Apex Samples 393 Mg/L of Li From The Lithium Creek Project
Apex Samples 393 Mg/L of Li From The Lithium Creek Project
Vancouver, British Columbia--(Newsfile Corp. - October 3, 2024) - Apex Resources Inc. (TSXV: APX) ("Apex" or the "Company") is excited to announce analytical results from fluid samples recently collected from the Company's Lithium Creek Project (the "Project"), located in Churchill County, Nevada. The Project consists of 10 incontiguous blocks of placer claims covering approximately 4,720 acres and adjacent lands within the aerially extensive Fernley and Carson Sinks. These sinks have large expansive playas and lay within large hydrographic basins with a combined area of approximately 1.4 million-acres. The fluid samples were collected from Lithium Creek, a historic well, and shallow hand-dug auger holes that were excavated 1-2 meters below ground surface using hand tools throughout the Project area. The analytical results of the fluid samples show lithium values ranging from 393 milligrams per liter (mg/L) to 4.65 mg/L, with more than half (55%) of the samples higher than 50 mg/L.
不列颠哥伦比亚省温哥华--(Newsfile Corp.,2024年10月3日)——Apex Resources Inc.(多伦多证券交易所股票代码:APX)(“Apex” 或 “公司”)很高兴地宣布最近从该公司位于内华达州丘吉尔县的锂溪项目(“项目”)中采集的流体样本的分析结果。该项目由10个不连续的砂矿主张区块组成,占地约4,720英亩,以及空中广阔的费恩利和卡森水槽内的邻近土地。这些水槽有广阔的广阔区域,位于大型水文盆地内,总面积约为140万英亩。流体样本是从历史井Lithium Creek和在整个项目区域使用手工工具在地表以下1-2米处挖掘的浅层手工钻孔中采集的。液体样品的分析结果显示,锂值从每升393毫克(mg/L)到4.65 mg/L不等,超过一半(55%)的样品高于50 mg/L。
The fluid samples were collected from playas where the shallow groundwater could be accessed using hand tools. The sample locations were separated by sufficient distances to examine the potential for the lateral distribution of lithium enriched brines. Fluid samples were collected from 20 shallow hand augured test holes, one (1) historic well remnant of the old salt works operation, and one (1) sample of surface water was collected from Lithium Creek. Two (2) duplicate samples and one (1) field blank sample were collected for Quality Assurance/Quality Control (QA/QC) purposes in accordance with the sampling and analytical plan for the Project. Table 1 below provides a tabulation of the analytical results for the samples collected.
液体样本是从可以用手工工具进入浅层地下水的游乐场采集的。样本位置间隔了足够的距离,足以检查富锂盐水横向分布的可能性。从20个浅水试井中采集了流体样本,一(1)口盐厂运营的历史遗迹,从Lithium Creek采集了一(1)个地表水样本。根据该项目的抽样和分析计划,为质量保证/质量控制(QA/QC)目的收集了两(2)个重复样本和一(1)个现场空白样本。下表1列出了所收集样本的分析结果。
Table 1: Lithium Creek Project Shallow Groundwater Analytical Results
表 1:Lithium Creek 项目浅层地下水分析结果
Sample ID | Lithium (mg/L) |
Boron (mg/L) |
Potassium (mg/L) |
TDS* (ppm) |
Claim Block |
Sample Type |
Comments |
LiCk-8-082024 | 393 | 774 | 17,900 | 175,290 | ESW-BOR | Brine | Shallow Test Hole |
