AnorTech(0V0E)株式概要アノールテック社は、カナダとグリーンランドで鉱物資源の買収、探査、開発、採掘を行っている。 詳細0V0E ファンダメンタル分析スノーフレーク・スコア評価0/6将来の成長0/6過去の実績0/6財務の健全性6/6配当金0/6リスク分析意味のある時価総額がありません ( CA$13M )株式の流動性は非常に低い 収益が 100 万ドル未満 ( CA$0 )すべてのリスクチェックを見る0V0E Community Fair Values Create NarrativeSee what others think this stock is worth. Follow their fair value or set your own to get alerts.Your Fair ValueCA$Current PriceCA$0.07該当なし内在価値ディスカウントEst. Revenue$PastFuture-14m4m2016201920222025202620282031Revenue CA$1.0Earnings CA$0.1AdvancedSet Fair ValueView all narrativesAnorTech Inc. 競合他社Thor EnergySymbol: AIM:THRMarket cap: UK£7.0mLandore ResourcesSymbol: AIM:LNDMarket cap: UK£7.1mAjax ResourcesSymbol: OFEX:AJAXMarket cap: UK£7.4mPremier African MineralsSymbol: AIM:PREMMarket cap: UK£7.2m価格と性能株価の高値、安値、推移の概要AnorTech過去の株価現在の株価CA$0.0752週高値CA$0.0952週安値CA$0.035ベータ2.331ヶ月の変化0%3ヶ月変化n/a1年変化n/a3年間の変化180.00%5年間の変化-66.67%IPOからの変化-87.27%最新ニュースBoard Change • May 06Insufficient new directorsNo new directors have joined the board in the last 3 years. The company's board is composed of: No new directors. 5 experienced directors. No highly experienced directors. Independent Director Tony Harwood was the last director to join the board, commencing their role in 2020. The company’s insufficient board refreshment is considered a risk according to the Simply Wall St Risk Model.Board Change • Feb 11Insufficient new directorsNo new directors have joined the board in the last 3 years. The company's board is composed of: No new directors. 5 experienced directors. No highly experienced directors. Independent Director Tony Harwood was the last director to join the board, commencing their role in 2020. The company’s insufficient board refreshment is considered a risk according to the Simply Wall St Risk Model.お知らせ • Oct 10Anortech Expands High-Purity Anorthosite Footprint At Gronne Bjerg Project in GreenlandAnortech Inc. announced exceptional results of the 2025 field program on the Gronne Bjerg Anorthosite Project in Greenland. The program significantly expands the mapped size of the project and further confirms its potential as one of the world's most promising long-term sources of high purity, aluminum-bearing rock. This year's exploration focused on the mapping and sampling of previously unexplored areas of the Gronne Bjerg anorthosite complex. Results confirm the addition of continuous high purity anorthosite extending over 3.2 km in strike length, free from significant alteration or diking. Highlights include: Defined a 3.2 km surface extension of high purity anorthosite expanding the mapped footprint to 4.2 km x 2.3 km, with anorthosite exposed from sea level to 1,200 m elevation at the top of the mountain. Collected 30 representative samples from outcrop, analyzed by ALS (Ireland), returning average assays as follows: Al2O3: 31.9% Fe2O3: 0.94% Na2O: 1.8% CaO: 16.7% SiO2: 47.2% The consistently high purity and high-aluminum grades make Gronne Bjerg an ideal feed material for E-glass, sustainable aluminum applications and CO2 free cement. Environmental and Infrastructure Progress: Environmental Baseline Studies: WSP Denmark completed the second year of environmental baseline studies, including marine, terrestrial, and wildlife surveys. Combined with 2024's program data, these studies form the foundation for the project's Environmental Impact Assessment (EIA), which the Company expects to complete ahead of its 2026 exploitation license application. Port Access: Initial bathymetry studies have identified a potential deep-water port site only a few hundred meters from the potential mining area. This offers a unique logistical advantage, expected to reduce capital costs while minimize the project's environmental footprint.お知らせ • Oct 08AnorTech Inc., Annual General Meeting, Dec 02, 2025AnorTech Inc., Annual General Meeting, Dec 02, 2025. Location: british columbia, vancouver Canadaお知らせ • Jun 04AnorTech Inc. Announces Positive Results from Sustainable Cement R&D ProgramAnorTech Inc. announced the successful completion of the latest phase of its research and development (R&D) program focused on producing sustainable cement products using anorthosite from the Company's Gronne Bjerg Project in Greenland. The program, conducted by the Danish Technological Institute (DTI) in Copenhagen, focused on three high-pot potential product lines: Very low CO2 refractory cement, 3D printable anorthosite cement-based mortar formulations, and Very low CO2 concrete niche applications. DTI's testwork utilized 100% anorthosite in various size fractions, mixed with phosphoric acid (H3PO4) at varying concentrations to produce materials that were tested for performance across multiple applications. Fresh and mechanical properties were