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Beyond Lithium Establishes Zonation at Cosgrave Lake Project Indicating Proximity to Potential Spodumene Zone

Beyond Lithium Establishes Zonation at Cosgrave Lake Project Indicating Proximity to Potential Spodumene Zone

Beyond Lithium 在科斯格雷夫湖項目建立分區,表明靠近潛在的鋰輝石區
newsfile ·  2023/11/20 21:00

HIGHLIGHTS

亮點

  • Recent exploration at the Cosgrave Lake Project established a mineral and fractionation zonation around the Beyond Lithium's recently discovered Allen Graeme ("AG") Pluton comparable to the MNW spodumene-bearing pegmatite's mineral zonation located 2.8km north of the Cosgrave Lake Project.
  • A grab sample from a pegmatite just outside the green muscovite zone composed of quartz, feldspar, and alluaudite returned with 0.39% Li2O (1,832ppm Li) and 2.77% Manganese (Mn) suggesting the pegmatite is highly fractionated.
  • The 0.39% Li2O grab sample in pegmatite indicates the proximity to the potential discovery of a higher-grade lithium spodumene zone.
  • Over 4,000 field data points of lithology and mineralogy have been compiled from the Phase 2 mapping program at Cosgrave Lake.
  • Several groups of pegmatite outcrops were outlined by the mapping program with some of these pegmatite outcrop groups measuring up to 10 to 30 meters in width and over one kilometer in strike length.
  • 最近在科斯格雷夫湖項目進行的勘探在Beyond Lithiume最近發現的艾倫·格雷姆(“AG”)冥王星周圍建立了一個礦物和分餾區,可與位於科斯格雷夫湖項目以北 2.8 公里處的 MNW 含鋰輝石偉晶岩的礦產區相當。
  • 從位於綠色白雲母區域外的一塊由石英、長石和沖積石組成的偉晶岩中採集的樣本返回了 0.39% 的鋰氧(1,832ppm Li)和 2.77% 的錳(Mn),表明該偉晶岩是高度分餾的。
  • 偉晶岩中採集的鋰離子含量爲0.39%,這表明有可能發現更高品位的鋰鋰輝石帶。
  • 根據科斯格雷夫湖的第二階段測繪計劃,已經彙編了4,000多個巖性和礦物學實地數據點。
  • 測繪程序概述了幾組偉晶岩露頭,其中一些偉晶岩露頭群的寬度可達 10 到 30 米,走向長度超過一千米。

Winnipeg, Manitoba--(Newsfile Corp. - November 20, 2023) - Beyond Lithium Inc. (CSE: BY) (OTCQB: BYDMF) (the "Company" or "Beyond Lithium") is pleased to announce that recent exploration work at the Company's Cosgrave Lake Project indicate the proximity to the potential discovery of a higher-grade lithium spodumene zone.

曼尼托巴省溫尼伯--(Newsfile Corp.,2023 年 11 月 20 日)-Beyond Lithium Inc.(CSE:BY)(場外交易代碼:BYDMF)(the”公司“或”超越鋰“)很高興地宣佈,該公司科斯格雷夫湖項目最近的勘探工作表明,有可能發現更高品位的鋰鋰輝石帶。

"We could not be happier with the results of the exploration program at Cosgrave Lake following the discovery of the Allen Graeme ("AG") Pluton earlier this summer (see news release dated August 1, 2023)," said Allan Frame, President & CEO of Beyond Lithium. "The compilation of over 4,000 data points of lithology and mineralogy, 133 grab samples, including a sample with elevated Li2O values, indicate the proximity to a potential high-grade lithium spodumene zone on the property. We are optimistic that we could add a third spodumene discovery to our portfolio, with all three projects being within a 100-kilometer radius."

Beyond Lithium總裁兼首席執行官艾倫·弗雷姆說:“繼今年夏天早些時候發現艾倫·格雷姆(“AG”)冥王星之後,我們對科斯格雷夫湖勘探計劃的結果再滿意不過了(見2023年8月1日的新聞稿)。“彙編了4,000多個巖性學和礦物學數據點,133個採集樣本,包括一個Li2O值較高的樣本,表明該物業靠近潛在的高品位鋰鋰輝石區。我們樂觀地認爲,我們的投資組合中可能會增加第三個鋰輝石發現,這三個項目都在100公里半徑範圍內。”

Lawrence Tsang, VP Exploration of Beyond Lithium, commented, "It is very exciting news for Beyond Lithium to have a grab sample from a pegmatite away from the AG pluton and just outside of the green muscovite zone assaying 0.39% Li2O. From desktop study to boots on the ground, Beyond Lithium's technical team systematically explored the Cosgrave Lake Project by first establishing background geochemistry and identifying the source and structure of the Project. We designed the exploration program relying on field data and observations and correlated the fractionation trend and the mineral zonation to the generic scientific model for LCT deposits. It took our team only a few months of field work to discover the source for lithium mineralization, the AG Pluton, establish the mineral zonation, delineate the fractionation trend and locate the 0.39% Li2O pegmatite sample. These results reaffirm the effectiveness of Beyond Lithium's exploration model which is entirely based on a scientific and systematic approach. Beyond Lithium will continue to focus on exploring the potential proximal spodumene-bearing zone at the Cosgrave Lake Project and, in unison, will follow up on the newly established northeast zone that sits 6.5km northeast of the AG pluton and similarly towards the southwest part of the AG pluton in the next field program."