LiCk-29-082124 | 310 | 222 | 7,240 | 167,995 | ESW-BOR | Brine | Shallow Test Hole |
LiCk-9-082124 | 163 | 178 | 6220 | 158,096 | ESW-BOR | Brine | Shallow Test Hole |
LiCk-12-082124 | 112 | 111 | 6,640 | 123,770 | ESW-BOR | Brine | Shallow Test Hole |
DSW-25-082324 | 104 | 283 | 11,200 | 156,386 | CS | Brine | Shallow Test Hole |
LiCk-6-082124 | 85.4 | 186 | 3,550 | 118,223 | ESW-BOR | Brine | Shallow Test Hole |
Parker-1-082024 | 64.2 | 108 | 3,250 | 80,258 | ESW-BOR | Brine | Historic Well |
DSW-15-082324 | 61.9 | 155 | 5,260 | 146,561 | DSW | Brine | Shallow Test Hole |
LiCk-1-082324 | 61.7 | 61.4 | 3,850 | 123,835 | ESW-S | Brine | Shallow Test Hole |
LiCk-11-082124 | 58.2 | 268 | 2,660 | 91,075 | ESW-BOR | Brine | Shallow Test Hole |
LiCk-10-082324 | 58.1 | 16.1 | 3,100 | 133,268 | ESW-BOR | Brine | Shallow Test Hole |
LiCk-13-082124 | 52.7 | 74.1 | 2,850 | 97,160 | ESW-BOR | Brine | Shallow Test Hole |
DSW-14-082324 | 40.5 | 109 | 4,560 | 134,104 | DSW | Brine | Shallow Test Hole |
DSW-18-082324 | 37.7 | 58.3 | 4,730 | 126,248 | CS | Brine | Shallow Test Hole |
LiCk-4X-082324 | 26.2 | 29.3 | 2,270 | 92,127 | ESW-S | Brine | Duplicate of LiCk-4 |
LiCk-4-082324 | 23.8 | 30.4 | 2,220 | 92,127 | ESW-S | Brine | Shallow Test Hole |
DSW-20-082324 | 23 | 87.7 | 2,720 | 86,345 | DSW | Brine | Shallow Test Hole |
DSW-19-082324 | 22.8 | 55 | 3,340 | 105,192 | CS | Brine | Shallow Test Hole |
DSW-23-082324 | 20.4 | 79.5 | 2,280 | 74,863 | CS | Brine | Shallow Test Hole |
DSW-22X-082324 | 13.3 | 128 | 2,910 | 143,971 | DSW | Brine | Duplicate of DSW-22 |
DSW-22-082324 | 12.8 | 127 | 2,870 | 143,971 | DSW | Brine | Shallow Test Hole |
DSW-28-082324 | 6.93 | 49.6 | 782 | 22,448 | CS | Brackish Water | Shallow Test Hole |
DSW-26-082324 | 6.92 | 58.9 | 675 | 24,151 | CS | Brackish Water | Shallow Test Hole |
LC1-082024 | 4.65 | 6.77 | 445 | 31,290 | ESW-BOR | Brackish Water | Li Creek (Surface Water) |
DSW-30-082324 | <0.40 | <2.0 | <20 | - | -- | Fresh Water | Blank Sample |
Notes: Analytical results are reported in milligrams per liter (mg/L). | |||||||
The results have been tabulated in order from highest to lowest lithium concentration. | |||||||
* TDS - Total Dissolved Solids: measured in the field using a calibrated multiparameter sonde |
样本编号 | 锂 (mg/L) |
硼 (mg/L) |
钾 (mg/L) |
TDS* (ppm) |
索赔 阻止 |
样本 类型 |
评论意见 |
lick-8-082024 | 393 | 774 | 17,900 | 175,290 | ESW-BOR | 盐水 | 浅测试孔 |
lick-29-082124 | 310 | 222 | 7,240 | 167,995 | ESW-BOR | 盐水 | 浅测试孔 |
lick-9-082124 | 163 | 178 | 6220 | 158,096 | ESW-BOR | 盐水 | 浅测试孔 |
lick-12-082124 | 112 | 111 | 6,640 | 123,770 | ESW-BOR | 盐水 | 浅测试孔 |