also evaluated to assess commercialization potential. Unlike Ordinary Portland Cement (OPC), AnorTech's process does not require clinker production, which emits approximately 0.9 tonnes of CO2 per tonne of OPC. As a result, AnorTech's cement applications can eliminate approximately 90% of CO2 emissions. Refractory Cement Testwork Highlights: Successfully cast anorthosite mortar prisms that withstanding multiple heating cycles at 1,200 degC for five hours without compromising structural integrity; Compressive strength was maintained, or even slightly increased, after thermal heating cycles with post-treatment strength exceeding 25.0 MPa; Two large slabs (10cm thick) were cast for extended refractory testing. One will be cut in half, with one half exposed to outdoor weathering for one year to assess long-term strength and microstructures evolution. 3D Printable Cement Testwork Highlights: More than 20 formulations were tested to determine the optimal mix for printability and structural buildability; The addition of viscosity-modifying admixture enhanced print quality and control; The program successfully printed multiple 3D structures, confirming proof of concept.お知らせ • Feb 12AnorTech Files Provisional Patent for Sustainable Smelter Grade Alumina ProductionANORTECH INC. announced that it has filed a provisional patent with the United States Patent and Trademark Office for its innovative process to produce sustainable smelter-grade alumina (SGA) from anorthosite (calcium aluminum silicate) with zero waste. AnorTech’s proprietary process meets the specifications of the major aluminum producers while eliminating tailings. The only byproducts of amorphous silica and calcium silicate are fully saleable. The patent application covers key innovations including iron reduction, aluminum chloride hexahydrate precipitation, and calcination. The aluminum industry currently depends on SGA derived from bauxite ore for aluminum production. The bauxite ore is processed using the Bayer process and in 2023 this yielded over 125 Mt/a of alumina (Al2O3), most of which was converted into aluminum metal using the Hall–Héroult smelting process. However, in 2023 this method also generated more than 175M tonnes of caustic red mud tailings, a major environmental challenge. The Company has delivered 25 tonnes of crushed anorthosite from its 100% owned Gronne Bjerg anorthosite project in Greenland to Ontario, Canada, in preparation for the pilot plant testing. AnorTech is also exploring partnerships with industry leaders to accelerate the commercialization of its technology.最新情報をもっと見るRecent updatesBoard Change • May 06Insufficient new directorsNo new directors have joined the board in the last 3 years. The company's board is composed of: No new directors. 5 experienced directors. No highly experienced directors. Independent Director Tony Harwood was the last director to join the board, commencing their role in 2020. The company’s insufficient board refreshment is considered a risk according to the Simply Wall St Risk Model.Board Change • Feb 11Insufficient new directorsNo new directors have joined the board in the last 3 years. The company's board is composed of: No new directors. 5 experienced directors. No highly experienced directors. Independent Director Tony Harwood was the last director to join the board, commencing their role in 2020. The company’s insufficient board refreshment is considered a risk according to the Simply Wall St Risk Model.お知らせ • Oct 10Anortech Expands High-Purity Anorthosite Footprint At Gronne Bjerg Project in GreenlandAnortech Inc. announced exceptional results of the 2025 field program on the Gronne Bjerg Anorthosite Project in Greenland. The program significantly expands the mapped size of the project and further confirms its potential as one of the world's most promising long-term sources of high purity, aluminum-bearing rock. This year's exploration focused on the mapping and sampling of previously unexplored areas of the Gronne Bjerg anorthosite complex. Results confirm the addition of continuous high purity anorthosite extending over 3.2 km in strike length, free from significant alteration or diking. Highlights include: Defined a 3.2 km surface extension of high purity anorthosite expanding the mapped footprint to 4.2 km x 2.3 km, with anorthosite exposed from sea level to 1,200 m elevation at the top of the mountain. Collected 30 representative samples from outcrop, analyzed by ALS (Ireland), returning average assays as follows: Al2O3: 31.9% Fe2O3: 0.94% Na2O: 1.8% CaO: 16.7% SiO2: 47.2% The consistently high purity and high-aluminum grades make Gronne Bjerg an ideal feed material for E-glass, sustainable aluminum applications and