AE Fuels(NRGF.F)株式概要AEフューエルズ・コーポレーションは、オーストラリア、米国、欧州連合で電池用鉱物の抽出・精製を行っている。 詳細NRGF.F ファンダメンタル分析スノーフレーク・スコア評価2/6将来の成長0/6過去の実績0/6財務の健全性5/6配当金0/6リスク分析株式の流動性は非常に低い 収益が 100 万ドル未満 ( CA$0 )意味のある時価総額がありません ( $5M )すべてのリスクチェックを見るNRGF.F Community Fair Values Create NarrativeSee what others think this stock is worth. Follow their fair value or set your own to get alerts.Your Fair ValueUS$Current PriceUS$0.13該当なし内在価値ディスカウントEst. Revenue$PastFuture-2m12016201920222025202620282031Revenue CA$1.0Earnings CA$0.1AdvancedSet Fair ValueView all narrativesAE Fuels Corporation 競合他社China Natural ResourcesSymbol: NasdaqCM:CHNRMarket cap: US$5.3mLithiumSymbol: OTCPK:LTUMMarket cap: US$5.5mGungnir ResourcesSymbol: OTCPK:ASWR.FMarket cap: US$3.8mGoldrea ResourcesSymbol: OTCPK:GORA.FMarket cap: US$2.8m価格と性能株価の高値、安値、推移の概要AE Fuels過去の株価現在の株価CA$0.1352週高値CA$0.4152週安値CA$0.12ベータ-0.281ヶ月の変化-2.26%3ヶ月変化n/a1年変化n/a3年間の変化n/a5年間の変化n/aIPOからの変化-46.94%最新ニュースお知らせ • 2hAE Fuels Corporation Achieves 95-99% Manganese Recovery And Produces Battery-Grade HPMSM Crystals From Continuous Mini-Pilot TestingAE Fuels Corporation announced positive results from mini-pilot testing undertaken by Australia's national science agency, CSIRO. The program successfully demonstrated a scalable purification pathway for the production of high-purity manganese sulphate monohydrate (HPMSM), achieving manganese recoveries of 95-99%, strong impurity control, successful continuous purification performance and batch crystallization of the resulting strip liquor. The results represent an important technical de-risking milestone for AE Fuels Corporation's manganese battery materials strategy and support progression toward larger-scale pilot testing, customer qualification programs and future development studies. The work also preserves optionality to evaluate future downstream production pathways including electrolytic manganese metal (EMM) and electrolytic manganese dioxide (EMD). Continuous mini-pilot testing delivered manganese recoveries ranging from 95% to 99%, highlighting the effectiveness of the purification process under sustained operating conditions. Testing produced high-purity manganese sulphate monohydrate (HPMSM) crystals that met the battery-grade impurity limits assessed in the program. The purification circuit demonstrated strong impurity control, including the removal of calcium, magnesium and other impurities to levels consistent with battery-grade limits assessed during the program. The results provide a significant technical de-risking milestone and support progression toward larger-scale continuous testing, customer sample generation and feasibility-level studies. The program used synthetic manganese sulphate feed liquor formulated to reflect the expected chemistry of South Woodie Woodie leach solutions. Continuous testing achieved manganese recoveries generally ranging from 95% to 99%, while demonstrating strong impurity control, effective phase separation, low organic entrainment and no crud formation during operation. Calcium, one of the most important impurities requiring control for battery-grade HPMSM production, was reduced below the battery-grade impurity limits assessed during testing. Batch crystallization testing conducted on strip liquor generated during the mini-pilot program successfully produced HPMSM crystals that met the battery-grade impurity limits assessed in the program. Product qualification by battery and cathode precursor manufacturers requires not only high manganese recovery, but also effective control of impurities that can affect downstream battery-material performance. The successful production of battery-grade HPMSM crystals from continuous mini-pilot testing represents an important technical milestone and provides a stronger foundation for future customer engagement, strategic partnership discussions and larger-scale pilot testing. The next phase of work is expected to utilize feed liquors generated from bulk sample material collected from the South Woodie Woodie Contact deposit. This work is intended to provide a more representative assessment of the integrated processing flowsheet and support future pilot-scale testing and customer sample generation. The successful production of battery-grade HPMSM from continuous mini-pilot testing provides AE Fuels Corporation with an enhanced technical platform from which to advance product qualification programs, strategic partnership discussions, customer engagement activities and future development studies as it pursues participation in higher-value battery materials markets. Demonstrated continuous production of purified manganese sulphate liquor, followed by successful batch crystallization of battery-grade HPMSM, a critical precursor material used in lithium-ion batteries. Further validated the proposed purification flowsheet and process design. Generated product samples in support of future qualification programs with potential customers and inform discussions with prospective downstream partners. Contributed to the ongoing reduction of technical risk ahead of larger-scale pilot operations. Provided additional data to support future engineering studies, process optimization and feasibility-level evaluations. Collectively, these outcomes are expected to strengthen confidence in the Project's development pathway, support advancement toward potential commercial-scale production and ultimately advance AE Fuels Corporation's strategy of moving beyond mining and capturing greater value through participation in higher-value downstream battery materials markets.