Beyond Lithium勘探副總裁Lawrence Tsang評論說:“對於Beyond Lithium來說,從遠離AG pluton且就在綠色白雲母區外的偉晶岩中採集樣本,測定Li2O含量爲0.39%,這是一個非常令人振奮的消息。從桌面研究到實地考察,Beyond Lithium的技術團隊首先建立了背景地球化學並確定了該項目的來源和結構,從而系統地探索了科斯格雷夫湖項目。我們根據實地數據和觀測結果設計了勘探計劃,並將分餾趨勢和礦物分區與LCT礦牀的通用科學模型關聯起來。我們的團隊僅用了幾個月的實地考察,就發現了鋰礦化的來源,即 AG Pluton,確定了礦物分區,描繪了分餾趨勢並找到 0.39% 的鋰偉晶岩樣本。這些結果證實了Beyond Lithium的勘探模型的有效性,該模型完全基於科學和系統的方法。Beyond Lithium將繼續專注於探索科斯格雷夫湖項目潛在的近端鋰輝石含量區,並將在下一個野外項目中一致追蹤位於AG巖體東北6.5公里處以及同樣位於AG巖體西南部分的新建立的東北區域。”

Regional Geological Context

區域地質背景

The Cosgrave Lake Project is located in the Georgia Lake District. This district is an active and prolific lithium exploration area with more than 28 lithium occurrences recorded by Ontario Geological Survey that are hosted in five major pegmatite groups including the MNW, the Georgia Lake, the Barbara Lake, the Postogoni Lake, and the Forgan Lake (Breaks 2008). Beyond Lithium has three projects in the Georgia Lake District: Cosgrave Lake (8,993 ha), Gathering Lake (6,948 ha), and Arrel Lake (3,585 ha). These Projects are located next to:

科斯格雷夫湖項目位於喬治亞湖區。該地區是一個活躍且多產的鋰勘探區,安大略地質調查局記錄了超過28處鋰礦點,分佈在五個主要的偉晶岩群中,包括MNW、喬治亞湖、芭芭拉湖、波斯托戈尼湖和福根湖(Breaks 2008)。Beyond Lithium在喬治亞湖區有三個項目:科斯格雷夫湖(8,993公頃)、聚會湖(6,948公頃)和阿雷爾湖(3,585公頃)。這些項目位於:

Imagine Lithium's1 Jackpot Lithium Project which has a historical resource in the Main zone with 2 Mt at 1.09% Li2O.

想象一下鋰的1 Jackpot LithiumProject在主區擁有歷史資源,擁有200萬噸,鋰含量爲1.09%。

Rock Tech Lithium's2 Georgia Lake Project which has published a pre-feasibility study in Nov 2022 with a Mineral Resource estimate of a total indicated mineral resources of 10.6mt grading 0.88% Li2O and a total inferred mineral resource of 4.2mt grading 1.00% Li2O.

搖滾科技鋰電池2 喬治亞湖項目於2022年11月發佈了一份預可行性研究,其礦產資源估計總量爲1060萬噸,Li2O品位爲0.88%,推斷礦產資源總量爲420萬噸,Li2O品位爲1.00%。

Balkan Mining's3 flagship Gorge Lithium Project where they recently commenced drilling.

巴爾幹礦業3 旗艦峽谷鋰業項目,他們最近開始在那裏進行鑽探。

Infrastructure

基礎架構

The Cosgrave Lake Project can be accessed via the Trans-Canada Highway and a network of well-maintained logging roads. The Project is less than 20km north of the town of Nipigon, and about 100km to the northeast of Thunder Bay. The Project also has excellent nearby infrastructure including ports, powerline, local labor force and equipment, and communications (Figure 1).

科斯格雷夫湖項目可以通過橫貫加拿大的高速公路和維護良好的伐木道路網絡進入。該項目位於尼皮貢鎮以北不到20公里處,桑德灣東北約100公里處。該項目還擁有良好的附近基礎設施,包括港口、電力線、當地勞動力和設備以及通信(圖 1)。

Geology and Generic LCT Deposit Scientific Model

地質學和通用 LCT 礦牀科學模型

The Georgia Lake District illustrated in Figure 1 is the host of several well-known fertile plutons namely the MNW pluton, the Barbara Lake pluton, and the Pine Portage pluton. These well-established fertile plutons in the Georgia Lake District are associated with several prolific lithium pegmatite belts including the Imagine Lithium's1 Jackpot Project and Rock Tech Lithium's2 Georgia Lake Project.