CO2 free cement. Environmental and Infrastructure Progress: Environmental Baseline Studies: WSP Denmark completed the second year of environmental baseline studies, including marine, terrestrial, and wildlife surveys. Combined with 2024's program data, these studies form the foundation for the project's Environmental Impact Assessment (EIA), which the Company expects to complete ahead of its 2026 exploitation license application. Port Access: Initial bathymetry studies have identified a potential deep-water port site only a few hundred meters from the potential mining area. This offers a unique logistical advantage, expected to reduce capital costs while minimize the project's environmental footprint.お知らせ • Oct 08AnorTech Inc., Annual General Meeting, Dec 02, 2025AnorTech Inc., Annual General Meeting, Dec 02, 2025. Location: british columbia, vancouver Canadaお知らせ • Jun 04AnorTech Inc. Announces Positive Results from Sustainable Cement R&D ProgramAnorTech Inc. announced the successful completion of the latest phase of its research and development (R&D) program focused on producing sustainable cement products using anorthosite from the Company's Gronne Bjerg Project in Greenland. The program, conducted by the Danish Technological Institute (DTI) in Copenhagen, focused on three high-pot potential product lines: Very low CO2 refractory cement, 3D printable anorthosite cement-based mortar formulations, and Very low CO2 concrete niche applications. DTI's testwork utilized 100% anorthosite in various size fractions, mixed with phosphoric acid (H3PO4) at varying concentrations to produce materials that were tested for performance across multiple applications. Fresh and mechanical properties were also evaluated to assess commercialization potential. Unlike Ordinary Portland Cement (OPC), AnorTech's process does not require clinker production, which emits approximately 0.9 tonnes of CO2 per tonne of OPC. As a result, AnorTech's cement applications can eliminate approximately 90% of CO2 emissions. Refractory Cement Testwork Highlights: Successfully cast anorthosite mortar prisms that withstanding multiple heating cycles at 1,200 degC for five hours without compromising structural integrity; Compressive strength was maintained, or even slightly increased, after thermal heating cycles with post-treatment strength exceeding 25.0 MPa; Two large slabs (10cm thick) were cast for extended refractory testing. One will be cut in half, with one half exposed to outdoor weathering for one year to assess long-term strength and microstructures evolution. 3D Printable Cement Testwork Highlights: More than 20 formulations were tested to determine the optimal mix for printability and structural buildability; The addition of viscosity-modifying admixture enhanced print quality and control; The program successfully printed multiple 3D structures, confirming proof of concept.お知らせ • Feb 12AnorTech Files Provisional Patent for Sustainable Smelter Grade Alumina ProductionANORTECH INC. announced that it has filed a provisional patent with the United States Patent and Trademark Office for its innovative process to produce sustainable smelter-grade alumina (SGA) from anorthosite (calcium aluminum silicate) with zero waste. AnorTech’s proprietary process meets the specifications of the major aluminum producers while eliminating tailings. The only byproducts of amorphous silica and calcium silicate are fully saleable. The patent application covers key innovations including iron reduction, aluminum chloride hexahydrate precipitation, and calcination. The aluminum industry currently depends on SGA derived from bauxite ore for aluminum production. The bauxite ore is processed using the Bayer process and in 2023 this yielded over 125 Mt/a of alumina (Al2O3), most of which was converted into aluminum metal using the Hall–Héroult smelting process. However, in 2023 this method also generated more than 175M tonnes of caustic red mud tailings, a major environmental challenge. The Company has delivered 25 tonnes of crushed anorthosite from its 100% owned Gronne Bjerg anorthosite project in Greenland to Ontario, Canada, in preparation for the pilot plant testing. AnorTech is also exploring partnerships with industry leaders to accelerate the commercialization of its technology.お知らせ • Aug 28AnorTech Inc., Annual General Meeting, Oct 30, 2024AnorTech Inc., Annual General Meeting, Oct 30, 2024. Location: british columbia, vancouver CanadaBoard Change • Aug 15Insufficient new directorsNo new directors have joined the board in the last 3 years. The company's board is composed of: No new directors. 