お知らせ • May 08AE Fuels Corporation, Annual General Meeting, Jun 30, 2026AE Fuels Corporation, Annual General Meeting, Jun 30, 2026. Location: british columbia, vancouver Canada最新情報をもっと見るRecent updatesお知らせ • 2hAE Fuels Corporation Achieves 95-99% Manganese Recovery And Produces Battery-Grade HPMSM Crystals From Continuous Mini-Pilot TestingAE Fuels Corporation announced positive results from mini-pilot testing undertaken by Australia's national science agency, CSIRO. The program successfully demonstrated a scalable purification pathway for the production of high-purity manganese sulphate monohydrate (HPMSM), achieving manganese recoveries of 95-99%, strong impurity control, successful continuous purification performance and batch crystallization of the resulting strip liquor. The results represent an important technical de-risking milestone for AE Fuels Corporation's manganese battery materials strategy and support progression toward larger-scale pilot testing, customer qualification programs and future development studies. The work also preserves optionality to evaluate future downstream production pathways including electrolytic manganese metal (EMM) and electrolytic manganese dioxide (EMD). Continuous mini-pilot testing delivered manganese recoveries ranging from 95% to 99%, highlighting the effectiveness of the purification process under sustained operating conditions. Testing produced high-purity manganese sulphate monohydrate (HPMSM) crystals that met the battery-grade impurity limits assessed in the program. The purification circuit demonstrated strong impurity control, including the removal of calcium, magnesium and other impurities to levels consistent with battery-grade limits assessed during the program. The results provide a significant technical de-risking milestone and support progression toward larger-scale continuous testing, customer sample generation and feasibility-level studies. The program used synthetic manganese sulphate feed liquor formulated to reflect the expected chemistry of South Woodie Woodie leach solutions. Continuous testing achieved manganese recoveries generally ranging from 95% to 99%, while demonstrating strong impurity control, effective phase separation, low organic entrainment and no crud formation during operation. Calcium, one of the most important impurities requiring control for battery-grade HPMSM production, was reduced below the battery-grade impurity limits assessed during testing. Batch crystallization testing conducted on strip liquor generated during the mini-pilot program successfully produced HPMSM crystals that met the battery-grade impurity limits assessed in the program. Product qualification by battery and cathode precursor manufacturers requires not only high manganese recovery, but also effective control of impurities that can affect downstream battery-material performance. The successful production of battery-grade HPMSM crystals from continuous mini-pilot testing represents an important technical milestone and provides a stronger foundation for future customer engagement, strategic partnership discussions and larger-scale pilot testing. The next phase of work is expected to utilize feed liquors generated from bulk sample material collected from the South Woodie Woodie Contact deposit. This work is intended to provide a more representative assessment of the integrated processing flowsheet and support future pilot-scale testing and customer sample generation. The successful production of battery-grade HPMSM from continuous mini-pilot testing provides AE Fuels Corporation with an enhanced technical platform from which to advance product qualification programs, strategic partnership discussions, customer engagement activities and future development studies as it pursues participation in higher-value battery materials markets. Demonstrated continuous production of purified manganese sulphate liquor, followed by successful batch crystallization of battery-grade HPMSM, a critical precursor material used in lithium-ion batteries. Further validated the proposed purification flowsheet and process design. Generated product samples in support of future qualification programs with potential customers and inform discussions with prospective downstream partners. Contributed to the ongoing reduction of technical risk ahead of larger-scale pilot operations. Provided additional data to support future engineering studies, process optimization and feasibility-level evaluations. Collectively, these outcomes are expected to strengthen confidence in the Project's development pathway, support advancement toward potential commercial-scale production and ultimately advance AE Fuels Corporation's strategy of moving beyond mining and capturing greater value through participation in higher-value downstream battery materials markets.お知らせ • May 08AE Fuels Corporation, Annual General Meeting, Jun 30, 2026AE Fuels Corporation, Annual General Meeting, Jun 30, 2026. Location: british columbia, vancouver Canada株主還元NRGF.FUS Metals and MiningUS 市場7D-66.1%-8.5%-2.3%1Yn/a65.7%21.2%株主還元を見る業界別リターン: NRGF.FがUS 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: NRGF.F US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 NRGF.F's price volatile compared to industry and market?NRGF.F volatilityNRGF.F Average Weekly Movementn/aMetals and Mining Industry Average Movement9.6%Market Average Movement7.2%10% most volatile stocks in US Market16.7%10% least volatile stocks in US Market3.1%安定した株価: NRGF.Fの株価は、 US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NRGF.F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n/an/aGary Lewisaefuels.comAE Fuels Corporationはオーストラリア、米国、欧州連合で電池用鉱物の抽出と精製を行っている。