圖 1 所示的喬治亞湖區是幾個著名的肥沃巖體的所在地,即 MNW 巖體、芭芭拉湖巖體和 Pine Portage 巖體。喬治亞湖區這些成熟的肥沃巖體與幾條多產的鋰偉晶岩帶有關,包括 Imagine Lithium1 大獎項目和搖滾科技鋰電項目2 喬治亞湖項目

Beyond Lithium started its prospecting program at the Cosgrave Lake Project in late May 2023 and discovered a new LCT pegmatite intrusive stock, the Allen Graeme ("AG") pluton (see news release dated August 1, 2023). The AG Pluton shares similarities with other significant lithium discoveries in the Georgia Lake District, namely the MNW pluton, the Barbara Lake pluton, and the Pine Portage pluton. Worthy of note is that the chemistry of the Cosgrave Lake granite source (the Glacier Lake Batholith) and the AG pluton is quite similar to the concentration in the Tanco source and Tanco pluton located at Bernie Lake, Manitoba (Table 1 and Figure 2).

Beyond Lithium 於 2023 年 5 月下旬在科斯格雷夫湖項目啓動了勘探計劃,並發現了一種新的 LCT 偉晶岩侵入性巖群,即艾倫·格雷姆(“AG”)巖體(見2023年8月1日的新聞稿)。AG Pluton與喬治亞湖區的其他重要鋰發現有相似之處,即MNW巖體、芭芭拉湖巖體和Pine Portage巖體。值得注意的是,科斯格雷夫湖花崗岩源(冰川湖基石)和AG巖體的化學成分與位於曼尼托巴省伯尼湖的坦科源和坦科巖體中的濃度非常相似(表1和圖2)。

In other words, the size and geochemical characteristics of the AG Pluton indicate its potential as a source of concentrated fluids, volatiles, lithium, and rare earth minerals, making it an exceptionally promising area for exploration.

換句話說,AG Pluton的大小和地球化學特徵表明它有可能成爲濃縮流體、揮發物、鋰和稀土礦物的來源,使其成爲一個非常有前途的勘探領域。

Cosgrave Lake and Tanco Plutons Comparison Be ppm Cs ppm Li ppm
Cosgrave Pluton - AG Pluton Channel (min) 3.63 3.92 33.8
Cosgrave Pluton - AG Pluton Channel (max) 489 58.91 126
Tanco Granite Pluton (average) 4 4 57
Cosgrave Lake and Tanco Granite Source Comparison Be ppm Cs ppm Li ppm
Cosgrave Source - Glacier Lake Intrusive Granite (average) 1 3 20
Cosgrave Source - Glacier Lake Potassic Pegmatite (average) 1.13 5.6 18
Tanco Anatectic Source (average) 3 3 20
科斯格雷夫湖和坦科冥王星的比較 be ppm Cs ppm Li ppm
Cosgrave Pluton-AG Pluton 頻道(分鐘) 3.63 3.92 33.8
Cosgrave Pluton-AG Pluton 頻道(最大) 489 58.91 126
Tanco Granite Pluton(平均) 4 4 57
科斯格雷夫湖和坦科花崗岩來源比較 be ppm Cs ppm Li ppm
Cosgrave Source-冰川湖侵入式花崗岩(平均值) 1 3 20
Cosgrave Source-冰川湖鉀偉晶岩(平均值) 1.13 5.6 18
Tanco Anatectic Source(平均值) 3 3 20

Table 1 Comparison of the Chemistry Between the Cosgrave Lake Granite Source and the AG Pluton with Tanco Source and the Tanco Pluton6

表 1 科斯格雷夫湖花崗岩源與帶有坦科源和坦科岩漿的AG Pluton之間的化學成分比較6

Beyond Lithium advanced the exploration at the Cosgrave Lake Project to a Phase 2 program after the discovery of the AG pluton. The Phase 2 program focused on the detailed and systematic mapping and sampling of the property starting from the core of the AG pluton and moving outwards in order to identify the mineral fractionation trend for lithium mineralization. To date, Beyond Lithium has collected a total of 133 grab samples and recorded more than 4,000 field data points of lithology and mineralogy at the Cosgrave Lake Project (Figure 3).