5 experienced directors. No highly experienced directors. Independent Director Tony Harwood was the last director to join the board, commencing their role in 2020. The company’s insufficient board refreshment is considered a risk according to the Simply Wall St Risk Model.お知らせ • Jun 02Hudson Resources Inc. Announces Results from Initial Sampling At the Gronne Bjerg Anorthosite Project and Commencement of Green Alumina TestworkHudson Resources Inc. provided initial sampling results on the Company's 100% held Gronne Bjerg (Green Mountain) anorthosite project ("Project") in Greenland. The Company has also commenced testwork to produce a green alumina for the aluminum industry. Hudson is continuing to support Neo North Star Resources Inc. in its development of the Sarfartoq REE project where the Company has an interest. The Gronne Bjerg project, which was staked by Hudson in 2021, is approximately 80 km from Nuuk, the capital of Greenland, and favourably located on open tidewater. Hudson first sampled the Gronne Bjerg project in 2012 as part of a regional sampling program to identify the highest quality anorthosite targets in Greenland. This initial high-level sampling provided the best results of all anorthosites sampled, however the area was not available for staking at the time. In the fall of 2022, Hudson conducted a reconnaissance program at Gronne Bjerg which included the collection of 29 samples from outcrop over an area of 3.9 square kilometers. The samples were sent to ALS Laboratories in Canada for analysis and the results demonstrated a high aluminum content, low impurities, and excellent continuity over the area sampled. The average analysis for key elements for all the samples are as follows: Al(2) O(3) (al aluminum oxide): 32.06%; SiO(2) (silicodioxide): 47.24%; CaO (calcium oxidede): 14.98%; Na(2) O (sodium oxide): 2.27%; Fe(2) O(3). Based ot the high chemical quality of anorthosite sampled, Hudson has initiated a testwk program at SGS Lakefield in Canada to produce a green waste-free smelter grade alumina utilizing the flowsheet developed by the Company from 2013 through 2015. This significant testwork culminated in a robust Preliminary Economic Assessment (PEA) for specialty alumina production. The PEA demonstrated that a quality alumina product can be made while producing zero tailings and only useful by-products, compared to bauxite which produces almost four tonnes of caustic tailings per tonne of aluminum. The SGS testwork program will take approximately four months to complete with the objective of producing green alumina suitable as a feed material for aluminum producers. The Company is in discussions with industrial and technology groups to potentially partner on green alumina and green cement projects. This aligns perfectly with Hudson's core values in the creation of green products that they believe will attract ESG investors. Green Aluminum Hudson strongly believes that anorthosite is the future for green aluminium production which will increasingly be demanded by consumers. Global aluminum demand is expected to increase by almost 40 per cent by 2030 (CRU Report, May 2022). A recent World Bank report described aluminum as crucial for the energy transition as the metal is critical to solar power panels and electric vehicles. The amount of aluminum used in European cars increased by 18% from 174kg in 2019 to 205kg in 2022 according to automotive consultancy Ducker Carlisle (Mining.comMay 2023). The report predicts this trend will continue to increase to 256kg per vehicle by 2030. China currently accounts for 58% of global output of aluminum. Europe has traditionally relied on Russia for aluminum supply.CO2 Free Cement In 2016/2017 Hudson completed successful testwork to produce a CO2 free, heat resistant (refractory) and acid resistant white cement (see NR2018-01). The work was carried out at the University of British Columbia Ceramics and Refractories Research and Testing Laboratory. Hudson plans to commence additional testwork on cement application in 2023 and is in discussions with a number of research facilities capable of executing a testwork program.Neo North Star Resources Inc. As recently announced (see NR2023-01), Hudson has a potential 5% carried interest in the Sarfartoq REE project in Greenland partnered with Neo North Star Resources Inc. (NNSR), controlled by Neo Performance Materials. NNSR has commenced a significant field program at Sarfartoq REE project for 2023.株主還元0V0EGB Metals and MiningGB 市場7D0%-5.8%0.3%1Yn/a87.5%18.8%株主還元を見る業界別リターン: 0V0EがUK Metals and Mining業界に対してどのようなパフォーマンスを示したかを判断するにはデータが不十分です。リターン対市場: 0V0E UK市場に対してどのようなパフォーマンスを示したかを判断するにはデータが不十分です。