DSW-25-082324 | 104 | 283 | 11,200 | 156,386 | CS | 盐水 | 浅测试孔 |
lick-6-082124 | 85.4 | 186 | 3,550 | 118,223 | ESW-BOR | 盐水 | 浅测试孔 |
Parker-1-082024 | 64.2 | 108 | 3,250 | 80,258 | ESW-BOR | 盐水 | 历史之井 |
DSW-15-082324 | 61.9 | 155 | 5,260 | 146,561 | DSW | 盐水 | 浅测试孔 |
lick-1-082324 | 61.7 | 61.4 | 3,850 | 123,835 | ESW-S | 盐水 | 浅测试孔 |
lick-11-082124 | 58.2 | 268 | 2,660 | 91,075 | ESW-BOR | 盐水 | 浅测试孔 |
lick-10-082324 | 58.1 | 16.1 | 3,100 | 133,268 | ESW-BOR | 盐水 | 浅测试孔 |
lick-13-082124 | 52.7 | 74.1 | 2,850 | 97,160 | ESW-BOR | 盐水 | 浅测试孔 |
DSW-14-082324 | 40.5 | 109 | 4,560 | 134,104 | DSW | 盐水 | 浅测试孔 |
DSW-18-082324 | 37.7 | 58.3 | 4,730 | 126,248 | CS | 盐水 | 浅测试孔 |
lick-4x-082324 | 26.2 | 29.3 | 2,270 | 92,127 | ESW-S | 盐水 | lick-4 的副本 |
lick-4-082324 | 23.8 | 30.4 | 2,220 | 92,127 | ESW-S | 盐水 | 浅测试孔 |
DSW-20-082324 | 23 | 87.7 | 2,720 | 86,345 | DSW | 盐水 | 浅测试孔 |
DSW-19-082324 | 22.8 | 55 | 3,340 | 105,192 | CS | 盐水 | 浅测试孔 |
DSW-23-082324 | 20.4 | 79.5 | 2,280 | 74,863 | CS | 盐水 | 浅测试孔 |
DSW-22X-082324 | 13.3 | 128 | 2,910 | 143,971 | DSW | 盐水 | DSW-22 的副本 |
DSW-22-082324 | 12.8 | 127 | 2,870 | 143,971 | DSW | 盐水 | 浅测试孔 |
DSW-28-082324 | 6.93 | 49.6 | 782 | 22,448 | CS | 苦咸水 | 浅测试孔 |
DSW-26-082324 | 6.92 | 58.9 | 675 | 24,151 | CS | 苦咸水 | 浅测试孔 |
LC1-082024 | 4.65 | 6.77 | 445 | 31,290 | ESW-BOR | 苦咸水 | Li Creek(地表水) |
DSW-30-082324 | - | -- | 淡水 | 空白样本 | |||
注意:分析结果以毫克每升(mg/L)为单位报告。 | |||||||
结果已按锂浓度从最高到最低的顺序列出。 | |||||||
* TDS-溶解固体总量:使用经过校准的多参数探头在野外测量 |
Lithium was detected in all samples. Duplicate and field blank samples were submitted to evaluate the quality control standards for the Project in addition to the Western Environmental Testing Laboratory (WET Lab) QC Report for the samples analyzed. Analytical results for over half of the fluid samples indicate lithium concentrations at the Project exceed 50 mg/L, providing further indications that lithium bearing brine deposits exist within the Project area. For samples with lithium concentrations over 100 mg/L, the Company will recollect and analyze confirmatory samples for validation.
在所有样本中均检测到锂。除了西部环境测试实验室(WET Lab)对所分析样品的质量控制报告外,还提交了重复的空白样本以评估该项目的质量控制标准。超过一半的液体样本的分析结果表明,该项目的锂浓度超过50 mg/L,这进一步表明项目区域内存在含锂盐水的沉积物。对于锂浓度超过100 mg/L的样品,公司将回收和分析确认样本以进行验证。
A cut-off grade of approximately 50 mg/L has been adopted for several lithium brine projects in North America, as noted in publicly-filed technical reports filed for Albemarle's Silver Peak Project in Clayton Valley, Nevada[1] and Lithium Bank Resources Corp.'s Park Place Lithium-brine property in west-central Alberta, Canada[2]. Cut-off grades are, however, unique to the specific project and a cut-off grade has not been determined for the Lithium Creek Project.