在發現AG巖體之後,Beyond Lithium將科斯格雷夫湖項目的勘探推進到了第二階段計劃。第二階段計劃側重於對該特性進行詳細和系統的測繪和採樣,從AG pluton的核心開始,向外移動,以確定鋰礦化的礦物分餾趨勢。迄今爲止,Beyond Lithium已在科斯格雷夫湖項目中共收集了133個採集樣本,並記錄了4,000多個巖性和礦物學實地數據點(圖3)。

The Phase 2 program successfully delineated a mineral zonation around the AG pluton transitioning from a pegmatitic textural border zone to a beryl zone and to a green muscovite zone (Figure 4). Just outside of the green muscovite zone located the furthest away from the AG pluton to the northeast, a grab sample from a pegmatite composed of quartz, feldspar, and alluaudite minerals returned with 0.39% Li2O (1,832ppm Li) and 2.77% Mn. The mineral zonation at the Cosgrave Lake Project is comparable with the mineral zonation of the MNW lithium occurrence associated with the MNW stock located 2.8km north of Cosgrave Lake Project. The MNW spodumene-bearing pegmatite with up to 5.82% Li2O transitions from beryl-tourmaline at the border zone to muscovite-alluaudite in the intermediate zone then to spodumene-quartz in the core zone (Zayachkivsky 1985). The mineral and lithium grade zonation at the Cosgrave Lake Project resemble the generic lithium-cesium-tantalum ("LCT") pegmatite fractionation scientific model which signifies and proves:

第 2 階段計劃成功地劃定了 AG 巖體周圍的礦物分區,該區域從偉晶質地邊界區過渡到綠柱石區和綠色白雲母帶(圖 4)。就在距離東北部 AG 巖體最遠的綠色白雲母帶外,從由石英、長石和鋁榴石礦物組成的偉晶岩中採集的樣本返回了 0.39% 的鋰氧(1,832ppm Li)和 2.77% 的錳。科斯格雷夫湖項目的礦產區劃與位於科斯格雷夫湖項目以北2.8公里處的MNW儲量相關的MNW鋰礦區的礦產區劃相當。MNW 含鋰輝石的偉晶岩,鋰含量高達 5.82%2O 從邊境區域的綠柱石過渡到中間區域的莫斯科-阿盧奧德石,然後過渡到核心區的鋰輝石英(Zayachkivsky 1985)。科斯格雷夫湖項目的礦物和鋰等級分區類似於通用鋰-銫-鉭(“LCT”)偉晶岩分餾科學模型,它表示並證明:

  1. The AG pluton is a fertile stock that is concentrated of lithium-bearing volatiles to form LCT pegmatites.
  2. The fractionation trend evolves outwards around the AG pluton and generally follows the overall northeast-southwest granite-metasedimentary contact orientation (Figure 5).
  3. The 0.39% Li2O grab sample with 2.77% Mn in pegmatite with alluaudite indicates the pegmatite is highly fractionated supported by the high manganese, Mn, and lower iron ratio (Breaks 2004).
  4. The 0.39% Li2O grab sample in pegmatite also implies the proximity to the potential discovery of a higher-grade lithium spodumene zone.
  1. AG pluton 是一種肥沃的種群,由含鋰的揮發物濃縮而成 LCT 偉晶岩。
  2. 分餾趨勢圍繞 AG 巖體向外演變,通常遵循東北-西南花崗岩-超沉積物的整體接觸方向(圖 5)。
  3. 含有沖積巖的偉晶岩中採集的鋰離子含量爲 0.39%,錳含量爲 2.77%,這表明在高錳、錳和較低的鐵比的支持下,偉晶岩是高度分餾的(Breaks 2004)。
  4. 偉晶岩中採集的鋰離子含量爲0.39%,這也意味着有可能發現更高品位的鋰鋰輝石區。

Measuring the ratio variations between potassium ("K"), cesium ("Cs"), rubidium ("Rb") in samples is a common and useful exploration tool to display the fractionation trend or the relative degree of evolution of S-type, peraluminous granites and related pegmatite granites and the rare-element pegmatite groups that fractionated from the parent granitic rocks. With increasing fractionation of the pegmatite-forming melt, the compositions of the potassium feldspar and mica become more enriched in rubidium and cesium thus the fractionation trend point to the lower left corner in the plot as the higher fractionated area.

測量樣品中鉀(“K”)、(“Cs”)、(“Rb”)之間的比率變化是一種常見而有用的勘探工具,可以顯示S型、過鋁花崗岩和相關偉晶岩花崗岩以及從母花崗岩中分離出來的稀有元素偉晶岩群的分餾趨勢或相對演化程度。隨着形成偉晶岩的熔體分餾率的增加,鉀長石和雲母的成分中銥和銫的含量變得更加豐富,因此分餾趨勢指向圖中左下角的較高分餾區域。

Generally, pegmatites with the highest degree of fractionation have a K/Rb ratio of less than 30 (Breaks 2004). Figure 5 plotted up the log of K/Cs ratio against the log of K/Rb ratio outlining the higher fractionated samples in the lower left corner of the plot with an average of 167ppm Li and 36 K/Rb and the lower fractionated samples in the top right corner of the plot with an average of 63ppm Li and 170 K/Rb which suggest the H fractionation zone is proximal to the potential spodumene zone.

