250克的裂縫並粉碎至超過75微米的85%。使用原子吸收光譜法 (AAS) (Au-AA23) 的標準火法對樣品進行金分析,從 30 克紙漿中提取黃金。對大於 10 g/t 的金試驗,在 30 克紙漿上進行重量法測定(Au-gra21)進行重新分析。還使用34元素的電感耦合等離子體(ICP)方法和原子發射光譜(AES)對樣品進行分析,對被四種酸消化的紙漿(ME-ICP61)。使用帶有ICP-AES(ME-OG62)的四酸消化超限方法重新測定銀(>100 g/t)、鉛(> 1%)、鋅(> 1%)和銅(> 1%)的超限樣品值。對於大於 1,500 g/t 的銀值,樣品將在 30 克紙漿 (Ag-gra21) 上使用經過重量法處理的火焰分析法進行重新分析。鉛值超過 20% 的樣品使用含乙二胺四乙酸的容積滴定法在 1 克紙漿(pb-Vol70)上進行重新分析。本文報告的結果沒有發現質量保證/質量控制問題。

Review by Qualified Person and QA/QC

由合格人員和質量保證/質量控制人員審查

The scientific and technical information in this document has been reviewed and approved by Bruce Robbins, P.Geo., a Qualified Person as defined by National Instrument 43-101.

本文檔中的科學和技術信息已由國家儀器 43-101 定義的合格人員 Bruce Robbins、P.Geo. 的審查和批准。

About Silver Storm Mining Ltd. (formerly Golden Tag Resources Ltd.)

關於 Silver Storm Mining Ltd.(前身爲 Golden Tag 資源有限公司)

Silver Storm Mining Ltd. holds advanced-stage silver projects located in Durango, Mexico. Golden Tag recently completed the acquisition of 100% of the La Parrilla Silver Mine Complex, a prolific operation which is comprised of a 2,000 tpd mill as well as five underground mines and an open pit that collectively produced 34.3 million silver-equivalent ounces between 2005 and 2019. The Company also holds a 100% interest in the San Diego Project, which is among the largest undeveloped silver assets in Mexico. For more information regarding the Company and its projects, please visit our website at .

Silver Storm Mining Ltd.擁有位於墨西哥杜蘭戈的高級白銀項目。Golden Tag最近完成了對La Parrilla銀礦綜合體100%股份的收購,這是一個多產的企業,包括一座每天2,000噸的軋機、五個地下礦山和一個露天礦,在2005年至2019年間共生產了3,430萬盎司的白銀當量盎司。該公司還持有聖地亞哥項目的100%權益,該項目是墨西哥最大的未開發白銀資產之一。有關公司及其項目的更多信息,請訪問我們的網站,網址爲。

For additional information, please contact:
Greg McKenzie, President & CEO
Ph: +1 (416) 504-2024
greg.mckenzie@silverstorm.ca

欲了解更多信息,請聯繫:
格雷格·麥肯齊,總裁兼首席執行官
Ph:+1 (416) 504-2024
greg.mckenzie@silverstorm.ca

Neither the TSXV nor its Regulation Services Provider (as that term is defined in the policies of the TSXV) accepts responsibility for the adequacy or accuracy of this news release.

多倫多證券交易所及其監管服務提供商(該術語在多倫多證券交易所政策中定義)均不對本新聞稿的充分性或準確性承擔責任。

Cautionary Note Regarding Forward Looking Statements:

關於前瞻性陳述的警示說明:

Certain statements in this news release are forward-looking and involve a number of risks and uncertainties. Such forward-looking statements are within the meaning of the phrase 'forward-looking information' in the Canadian Securities Administrators' National Instrument 51-102 - Continuous Disclosure Obligations. Forward-looking statements are not comprised of historical facts. Forward-looking statements include estimates and statements that describe the Company's future plans, objectives or goals, including words to the effect that the Company or management and Qualified Persons (in the case of technical and scientific information) expects a stated condition or result to occur. Forward-looking statements may be identified by such terms as "believes", "anticipates", "expects", "estimates", "may", "could", "would", "will", or "plan". Since forward-looking statements are 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, 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 future exploration performance at La Parrilla, the timing and extent of the drill program, the ability to increase Mineral Resources therein, and the ability to eventually place the La Parrilla Complex back into production.

本新聞稿中的某些陳述是前瞻性的,涉及許多風險和不確定性。此類前瞻性陳述符合加拿大證券管理局國家文書51-102——持續披露義務中 “前瞻性信息” 一詞的含義。前瞻性陳述不包含歷史事實。前瞻性陳述包括描述公司未來計劃、目標或目標的估計和陳述,包括大意是公司或管理層和合格人員(就技術和科學信息而言)預計會出現既定條件或結果的措辭。前瞻性陳述可以用 “相信”、“預期”、“預期”、“估計”、“可能”、“可能”、“會”、“將” 或 “計劃” 等術語來識別。由於前瞻性陳述基於假設,涉及未來的事件和狀況,因此就其本質而言,它們涉及固有的風險和不確定性。儘管這些聲明基於公司目前獲得的信息,但公司無法保證實際業績會達到管理層的預期。與前瞻性信息相關的風險、不確定性和其他因素可能導致實際事件、結果、業績、前景和機會與此類前瞻性信息所表達或暗示的事件、業績、前景和機會存在重大差異。本新聞稿中的前瞻性信息包括但不限於拉帕里拉未來的勘探業績、鑽探計劃的時間和範圍、增加礦產資源的能力以及拉帕里拉綜合體最終恢復生產的能力。