マンガン鉱床と蛍石鉱床の探鉱を行っている。オーストラリアにあるサウス・ウッディー・ウッディー・マンガン・プロジェクトの100%所有権、ニューメキシコ州の鉱山と有望鉱区の鉱業権、ニューメキシコ州ルナ郡にある蛍石リッジの1270エーカーに及ぶ63の鉱区請求権を保有している。本社はカナダのバンクーバー。もっと見るAE Fuels Corporation 基礎のまとめAE Fuels の収益と売上を時価総額と比較するとどうか。NRGF.F 基礎統計学時価総額US$5.22m収益(TTM)-US$1.13m売上高(TTM)n/a0.0xP/Sレシオ-4.6xPER(株価収益率NRGF.F 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NRGF.F 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$1.60m収益-CA$1.60m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)-0.038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2.2%NRGF.F 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2026/06/23 14:53終値2026/06/18 00:00収益2025/12/31年間収益2025/12/31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この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、レポートの使い方に関する ガイド や YouTube の チュートリアル もご用意しています。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AE Fuels Corporation 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
お知らせ • 2hAE Fuels Corporation Achieves 95-99% Manganese Recovery And Produces Battery-Grade HPMSM Crystals From Continuous Mini-Pilot TestingAE Fuels Corporation announced positive results from mini-pilot testing undertaken by Australia's national science agency, CSIRO. The program successfully demonstrated a scalable purification pathway for the production of high-purity manganese sulphate monohydrate (HPMSM), achieving manganese recoveries of 95-99%, strong impurity control, successful continuous purification performance and batch crystallization of the resulting strip liquor. The results represent an important technical de-risking milestone for AE Fuels Corporation's manganese battery materials strategy and support progression toward larger-scale pilot testing, customer qualification programs and future development studies. The work also preserves optionality to evaluate future downstream production pathways including electrolytic manganese metal (EMM) and electrolytic manganese dioxide (EMD). Continuous mini-pilot testing delivered manganese recoveries ranging from 95% to 99%, highlighting the effectiveness of the purification process under sustained operating conditions. Testing produced high-purity manganese sulphate monohydrate (HPMSM) crystals that met the battery-grade impurity limits assessed in the program. The purification circuit demonstrated strong impurity control, including the removal of calcium, magnesium and other impurities to levels consistent with battery-grade limits assessed during the program. The results provide a significant technical de-risking milestone and support progression toward larger-scale continuous testing, customer sample generation and feasibility-level studies. The program used synthetic manganese sulphate feed liquor formulated to reflect the expected chemistry of South Woodie Woodie leach solutions. Continuous testing achieved manganese recoveries generally ranging from 95% to 99%, while demonstrating strong impurity control, effective phase separation, low organic entrainment and no crud formation during operation. Calcium, one of the most important impurities requiring control for battery-grade HPMSM production, was reduced below the battery-grade impurity limits assessed during testing. Batch crystallization testing conducted on strip liquor generated during the mini-pilot program successfully produced HPMSM crystals that met the battery-grade impurity limits assessed in the program. Product qualification by battery and cathode precursor manufacturers requires not only high manganese recovery, but also effective control of impurities that can affect downstream battery-material performance. The successful production of battery-grade HPMSM crystals from continuous mini-pilot testing represents an important technical milestone and provides a stronger foundation for future customer engagement, strategic partnership discussions and larger-scale pilot testing. The next phase of work is expected to utilize feed liquors generated from bulk sample material collected from the South Woodie Woodie Contact deposit. This work is intended to provide a more representative assessment of the integrated processing flowsheet and support future pilot-scale testing and customer sample generation. The successful production of battery-grade HPMSM from continuous mini-pilot testing provides AE Fuels Corporation with an enhanced technical platform from which to advance product qualification programs, strategic partnership discussions, customer engagement activities and future development studies as it pursues participation in higher-value battery materials markets. Demonstrated continuous production of purified manganese sulphate liquor, followed by successful batch crystallization of battery-grade HPMSM, a critical precursor material used in lithium-ion batteries. Further validated the proposed purification flowsheet and process design. Generated product samples in support of future qualification programs with potential customers and inform discussions with prospective downstream partners. Contributed to the ongoing reduction of technical risk ahead of larger-scale pilot operations. Provided additional data to support future engineering studies, process optimization and feasibility-level evaluations. Collectively, these outcomes are expected to strengthen confidence in the Project's development pathway, support advancement toward potential commercial-scale production and ultimately advance AE Fuels Corporation's strategy of moving beyond mining and capturing greater value through participation in higher-value downstream battery materials markets.