通常,分餾程度最高的偉晶岩的 K/Rb 比小於 30(Breaks 2004)。圖 5 繪製了 K/Cs 比值與 K/Rb 比率對數的對數,在圖的左下角概述了較高的分餾樣本,平均值爲 167ppm Li 和 36 K/Rb,而較低的分餾樣本位於圖的右上角,平均值爲 63ppm Li 和 170 K/Rb,這表明 H 分餾區靠近潛在的鋰輝石區。

Figure 6 plotted up the high ("H"), moderate ("M"), and low ("L") fractionated samples and the three zones, H, M, and L, outlines coincide with the mineral zonation where the border zone correlates with the low fractionation zone, the beryl zone correlates with the low to moderate fractionation zones, and the green muscovite zone correlates with the moderate to high fractionation zones (Figure 6). This strong correlation between the fractionation trend and the mineral zonation at Cosgrave Lake supports the fertility of the AG Pluton that it has high concentration of lithium volatiles to fractionate.

圖 6 繪製了高(“H”)、中(“M”)和低(“L”)分餾樣品,H、M 和 L 三個區域的輪廓與礦物區劃一致,其中邊界區域與低分餾區相關,綠柱石區與低至中度分餾區相關,綠色白雲母區與中到高分餾區相關分餾區(圖 6)。分餾趨勢與科斯格雷夫湖礦物分區之間的這種密切相關性支持了AG Pluton的生育能力,即它具有高濃度的鋰揮發物可供分餾。

Summary

摘要

The Phase 2 mapping program at the Cosgrave Lake Project included over 1,000 pegmatite outcrop data points recording the size, the color, and the minerals composition of these pegmatite outcrops. These pegmatite outcrops generally range from 1 to 10 meters and locally up to 50 meters in width. A few groups of pegmatite outcrop measured from 10 to 30 meters in width with over one kilometre in strike length orienting northeast-southwest direction subparallel to the stratigraphy. The consistency of the overall northeast-southwest pegmatites trend continues to vector the exploration to follow the northeast-southwest orientation.

科斯格雷夫湖項目的第二階段測繪計劃包括1,000多個偉晶岩露頭數據點,記錄了這些偉晶岩露頭的大小、顏色和礦物成分。這些偉晶岩露頭通常在 1 到 10 米之間,局部寬度可達 50 米。幾組偉晶岩露頭的寬度介於 10 到 30 米之間,走向長度超過一千米,朝向與地層平行的東北-西南方向。東北-西南偉晶岩總體趨勢的一致性繼續推動勘探遵循東北-西南方向。

Furthermore, a northeast zone emerges about 6.5km northeast from the AG pluton along the 11km long northeast-southwest exploration trend. Multiple pegmatites with garnet and muscovite hosted in metasediment assayed over 100ppm Li in the northeast zone (Figure 8). The cluster of these over 100ppm Li samples located 6.5km northeast from the AG pluton supports that LCT mineralization persists across the exploration trend.

此外,沿着長達11千米的東北-西南探測趨勢,從AG巖體向東北方向約6.5公里處出現了一個東北帶。在東北區域,多塊含有石榴石和白雲母的偉晶岩在變沉積物中測得的鋰含量超過 100ppm Li(圖 8)。這些位於AG巖體東北6.5公里處的超過100ppm的鋰樣本群表明,在整個勘探趨勢中,LCT礦化持續存在。

In short, the Phase 1 and 2 exploration programs completed at the Cosgrave Lake Project have built a solid fundamental geological model that is comparable to a generic footprint of LCT deposit and fractionation trend models (Figure 7) (Bradley et al. 2017). Beyond Lithium will continue to focus on exploring the potential proximal spodumene-bearing zone towards the NE direction from the 0.39% Li2O pegmatite grab sample as labeled as "5" in Figure 7.

簡而言之,在科斯格雷夫湖項目完成的第一和第二階段勘探計劃已經建立了一個堅實的基礎地質模型,該模型可與LCT礦牀的通用足跡和分餾趨勢模型相媲美(圖7)(Bradley等人,2017年)。Beyond Lithium 將繼續專注於從 0.39% 的 Li2O 偉晶岩採集樣品中探索朝東北方向的潛在近端鋰輝石含量區域,如圖 7 中標記爲 “5”。

Allan Frame added: "Beyond Lithium has the largest package of greenfield lithium exploration projects in Ontario with 63 high potential lithium properties totalling over 195,000 hectares. In last than six months of field work, we built a very large and detailed geological and geochemical database covering 50 of the 63 projects. The database to date has more than 12,000 data points of lithology and minerology and over 1,300 grab samples and over 500 LIBS samples. These results will help guide our upcoming drill campaign planning at our Victory and Ear Falls spodumene projects and will also give us good geological indicators of the next steps on exploration at Cosgrave and other projects."