価格変動Is 0V0E's price volatile compared to industry and market?0V0E volatility0V0E Average Weekly Movementn/aMetals and Mining Industry Average Movement9.2%Market Average Movement5.7%10% most volatile stocks in GB Market11.9%10% least volatile stocks in GB Market3.1%安定した株価: 0V0Eの株価は、 UK市場と比較して過去 3 か月間で変動しています。時間の経過による変動: 過去 1 年間の0V0Eのボラティリティの変化を判断するには データが不十分です。会社概要設立従業員CEO(最高経営責任者ウェブサイト2000n/aJim Cambonwww.anortechinc.comアノールテック社は、カナダとグリーンランドで鉱物資源の取得、探鉱、開発、採掘に従事している。同社は、グリーンランドにあるグロンネ・ビャルグ・アノーサイト・プロジェクトの100%権益を保有している。また、廃棄物を出さないアルミナ、CO2を出さないセメント、コンクリート蓄熱システムなどのアノーサイト鉱物製品も生産している。以前はハドソン・リソーシズ社として知られていたが、2024年3月にアノールテック社に社名変更。アノールテック社は2000年に法人化され、カナダのバンクーバーに本社を置いている。もっと見るAnorTech Inc. 基礎のまとめAnorTech の収益と売上を時価総額と比較するとどうか。0V0E 基礎統計学時価総額CA$12.71m収益(TTM)-CA$977.63k売上高(TTM)n/a0.0xP/Sレシオ-13.0xPER(株価収益率0V0E は割高か?公正価値と評価分析を参照収益と収入最新の決算報告書(TTM)に基づく主な収益性統計0V0E 損益計算書(TTM)収益CA$0売上原価CA$0売上総利益CA$0その他の費用CA$977.63k収益-CA$977.63k直近の収益報告Dec 31, 2025次回決算日該当なし一株当たり利益(EPS)-0.0054グロス・マージン0.00%純利益率0.00%有利子負債/自己資本比率0%0V0E の長期的なパフォーマンスは?過去の実績と比較を見るView Valuation企業分析と財務データの現状データ最終更新日(UTC時間)企業分析2026/05/22 17:25終値2026/05/06 00:00収益2025/12/31年間収益2025/03/31データソース企業分析に使用したデータはS&P Global Market Intelligence LLC のものです。本レポートを作成するための分析モデルでは、以下のデータを使用しています。データは正規化されているため、ソースが利用可能になるまでに時間がかかる場合があります。パッケージデータタイムフレーム米国ソース例会社財務10年損益計算書キャッシュ・フロー計算書貸借対照表SECフォーム10-KSECフォーム10-Qアナリストのコンセンサス予想+プラス3年予想財務アナリストの目標株価アナリストリサーチレポートBlue Matrix市場価格30年株価配当、分割、措置ICEマーケットデータSECフォームS-1所有権10年トップ株主インサイダー取引SECフォーム4SECフォーム13Dマネジメント10年リーダーシップ・チーム取締役会SECフォーム10-KSECフォームDEF 14A主な進展10年会社からのお知らせSECフォーム8-K* 米国証券を対象とした例であり、非米国証券については、同等の規制書式および情報源を使用。特に断りのない限り、すべての財務データは1年ごとの期間に基づいていますが、四半期ごとに更新されます。これは、TTM(Trailing Twelve Month)またはLTM(Last Twelve Month)データとして知られています。詳細はこちら。分析モデルとスノーフレーク本レポートを生成するために使用した分析モデルの詳細は当社のGithubページでご覧いただけます。また、レポートの使用方法に関するガイドやYoutubeのチュートリアルも掲載しています。シンプリー・ウォールストリート分析モデルを設計・構築した世界トップクラスのチームについてご紹介します。業界およびセクターの指標私たちの業界とセクションの指標は、Simply Wall Stによって6時間ごとに計算されます。アナリスト筋AnorTech Inc. 0 これらのアナリストのうち、弊社レポートのインプットとして使用した売上高または利益の予想を提出したのは、 。アナリストの投稿は一日中更新されます。0
Board Change • May 06Insufficient new directorsNo new directors have joined the board in the last 3 years. The company's board is composed of: No new directors. 5 experienced directors. No highly experienced directors. Independent Director Tony Harwood was the last director to join the board, commencing their role in 2020. The company’s insufficient board refreshment is considered a risk according to the Simply Wall St Risk Model.
Board Change • Feb 11Insufficient new directorsNo new directors have joined the board in the last 3 years. The company's board is composed of: No new directors. 5 experienced directors. No highly experienced directors. Independent Director Tony Harwood was the last director to join the board, commencing their role in 2020. The company’s insufficient board refreshment is considered a risk according to the Simply Wall St Risk Model.
お知らせ • Oct 10Anortech Expands High-Purity Anorthosite Footprint At Gronne Bjerg Project in GreenlandAnortech Inc. announced exceptional results of the 2025 field program on the Gronne Bjerg Anorthosite Project in Greenland. The program significantly expands the mapped size of the project and further confirms its potential as one of the world's most promising long-term sources of high purity, aluminum-bearing rock. This year's exploration focused on the mapping and sampling of previously unexplored areas of the Gronne Bjerg anorthosite complex. Results confirm the addition of continuous high purity anorthosite extending over 3.2 km in strike length, free from significant alteration or diking. Highlights include: Defined a 3.2 km surface extension of high purity anorthosite expanding the mapped footprint to 4.2 km x 2.3 km, with anorthosite exposed from sea level to 1,200 m elevation at the top of the mountain. Collected 30 representative samples from outcrop, analyzed by ALS (Ireland), returning average assays as follows: Al2O3: 31.9% Fe2O3: 0.94% Na2O: 1.8% CaO: 16.7% SiO2: 47.2% The consistently high purity and high-aluminum grades make Gronne Bjerg an ideal feed material for E-glass, sustainable aluminum applications and CO2 free cement. Environmental and Infrastructure Progress: Environmental Baseline Studies: WSP Denmark completed the second year of environmental baseline studies, including marine, terrestrial, and wildlife surveys. Combined with 2024's program data, these studies form the foundation for the project's Environmental Impact Assessment (EIA), which the Company expects to complete ahead of its 2026 exploitation license application. Port Access: Initial bathymetry studies have identified a potential deep-water port site only a few hundred meters from the potential mining area. This offers a unique logistical advantage, expected to reduce capital costs while minimize the project's environmental footprint.