正如为内华达州克莱顿谷的雅宝银峰项目 [1] 和锂银行资源公司提交的公开提交的技术报告所指出的那样,北美的几个锂盐水项目采用了约50 mg/L的临界等级位于加拿大艾伯塔省中西部的帕克广场锂盐地产 [2]。但是,截止等级是特定项目所独有的,Lithium Creek项目的截止等级尚未确定。
Laboratory analytical results and measurements of Total Dissolved Solids (TDS) collected in the field indicate most of the shallow groundwater encountered in the playa sediments at the Project are classifiable as lithium-brines. These data provide compelling evidence of the potential for regional large scale lithium enriched brine aquifers or reservoirs to exist at the Project.
现场收集的实验室分析结果和总溶解固体(TDS)测量结果表明,该项目在普拉亚沉积物中遇到的大多数浅层地下水都可归类为锂盐水。这些数据提供了令人信服的证据,表明该项目有可能存在区域大规模富锂盐水含水层或水库。
A total of 25 fluid samples were submitted to WET Lab in Sparks, Nevada under Chain of Custody in accordance with the sampling and analytical plan for the Project. WET Lab is an independent and certified laboratory in the state of Nevada. The data and information contained in the WET Lab analytical report were generated using specified or selected methods contained in their references, such as Standard Methods for the Examination of Water and Wastewater, online edition; Methods for Determination of Organic Compounds in Drinking Water, EPA-600/4-79-020; and Test Methods for Evaluation of Solid Waste, Physical/Chemical Methods (SW846) Third Edition. Total metals including lithium, boron, potassium and sodium were analyzed using EPA Method 200.7. EPA Method 200.7 was approved for use as axial view of ICP-OES and is the required EPA method for compliance monitoring by ICP-OES. ICP-OES is preferred for analysis of samples with high total dissolved solids (TDS) or suspended solids.
根据该项目的取样和分析计划,共向内华达州斯帕克斯的Wet实验室提交了25份流体样本,该实验室采用了监管链。Wet Lab 是内华达州的一家独立且经过认证的实验室。Wet Lab分析报告中包含的数据和信息是使用其参考文献中规定的或选定的方法生成的,例如水和废水检查标准方法,在线版;饮用水中有机化合物的测定方法,EPA-600/4-79-020;以及固体废物评估的测试方法,物理/化学方法(SW846)第三版。使用美国环保署方法200.7对包括锂、硼、钾和钠在内的金属总量进行了分析。美国环保局方法 200.7 获准用作 ICP-OES 的轴向视图,是 ICP-OES 合规性监测的必需的 EPA 方法。ICP-OES 是分析总溶解固体 (TDS) 或悬浮固体含量高的样品的首选。
This news release has been prepared in accordance with Canadian regulatory requirements as set out in National Instrument 43-101 and the scientific and technical information herein was reviewed and approved by Geoffrey Baldwin, PG., SME-RM., who is a consulting geologist for Apex and who acts as Apex's Qualified Person.
本新闻稿是根据National Instrument 43-101规定的加拿大监管要求编写的,此处的科学和技术信息已由Geoffrey Baldwin, PG.,SME-RM. 的审查和批准,他是Apex的咨询地质学家,也是Apex的合格人士。
About Apex Resources Inc.
Apex is a mineral exploration company engaged in the business of the acquisition, exploration and development of mineral resource properties. Apex has an option to acquire the Lithium Creek Property located in Churchill County, Nevada, USA and is currently conducting lithium brine exploration on the Project with a view to identifying and defining drill targets with high potential to penetrate lithium brine bearing aquifers.
关于 Apex Resources Inc.
Apex是一家矿产勘探公司,从事矿产资源地产的收购、勘探和开发业务。Apex可以选择收购位于美国内华达州丘吉尔县的Lithium Creek地产,目前正在对该项目进行锂盐水勘探,以期确定和确定极有可能穿透含锂盐水的含水层的钻探目标。
On Behalf of the Board of Directors of
代表董事会
Apex Resources Inc.