艾倫·弗雷姆補充說:“Beyond Lithium擁有安大略省最大的綠地鋰勘探項目,擁有63處高潛力鋰地產,總面積超過19.5萬公頃。在過去六個月的實地考察中,我們建立了一個非常龐大而詳細的地質和地球化學數據庫,涵蓋了63個項目中的50個。迄今爲止,該數據庫擁有超過12,000個巖性和礦物學數據點以及1,300多個採集樣本和500多個LIBS樣本。這些結果將有助於指導我們即將到來的Victory和Ear Falls鋰輝石項目鑽探計劃,也將爲我們提供良好的地質指標,說明Cosgrave和其他項目的下一步勘探工作。”

He concluded: "We are awaiting assay results from over 450 rock and channel samples, 50% of which come from our Victory and Ear Falls spodumene projects, and 240 drill core samples from our recently completed drill program at Ear Falls. We expect to be announcing assay results on a regular basis starting next week."

他總結道:“我們正在等待來自450多個岩石和河道樣本的化驗結果,其中50%來自我們的Victory和Ear Falls鋰輝石項目,以及來自我們最近在Ear Falls完成的鑽探計劃的240個鑽芯樣本。我們預計從下週開始定期公佈化驗結果。”

REFERENCES

引用

1Imagine Lithium
2Rock Tech Lithium
3Balkan Mining
4Breaks, F.W., Selway, J.B. and Tindle, A.G. 2004. A Review of Rare-Element (Li-Cs-Ta) Pegmatite Exploration Techniques for the Superior Province, Canada, and Large Worldwide Tantalum Deposits; Ontario Geological Survey, Exploration and Mining Geology, Vol. 14, Nos. 1-4, pp. 1-30.
5Breaks, F.W., Selway, J.B. and Tindle, A.G. 2008. The Georgia Lake rare-element pegmatite field and related S-type, peraluminous granites, Quetico Subprovince, north-central Ontario; Ontario Geological Survey, Open File Report 6199, 176p.
6Tindle, A.G., Breaks, F.W. and Selway, J.B. 2008. Electron microprobe and bulk rock and mineral compositions from S-type, peraluminous granitic rocks and rare-element pegmatites, Georgia Lake pegmatite field, Quetico Subprovince, north-central Superior Province of Ontario; Ontario Geological Survey, Miscellaneous Release-Data 231.
7London, D., 2016, Rare-Element Granitic Pegmatites, chap. 8 of Verplanck, P.L., & Hitzman, M.W., eds., Rare Earth and Critical Elements in Ore Deposits: Reviews in Economic Geology,18,pp.165-193
8Bradley, DC, McCauley, AD and Stillings, LL 2017, Mineral-deposit model for lithium-cesium-tantalum pegmatites: United States Geological Survey, Reston, VA, Scientific Investigations Report 2010-5070, 58p.
9Rock Tech Resources Inc. James Bay Midarctic Development Inc. Report on Exploration Work 2009, Georgia Lake Lithium and Rare-Earths Project, by Melville William Rennick, 2010.
10Zayachkivsky, B., 1985, Granitoids and rare-element pegmatites of the Georgia lake area, northwestern Ontario, Faculty of Science Lakehead University, Thunder Bay, Ontario, 252p.

1想象一下鋰
2搖滾科技鋰電
3巴爾幹礦業
4Breaks,F.W.,Selway,J.B. 和 Tindle,A.G. 2004。加拿大蘇必利爾省和全球大型鉭礦牀稀有元素(Li-Cs-Ta)偉晶岩勘探技術綜述;安大略省地質調查局,勘探和採礦地質學,第14卷,第1-4號,第1-30頁。
5Breaks,F.W.,Selway,J.B. 和 Tindle,A.G. 2008。喬治亞湖稀有元素偉晶岩田及相關的S型過鋁花崗岩,安大略省中北部奎蒂科省;安大略省地質調查局,公開文件報告6199,176p。
6A.G. Tindle、F.W. Breaks 和 J.B. Selway,2008。電子微探針以及來自 S 型、過鋁花崗岩和稀有元素偉晶岩的塊狀岩石和礦物成分,喬治亞湖偉晶岩場,安大略省中北部蘇必利爾省;安大略省中北部蘇必利爾省,安大略省地質調查局,雜項發佈數據 231。
7倫敦,D.,2016 年,稀有元素花崗岩偉晶岩,Verplanck、P.L. 和 Hitzman,M.W. 編輯,第 8 章,《稀土和礦牀中的關鍵元素:經濟地質學評論》,18,第 165-193 頁
8華盛頓特區布拉德利、AD 麥考利和斯蒂林斯,2017 年,鋰-銫-鉭偉晶岩礦牀模型:美國地質調查局,弗吉尼亞州雷斯頓,《2010-5070科學調查報告》,58頁。
9Rock Tech Resources Inc. James Bay Midarctic Development Inc. 2009 年勘探工作報告,喬治亞湖鋰和稀土項目,梅爾維爾·威廉·雷尼克,2010 年。
10Zayachkivsky,B.,1985,安大略省西北部喬治亞湖區的花崗岩和稀有元素偉晶岩,萊克黑德大學理學院,安大略省桑德貝,252p。