お知らせ • Oct 08AnorTech Inc., Annual General Meeting, Dec 02, 2025AnorTech Inc., Annual General Meeting, Dec 02, 2025. Location: british columbia, vancouver Canada
お知らせ • Jun 04AnorTech Inc. Announces Positive Results from Sustainable Cement R&D ProgramAnorTech Inc. announced the successful completion of the latest phase of its research and development (R&D) program focused on producing sustainable cement products using anorthosite from the Company's Gronne Bjerg Project in Greenland. The program, conducted by the Danish Technological Institute (DTI) in Copenhagen, focused on three high-pot potential product lines: Very low CO2 refractory cement, 3D printable anorthosite cement-based mortar formulations, and Very low CO2 concrete niche applications. DTI's testwork utilized 100% anorthosite in various size fractions, mixed with phosphoric acid (H3PO4) at varying concentrations to produce materials that were tested for performance across multiple applications. Fresh and mechanical properties were also evaluated to assess commercialization potential. Unlike Ordinary Portland Cement (OPC), AnorTech's process does not require clinker production, which emits approximately 0.9 tonnes of CO2 per tonne of OPC. As a result, AnorTech's cement applications can eliminate approximately 90% of CO2 emissions. Refractory Cement Testwork Highlights: Successfully cast anorthosite mortar prisms that withstanding multiple heating cycles at 1,200 degC for five hours without compromising structural integrity; Compressive strength was maintained, or even slightly increased, after thermal heating cycles with post-treatment strength exceeding 25.0 MPa; Two large slabs (10cm thick) were cast for extended refractory testing. One will be cut in half, with one half exposed to outdoor weathering for one year to assess long-term strength and microstructures evolution. 3D Printable Cement Testwork Highlights: More than 20 formulations were tested to determine the optimal mix for printability and structural buildability; The addition of viscosity-modifying admixture enhanced print quality and control; The program successfully printed multiple 3D structures, confirming proof of concept.
お知らせ • Feb 12AnorTech Files Provisional Patent for Sustainable Smelter Grade Alumina ProductionANORTECH INC. announced that it has filed a provisional patent with the United States Patent and Trademark Office for its innovative process to produce sustainable smelter-grade alumina (SGA) from anorthosite (calcium aluminum silicate) with zero waste. AnorTech’s proprietary process meets the specifications of the major aluminum producers while eliminating tailings. The only byproducts of amorphous silica and calcium silicate are fully saleable. The patent application covers key innovations including iron reduction, aluminum chloride hexahydrate precipitation, and calcination. The aluminum industry currently depends on SGA derived from bauxite ore for aluminum production. The bauxite ore is processed using the Bayer process and in 2023 this yielded over 125 Mt/a of alumina (Al2O3), most of which was converted into aluminum metal using the Hall–Héroult smelting process. However, in 2023 this method also generated more than 175M tonnes of caustic red mud tailings, a major environmental challenge. The Company has delivered 25 tonnes of crushed anorthosite from its 100% owned Gronne Bjerg anorthosite project in Greenland to Ontario, Canada, in preparation for the pilot plant testing. AnorTech is also exploring partnerships with industry leaders to accelerate the commercialization of its technology.
Board Change • May 06Insufficient new directorsNo new directors have joined the board in the last 3 years. The company's board is composed of: No new directors. 5 experienced directors. No highly experienced directors. Independent Director Tony Harwood was the last director to join the board, commencing their role in 2020. The company’s insufficient board refreshment is considered a risk according to the Simply Wall St Risk Model.
Board Change • Feb 11Insufficient new directorsNo new directors have joined the board in the last 3 years. The company's board is composed of: No new directors. 5 experienced directors. No highly experienced directors. Independent Director Tony Harwood was the last director to join the board, commencing their role in 2020. The company’s insufficient board refreshment is considered a risk according to the Simply Wall St Risk Model.