In making the forward-looking statements included in this news release, the Company and Qualified Persons (in the case of technical and scientific information) have applied several material assumptions, including that the Company's financial condition and development plans do not change because of unforeseen events, that future metal prices and the demand and market outlook for metals will remain stable or improve, management's ability to execute its business strategy and no unexpected or adverse regulatory changes with respect to La Parrilla. Forward-looking statements and information are subject to various known and unknown risks and uncertainties, many of which are beyond the ability of the Company to control or predict, that may cause the Company's actual results, performance or achievements to be materially different from those expressed or implied thereby, and are developed based on assumptions about such risks, uncertainties and other factors set out herein, including, but not limited to, there being no assurance that the Company's current and future exploration programs will grow the Mineral Resource base or upgrade Mineral Resource confidence, the risk that the assumptions referred to above prove not to be valid or reliable, the risk that the Company is unable to achieve its goal of placing La Parrilla back into production; market conditions and volatility and global economic conditions including increased volatility and potentially negative capital raising conditions resulting from the continued or escalation of the COVID-19 pandemic, risk of delay and/or cessation in planned work or changes in the Company's financial condition and development plans; risks associated with the interpretation of data (including in respect of third party mineralized material) regarding the geology, grade and continuity of mineral deposits, the uncertainty of the geology, grade and continuity of mineral deposits and the risk of unexpected variations in Mineral Resources, grade and/or recovery rates; risks related to gold, silver and other commodity price fluctuations; employee relations; relationships with and claims by local communities and indigenous populations; availability and increasing costs associated with mining inputs and labour, the speculative nature of mineral exploration and development, including the risks of obtaining necessary licenses and permits and the presence of laws and regulations that may impose restrictions on mining, including the Mexican mining reforms; risks relating to environmental regulation and liability; the possibility that results will not be consistent with the Company's expectations.

在做出本新聞稿中包含的前瞻性陳述時,公司和合格人員(就技術和科學信息而言)應用了幾項重大假設,包括公司的財務狀況和發展計劃不會因爲不可預見的事件而發生變化,未來的金屬價格以及金屬的需求和市場前景將保持穩定或改善,管理層執行其業務戰略的能力,以及對La Parrilla沒有意想不到或不利的監管變化。前瞻性陳述和信息受各種已知和未知風險和不確定性的影響,其中許多風險和不確定性超出了公司的控制或預測能力,這些風險和不確定性可能導致公司的實際業績、業績或成就與由此所表達或暗示的結果存在重大差異,並且是基於對此類風險、不確定性和其他因素的假設制定的,包括但不限於無法保證公司當前和未來的勘探計劃會增長礦物資源基礎或提升礦產資源信心、上述假設被證明無效或不可靠的風險、公司無法實現其讓拉帕里拉恢復生產的目標的風險;市場狀況和波動以及全球經濟狀況,包括波動性增加以及因 COVID-19 疫情持續或升級而導致的潛在負面籌資條件、計劃工作延遲和/或停止的風險或公司財務狀況和發展計劃變化的風險;與解釋有關礦牀地質、等級和連續性的數據(包括第三方礦化材料的數據)、礦牀地質、品位和連續性的不確定性以及礦產資源、品位和/或回收率意外變化的風險相關的風險;與金、白銀和其他商品價格波動相關的風險;僱員關係;與當地社區和土著居民的關係和索賠;採礦投入的可用性和成本增加以及勞動力、礦產勘探和開發的投機性質,包括獲得必要執照和許可證的風險以及可能對採礦施加限制的法律和法規的存在,包括墨西哥的採礦改革;與環境監管和責任有關的風險;結果可能與公司的預期不一致。

Such forward-looking information represents managements and Qualified Persons (in the case of technical and scientific information) best judgment based on information currently available. No forward-looking statement can be guaranteed, and actual future results may vary materially. Accordingly, readers are advised not to place undue reliance on forward-looking statements or information.

此類前瞻性信息代表管理層和合格人員(就技術和科學信息而言)基於當前可用信息的最佳判斷。無法保證任何前瞻性陳述,未來的實際結果可能會有重大差異。因此,建議讀者不要過分依賴前瞻性陳述或信息。


Figure 2: Plan View San Nicolas Zone


圖 2:聖尼古拉斯區域平面圖

Figure 3: Oblique View to East of San Nicolas Channel Samples 1874, 1886, 1901 & 1921 m EL Stopes

圖 3:聖尼古拉斯海峽以東的斜視圖 1874、1886、1901 和 1921 m EL Stopes


Figure 4: Longitudinal Section of San Nicolas View Toward NE


圖 4:聖尼古拉斯朝向東北方向的縱向剖面


Figure 5: Surface Plan of San Nicolas, La Fe, La Virginia, & La Esperanza Zones


圖 5:聖尼古拉斯、拉菲、拉弗吉尼亞和拉埃斯佩蘭薩區域的地表平面圖

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譯文內容由第三人軟體翻譯。


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