Quality Assurance/Quality Control

質量保證/質量控制

All collected rock samples were put in sturdy plastic bags, tagged, and sealed at site. Sample bags were then put in rice bags and kept securely before being sent by road transport or delivered by the crew supervisor to SGS's preparation facility in Red Lake or Sudbury, Ontario, for sample preparation. Pulps are analyzed at the SGS facility in Burnaby, BC. All samples are analyzed with Four-Acid Digestion/Combined ICP-AES/MS package (49 elements). Samples with lithium overlimit (>10,000 ppm Li) are analyzed with another Four-Acid Digestion with higher detection limit of up to 10% Li. Batches of samples with overlimit >10,000 ppm or 1% Li are analyzed with Sodium Peroxide Fusion for validation. The QA/QC protocol included the insertion and monitoring of appropriate reference materials, in this case high concentration and low concentration certified OREAS and CDN lithium standards to validate the accuracy and precision of the assay results.

所有收集的岩石樣本都放入堅固的塑料袋中,貼上標籤,並在現場密封。然後,將樣品袋放入大米袋中並妥善保管,然後通過公路運輸或由船員主管運送到安大略省紅湖或薩德伯裏的 SGS 製備設施進行樣本製備。在不列顛哥倫比亞省本那比的 SGS 工廠對紙漿進行分析。所有樣品均使用四酸消解/組合式 ICP-AES/MS 包裝(49 種元素)進行分析。鋰超限(>10,000 ppm Li)的樣品使用另一種四酸消解法進行分析,該四酸消解法的檢出限更高,最高可達 10% Li。使用過氧化鈉融合法對超限值大於 10,000 ppm 或 1% Li 的批次樣品進行分析,以進行驗證。質量保證/質量控制協議包括插入和監測適當的參考材料,在本例中爲高濃度和低濃度認證的OREAS和CDN鋰標準,以驗證化驗結果的準確性和精確度。

Qualified Person and Third-Party Data

合格人員和第三方數據

The scientific and technical information in this news release has been reviewed and approved by Lawrence Tsang, P.Geo., VP Exploration of the Company. Lawrence Tsang is a "qualified person" as defined in National Instrument 43-101 - Standards of Disclosure for Mineral Projects.

本新聞稿中的科學和技術信息已由公司勘探副總裁、P.Geo. Lawrence Tsang審查和批准。Lawrence Tsang是美國國家儀器43-101中定義的 “合格人士”- 礦產項目披露標準

About Beyond Lithium Inc.

關於超越鋰業公司

Beyond Lithium Inc. is the largest greenfield lithium exploration player in Ontario with 63 high potential greenfield lithium properties totalling over 195,000 hectares. The Company has adopted the project generator business model to maximize funds available for exploration projects, while minimizing shareholder dilution. Beyond Lithium is advancing certain of its projects with its exploration team and will seek to option other properties to joint venture partners. Partnering on various projects will provide a source of non-dilutive working capital, partner-funded exploration, and long-term residual exposure to exploration success.

Beyond Lithium Inc. 是安大略省最大的綠地鋰勘探公司,擁有63處高潛力的綠地鋰礦產,總面積超過19.5萬公頃。該公司採用了項目生成器商業模式,以最大限度地利用可用於勘探項目的資金,同時最大限度地減少股東稀釋。Beyond Lithium正在與勘探團隊一起推進其某些項目,並將尋求向合資夥伴選擇其他房產。合作開展各種項目將爲非稀釋性營運資金、合作伙伴資助的勘探以及勘探成功的長期剩餘風險提供來源。

Beyond Lithium currently has 33,874,482 common shares outstanding.

Beyond Lithium目前有33,874,482股已發行普通股。

Please follow @BeyondLithium on Twitter, Facebook, LinkedIn, Instagram and YouTube.