Apex 资源公司
Ron Lang,
President and CEO
罗恩·朗,
总裁兼首席执行官
Ph. +1(250) 212-7119 or info@apxresources.com website:
Ph. +1 (250) 212-7119 或 info@apxresources.com 网站:
Neither TSX Venture Exchange nor its Regulation Services Provider (as that term in defined in the policies of the TSX Venture Exchange) accepts responsibility for the adequacy or accuracy of this press release.
多伦多证券交易所风险交易所及其监管服务提供商(该术语在多伦多证券交易所风险交易所的政策中定义)均不对本新闻稿的充分性或准确性承担责任。
CAUTIONARY NOTE REGARDING FORWARD-LOOKING STATEMENTS: This news release may contain forward-looking information within the meaning of applicable securities laws ("forward-looking statements"), such as statements relating to the potential existence of lithium bearing brine deposits on the Project. Forward-looking statements are statements that are not historical facts and are generally, but not always, identified by the words "expects," "plans," "anticipates," "believes," "intends," "estimates," 'projects," "potential" and similar expressions, or that events or conditions "will," "would," "may," "could" or "should" occur. These forward-looking statements are subject to a variety of risks and uncertainties which could cause actual events or results to differ materially from those reflected in the forward-looking statements, including, without limitation: risks related to fluctuations in metal prices; uncertainties related to raising sufficient financing to fund exploration work in a timely manner and on acceptable terms; changes in planned work resulting from weather, logistical, technical or other factors; the possibility that results of work will not fulfill expectations and realize the perceived potential of the Project; risk of accidents, equipment breakdowns and labour disputes or other unanticipated difficulties or interruptions; the possibility of cost overruns or unanticipated expenses in conducting work programs; the risk of environmental contamination or damage resulting from Apex's operations and other risks and uncertainties. Any forward-looking statement speaks only as of the date it is made and, except as may be required by applicable securities laws, the Company disclaims any intent or obligation to update any forward-looking statement, whether as a result of new information, future events or results or otherwise.
关于前瞻性陈述的警示说明:本新闻稿可能包含适用证券法(“前瞻性陈述”)所指的前瞻性信息,例如与项目中可能存在的含锂盐水矿床有关的陈述。前瞻性陈述不是历史事实,通常以 “期望”、“计划”、“预期”、“相信”、“打算”、“估计”、“项目”、“潜力” 和类似表述来识别,或者事件或条件 “将”、“会”、“可能” 或 “应该” 发生。这些前瞻性陈述受各种风险和不确定性的影响,可能导致实际事件或结果与前瞻性陈述中反映的事件或结果存在重大差异,包括但不限于:与金属价格波动相关的风险;与及时筹集足够资金以可接受的条件为勘探工作提供资金相关的不确定性;天气、后勤、技术或其他因素导致的计划工作变动;工作结果无法达到预期的可能性以及意识到项目的潜在潜力;发生事故、设备故障和劳资纠纷或其他意想不到的困难或中断的风险;执行工作计划时出现成本超支或意外支出的可能性;Apex运营造成的环境污染或损害的风险以及其他风险和不确定性。任何前瞻性陈述仅代表其发表之日,除非适用的证券法另有要求,否则公司不承担任何更新任何前瞻性陈述的意图或义务,无论是由于新信息、未来事件或业绩还是其他原因。
[1] SEC Technical Report Summary - Pre-Feasibility Study - Silver Peak Lithium Operation- Nevada, USA dated February 14, 2023.
[1] 美国证券交易委员会技术报告摘要——预可行性研究——银峰锂业运营——美国内华达州,2023年2月14日。
[2] Lithium Bank Resources Corp. Park Place NI 43-101 Technical Report with an effective date of June 24, 2024.
[2] Lithium Bank Resources Corp. Park Place NI 43-101技术报告,生效日期为2024年6月24日。
译文内容由第三方软件翻译。