お知らせ • Oct 10Anortech Expands High-Purity Anorthosite Footprint At Gronne Bjerg Project in GreenlandAnortech Inc. announced exceptional results of the 2025 field program on the Gronne Bjerg Anorthosite Project in Greenland. The program significantly expands the mapped size of the project and further confirms its potential as one of the world's most promising long-term sources of high purity, aluminum-bearing rock. This year's exploration focused on the mapping and sampling of previously unexplored areas of the Gronne Bjerg anorthosite complex. Results confirm the addition of continuous high purity anorthosite extending over 3.2 km in strike length, free from significant alteration or diking. Highlights include: Defined a 3.2 km surface extension of high purity anorthosite expanding the mapped footprint to 4.2 km x 2.3 km, with anorthosite exposed from sea level to 1,200 m elevation at the top of the mountain. Collected 30 representative samples from outcrop, analyzed by ALS (Ireland), returning average assays as follows: Al2O3: 31.9% Fe2O3: 0.94% Na2O: 1.8% CaO: 16.7% SiO2: 47.2% The consistently high purity and high-aluminum grades make Gronne Bjerg an ideal feed material for E-glass, sustainable aluminum applications and CO2 free cement. Environmental and Infrastructure Progress: Environmental Baseline Studies: WSP Denmark completed the second year of environmental baseline studies, including marine, terrestrial, and wildlife surveys. Combined with 2024's program data, these studies form the foundation for the project's Environmental Impact Assessment (EIA), which the Company expects to complete ahead of its 2026 exploitation license application. Port Access: Initial bathymetry studies have identified a potential deep-water port site only a few hundred meters from the potential mining area. This offers a unique logistical advantage, expected to reduce capital costs while minimize the project's environmental footprint.
お知らせ • Oct 08AnorTech Inc., Annual General Meeting, Dec 02, 2025AnorTech Inc., Annual General Meeting, Dec 02, 2025. Location: british columbia, vancouver Canada
お知らせ • Jun 04AnorTech Inc. Announces Positive Results from Sustainable Cement R&D ProgramAnorTech Inc. announced the successful completion of the latest phase of its research and development (R&D) program focused on producing sustainable cement products using anorthosite from the Company's Gronne Bjerg Project in Greenland. The program, conducted by the Danish Technological Institute (DTI) in Copenhagen, focused on three high-pot potential product lines: Very low CO2 refractory cement, 3D printable anorthosite cement-based mortar formulations, and Very low CO2 concrete niche applications. DTI's testwork utilized 100% anorthosite in various size fractions, mixed with phosphoric acid (H3PO4) at varying concentrations to produce materials that were tested for performance across multiple applications. Fresh and mechanical properties were also evaluated to assess commercialization potential. Unlike Ordinary Portland Cement (OPC), AnorTech's process does not require clinker production, which emits approximately 0.9 tonnes of CO2 per tonne of OPC. As a result, AnorTech's cement applications can eliminate approximately 90% of CO2 emissions. Refractory Cement Testwork Highlights: Successfully cast anorthosite mortar prisms that withstanding multiple heating cycles at 1,200 degC for five hours without compromising structural integrity; Compressive strength was maintained, or even slightly increased, after thermal heating cycles with post-treatment strength exceeding 25.0 MPa; Two large slabs (10cm thick) were cast for extended refractory testing. One will be cut in half, with one half exposed to outdoor weathering for one year to assess long-term strength and microstructures evolution. 3D Printable Cement Testwork Highlights: More than 20 formulations were tested to determine the optimal mix for printability and structural buildability; The addition of viscosity-modifying admixture enhanced print quality and control; The program successfully printed multiple 3D structures, confirming proof of concept.
お知らせ • Feb 12AnorTech Files Provisional Patent for Sustainable Smelter Grade Alumina ProductionANORTECH INC. announced that it has filed a provisional patent with the United States Patent and Trademark Office for its innovative process to produce sustainable smelter-grade alumina (SGA) from anorthosite (calcium aluminum silicate) with zero waste. AnorTech’s proprietary process meets the specifications of the major aluminum producers while eliminating tailings. The only byproducts of amorphous silica and calcium silicate are fully saleable. The patent application covers key innovations including iron reduction, aluminum chloride hexahydrate precipitation, and calcination. The aluminum industry currently depends on SGA derived from bauxite ore for aluminum production. The bauxite ore is processed using the Bayer process and in 2023 this yielded over 125 Mt/a of alumina (Al2O3), most of which was converted into aluminum metal using the Hall–Héroult smelting process. However, in 2023 this method also generated more than 175M tonnes of caustic red mud tailings, a major environmental challenge. The Company has delivered 25 tonnes of crushed anorthosite from its 100% owned Gronne Bjerg anorthosite project in Greenland to Ontario, Canada, in preparation for the pilot plant testing. AnorTech is also exploring partnerships with industry leaders to accelerate the commercialization of its technology.