請繼續關注 @BeyondLithium 推特, Facebook、領英、InstagramYouTube

For more information, please refer to the Company's website at

欲了解更多信息,請訪問公司的網站

CAUTIONARY STATEMENT REGARDING FORWARD-LOOKING INFORMATION: This news release includes certain "forward-looking information" within the meaning of applicable Canadian securities legislation. All statements, other than statements of historical fact, included herein including, without limitation, statements regarding future capital expenditures, anticipated content, commencement, and cost of exploration programs in respect of the Company's projects and mineral properties, anticipated exploration program results from exploration activities, resources and/or reserves on the Company's projects and mineral properties, and the anticipated business plans and timing of future activities of the Company, are forward-looking information. Although the Company believes that such statements are reasonable, it can give no assurance that such expectations will prove to be correct. Often, but not always, forward-looking information can be identified by words such as "pro forma", "plans", "expects", "will", "may", "should", "budget", "scheduled", "estimates", "forecasts", "intends", "anticipates", "believes", "potential" or variations of such words including negative variations thereof, and phrases that refer to certain actions, events or results that may, could, would, might or will occur or be taken or achieved. In stating the forward-looking information in this news release, the Company has applied several material assumptions, including without limitation, that market fundamentals will result in sustained precious and base metals demand and prices, the receipt of any necessary permits, licenses and regulatory approvals in connection with the future exploration of the Company's properties, the availability of financing on suitable terms, and the Company's ability to comply with environmental, health and safety laws.

關於前瞻性信息的警示聲明:本新聞稿包括適用的加拿大證券立法所指的某些 “前瞻性信息”。除歷史事實陳述外,此處包含的所有陳述包括但不限於有關公司項目和礦產勘探計劃的未來資本支出、預期內容、開工和成本的陳述、勘探活動的預期勘探計劃結果、公司項目的資源和/或儲量以及公司未來活動的預期業務計劃和時間安排的陳述,均爲前瞻性信息。儘管公司認爲此類陳述是合理的,但它無法保證此類預期會被證明是正確的。前瞻性信息通常可以通過 “預期”、“計劃”、“期望”、“將”、“可能”、“應該”、“預算”、“預計”、“預測”、“打算”、“預期”、“預期”、“相信”、“潛在” 或變體(包括其負面變體)等詞語來識別,也可能是指某些行動、事件或結果的短語可能、可能、將來、可能發生或將要發生或被採取或實現。在本新聞稿中陳述前瞻性信息時,公司應用了多個重要假設,包括但不限於,市場基本面將導致貴金屬和基本金屬的需求和價格持續,獲得與公司未來勘探財產有關的任何必要的許可證、許可證和監管批准,以適當的條件獲得融資,以及公司遵守環境、健康和安全法律的能力。

Forward-looking information involves known and unknown risks, uncertainties and other factors which may cause the actual results, performance or achievements of the Company to differ materially from any future results, performance or achievements expressed or implied by the statements of forward-looking information. Such risks and other factors include, among others, statements as to the anticipated business plans and timing of future activities of the Company, the proposed expenditures for exploration work on its properties, the ability of the Company to obtain sufficient financing to fund its business activities and plans, delays in obtaining governmental and regulatory approvals (including of the Canadian Securities Exchange), permits or financing, changes in laws, regulations and policies affecting mining operations, risks relating to epidemics or pandemics such as COVID-19, the Company's limited operating history, currency fluctuations, title disputes or claims, environmental issues and liabilities, as well as those factors discussed under the heading "Risk Factors" in the Company's prospectus dated February 23, 2022 and other filings of the Company with the Canadian securities regulatory authorities, copies of which can be found under the Company's profile on the SEDAR website at .

前瞻性信息涉及已知和未知的風險、不確定性和其他因素,這些因素可能導致公司的實際業績、業績或成就與前瞻性信息陳述所表達或暗示的任何未來業績、業績或成就存在重大差異。此類風險和其他因素包括關於公司預期商業計劃和未來活動時間安排的陳述、其財產勘探工作的擬議支出、公司獲得足夠資金爲其業務活動和計劃提供資金的能力、延遲獲得政府和監管部門的批准(包括加拿大證券交易所的批准)、許可或融資、影響採礦業務的法律、法規和政策的變化、與流行病或流行病(例如COVID)有關的風險-19,公司有限的運營歷史、貨幣波動、所有權糾紛或索賠、環境問題和負債,以及公司在2022年2月23日的招股說明書和公司向加拿大證券監管機構提交的其他文件中 “風險因素” 標題下討論的因素,這些文件的副本可在SEDAR網站的公司簡介下找到。

Readers are cautioned not to place undue reliance on forward-looking information. The Company undertakes no obligation to update any of the forward-looking information in this news release except as otherwise required by law.

提醒讀者不要過分依賴前瞻性信息。除非法律另有要求,否則公司沒有義務更新本新聞稿中的任何前瞻性信息。

For further information, please contact:

欲了解更多信息,請聯繫:

Allan Frame
President and CEO
Tel: 403-470-8450
Email: allan.frame@beyondLithium.ca

艾倫框架
總裁兼首席執行官
電話:403-470-8450
電子郵件:allan.frame@beyondLithium.ca

Jason Frame
Manager of Communications
Tel: 587-225-2599
Email: jason.frame@beyondLithium.ca

傑森弗雷姆
傳播經理
電話:587-225-2599
電子郵件:jason.frame@beyondLithium.ca

To view the source version of this press release, please visit

要查看本新聞稿的源版本,請訪問

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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