お知らせ • May 08AE Fuels Corporation, Annual General Meeting, Jun 30, 2026AE Fuels Corporation, Annual General Meeting, Jun 30, 2026. Location: british columbia, vancouver Canada
お知らせ • 2hAE Fuels Corporation Achieves 95-99% Manganese Recovery And Produces Battery-Grade HPMSM Crystals From Continuous Mini-Pilot TestingAE Fuels Corporation announced positive results from mini-pilot testing undertaken by Australia's national science agency, CSIRO. The program successfully demonstrated a scalable purification pathway for the production of high-purity manganese sulphate monohydrate (HPMSM), achieving manganese recoveries of 95-99%, strong impurity control, successful continuous purification performance and batch crystallization of the resulting strip liquor. The results represent an important technical de-risking milestone for AE Fuels Corporation's manganese battery materials strategy and support progression toward larger-scale pilot testing, customer qualification programs and future development studies. The work also preserves optionality to evaluate future downstream production pathways including electrolytic manganese metal (EMM) and electrolytic manganese dioxide (EMD). Continuous mini-pilot testing delivered manganese recoveries ranging from 95% to 99%, highlighting the effectiveness of the purification process under sustained operating conditions. Testing produced high-purity manganese sulphate monohydrate (HPMSM) crystals that met the battery-grade impurity limits assessed in the program. The purification circuit demonstrated strong impurity control, including the removal of calcium, magnesium and other impurities to levels consistent with battery-grade limits assessed during the program. The results provide a significant technical de-risking milestone and support progression toward larger-scale continuous testing, customer sample generation and feasibility-level studies. The program used synthetic manganese sulphate feed liquor formulated to reflect the expected chemistry of South Woodie Woodie leach solutions. Continuous testing achieved manganese recoveries generally ranging from 95% to 99%, while demonstrating strong impurity control, effective phase separation, low organic entrainment and no crud formation during operation. Calcium, one of the most important impurities requiring control for battery-grade HPMSM production, was reduced below the battery-grade impurity limits assessed during testing. Batch crystallization testing conducted on strip liquor generated during the mini-pilot program successfully produced HPMSM crystals that met the battery-grade impurity limits assessed in the program. Product qualification by battery and cathode precursor manufacturers requires not only high manganese recovery, but also effective control of impurities that can affect downstream battery-material performance. The successful production of battery-grade HPMSM crystals from continuous mini-pilot testing represents an important technical milestone and provides a stronger foundation for future customer engagement, strategic partnership discussions and larger-scale pilot testing. The next phase of work is expected to utilize feed liquors generated from bulk sample material collected from the South Woodie Woodie Contact deposit. This work is intended to provide a more representative assessment of the integrated processing flowsheet and support future pilot-scale testing and customer sample generation. The successful production of battery-grade HPMSM from continuous mini-pilot testing provides AE Fuels Corporation with an enhanced technical platform from which to advance product qualification programs, strategic partnership discussions, customer engagement activities and future development studies as it pursues participation in higher-value battery materials markets. Demonstrated continuous production of purified manganese sulphate liquor, followed by successful batch crystallization of battery-grade HPMSM, a critical precursor material used in lithium-ion batteries. Further validated the proposed purification flowsheet and process design. Generated product samples in support of future qualification programs with potential customers and inform discussions with prospective downstream partners. Contributed to the ongoing reduction of technical risk ahead of larger-scale pilot operations. Provided additional data to support future engineering studies, process optimization and feasibility-level evaluations. Collectively, these outcomes are expected to strengthen confidence in the Project's development pathway, support advancement toward potential commercial-scale production and ultimately advance AE Fuels Corporation's strategy of moving beyond mining and capturing greater value through participation in higher-value downstream battery materials markets.
お知らせ • May 08AE Fuels Corporation, Annual General Meeting, Jun 30, 2026AE Fuels Corporation, Annual General Meeting, Jun 30, 2026. Location: british columbia, vancouver Canada