お知らせ • Aug 28AnorTech Inc., Annual General Meeting, Oct 30, 2024AnorTech Inc., Annual General Meeting, Oct 30, 2024. Location: british columbia, vancouver Canada
Board Change • Aug 15Insufficient new directorsNo new directors have joined the board in the last 3 years. The company's board is composed of: No new directors. 5 experienced directors. No highly experienced directors. Independent Director Tony Harwood was the last director to join the board, commencing their role in 2020. The company’s insufficient board refreshment is considered a risk according to the Simply Wall St Risk Model.
お知らせ • Jun 02Hudson Resources Inc. Announces Results from Initial Sampling At the Gronne Bjerg Anorthosite Project and Commencement of Green Alumina TestworkHudson Resources Inc. provided initial sampling results on the Company's 100% held Gronne Bjerg (Green Mountain) anorthosite project ("Project") in Greenland. The Company has also commenced testwork to produce a green alumina for the aluminum industry. Hudson is continuing to support Neo North Star Resources Inc. in its development of the Sarfartoq REE project where the Company has an interest. The Gronne Bjerg project, which was staked by Hudson in 2021, is approximately 80 km from Nuuk, the capital of Greenland, and favourably located on open tidewater. Hudson first sampled the Gronne Bjerg project in 2012 as part of a regional sampling program to identify the highest quality anorthosite targets in Greenland. This initial high-level sampling provided the best results of all anorthosites sampled, however the area was not available for staking at the time. In the fall of 2022, Hudson conducted a reconnaissance program at Gronne Bjerg which included the collection of 29 samples from outcrop over an area of 3.9 square kilometers. The samples were sent to ALS Laboratories in Canada for analysis and the results demonstrated a high aluminum content, low impurities, and excellent continuity over the area sampled. The average analysis for key elements for all the samples are as follows: Al(2) O(3) (al aluminum oxide): 32.06%; SiO(2) (silicodioxide): 47.24%; CaO (calcium oxidede): 14.98%; Na(2) O (sodium oxide): 2.27%; Fe(2) O(3). Based ot the high chemical quality of anorthosite sampled, Hudson has initiated a testwk program at SGS Lakefield in Canada to produce a green waste-free smelter grade alumina utilizing the flowsheet developed by the Company from 2013 through 2015. This significant testwork culminated in a robust Preliminary Economic Assessment (PEA) for specialty alumina production. The PEA demonstrated that a quality alumina product can be made while producing zero tailings and only useful by-products, compared to bauxite which produces almost four tonnes of caustic tailings per tonne of aluminum. The SGS testwork program will take approximately four months to complete with the objective of producing green alumina suitable as a feed material for aluminum producers. The Company is in discussions with industrial and technology groups to potentially partner on green alumina and green cement projects. This aligns perfectly with Hudson's core values in the creation of green products that they believe will attract ESG investors. Green Aluminum Hudson strongly believes that anorthosite is the future for green aluminium production which will increasingly be demanded by consumers. Global aluminum demand is expected to increase by almost 40 per cent by 2030 (CRU Report, May 2022). A recent World Bank report described aluminum as crucial for the energy transition as the metal is critical to solar power panels and electric vehicles. The amount of aluminum used in European cars increased by 18% from 174kg in 2019 to 205kg in 2022 according to automotive consultancy Ducker Carlisle (Mining.comMay 2023). The report predicts this trend will continue to increase to 256kg per vehicle by 2030. China currently accounts for 58% of global output of aluminum. Europe has traditionally relied on Russia for aluminum supply.CO2 Free Cement In 2016/2017 Hudson completed successful testwork to produce a CO2 free, heat resistant (refractory) and acid resistant white cement (see NR2018-01). The work was carried out at the University of British Columbia Ceramics and Refractories Research and Testing Laboratory. Hudson plans to commence additional testwork on cement application in 2023 and is in discussions with a number of research facilities capable of executing a testwork program.Neo North Star Resources Inc. As recently announced (see NR2023-01), Hudson has a potential 5% carried interest in the Sarfartoq REE project in Greenland partnered with Neo North Star Resources Inc. (NNSR), controlled by Neo Performance Materials. NNSR has commenced a significant field program at Sarfartoq REE project for 2023.