AE Fuels (AEF) 주식 개요캐벌리 캐피털은 전기와 에너지 저장에 사용되는 배터리를 위한 광물 추출과 정제를 담당하고 있습니다. 자세히 보기AEF 펀더멘털 분석스노우플레이크 점수가치 평가2/6미래 성장0/6과거 실적0/6재무 건전성5/6배당0/6위험 분석수익이 USD$1m 미만입니다(CA$0)의미 있는 시가총액이 없습니다(CA$6M)모든 위험 점검 보기AEF Community Fair Values Create NarrativeSee what others think this stock is worth. Follow their fair value or set your own to get alerts.NEW472,758 membersJoin community and earn perksGain real feedbackFrom our editorial team, personally. Not silence.Grow your followingReal investors. The kind who actually invest, not scroll past.Unlock free accessFree premium subscription for consistent and quality authors.Learn moreCreate NarrativeBLINRODA472,758 investors already sharing narrativesYour Fair ValueCA$Current PriceCA$0.14해당 없음내재 할인율Est. Revenue$PastFuture-2m12016201920222025202620282031Revenue CA$1.0Earnings CA$0.1AdvancedSet Fair ValueView all narrativesAE Fuels Corporation 경쟁사Clydesdale ResourcesSymbol: TSXV:CEO.HMarket cap: CA$6.4mSearchlight ResourcesSymbol: TSXV:SCLTMarket cap: CA$4.6mHispania ResourcesSymbol: TSXV:ESPNMarket cap: CA$6.0mMelkior ResourcesSymbol: TSXV:MKRMarket cap: CA$5.8m가격 이력 및 성과AE Fuels 주가의 최고가, 최저가 및 변동 요약과거 주가현재 주가CA$0.1452주 최고가CA$0.3452주 최저가CA$0.13베타-0.271개월 변동-17.65%3개월 변동-24.32%1년 변동n/a3년 변동n/a5년 변동n/aIPO 이후 변동-70.92%최근 뉴스 및 업데이트공고 • Jun 24AE 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.공고 • May 08AE Fuels Corporation, Annual General Meeting, Jun 30, 2026AE Fuels Corporation, Annual General Meeting, Jun 30, 2026. Location: british columbia, vancouver CanadaBoard Change • Jan 07No independent directorsFollowing the recent departure of a director, there are no independent directors on the board. The company's board is composed of: No independent directors. 5 non-independent directors. CEO, President & Executive Director Gary Lewis was the last director to join the board, commencing their role in 2025. The company's lack of independent directors is a risk according to the Simply Wall St Risk Model.더 많은 업데이트 보기Recent updates공고 • Jun 24AE 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.공고 • May 08AE Fuels Corporation, Annual General Meeting, Jun 30, 2026AE Fuels Corporation, Annual General Meeting, Jun 30, 2026. Location: british columbia, vancouver CanadaBoard Change • Jan 07No independent directorsFollowing the recent departure of a director, there are no independent directors on the board. The company's board is composed of: No independent directors. 5 non-independent directors. CEO, President & Executive Director Gary Lewis was the last director to join the board, commencing their role in 2025. The company's lack of independent directors is a risk according to the Simply Wall St Risk Model.주주 수익률AEFCA Metals and MiningCA 시장7D0%12.3%2.0%1Yn/a64.1%29.8%전체 주주 수익률 보기수익률 대 산업: AEF의 Canadian Metals and Mining 산업 대비 성과를 판단하기에 데이터가 부족합니다.수익률 대 시장: AEF의 Canadian 시장 대비 성과를 판단하기에 데이터가 부족합니다.주가 변동성Is AEF's price volatile compared to industry and market?AEF volatilityAEF Average Weekly Movement12.2%Metals and Mining Industry Average Movement11.1%Market Average Movement9.7%10% most volatile stocks in CA Market16.3%10% least volatile stocks in CA Market3.7%안정적인 주가: AEF는 지난 3개월 동안 Canadian 시장에 비해 주가 변동성이 크지 않았습니다.시간에 따른 변동성: AEF의 주간 변동성은 지난 1년간 22%에서 12%로 감소했습니다.회사 소개설립직원 수CEO웹사이트2024n/aGary Lewisaefuels.com캐벌리 캐피탈은 전기화 및 에너지 저장에 사용되는 배터리용 광물을 추출하고 정제하는 사업을 하고 있습니다. 이 회사는 서호주 필바라 지역의 망간 사업과 미국의 형석 사업에서 광업 프로젝트에 참여하고 있습니다. 이 회사는 델라웨어주 뉴캐슬에 본사를 두고 있습니다.더 보기AE Fuels Corporation 기초 지표 요약AE Fuels의 순이익과 매출은 시가총액과 어떻게 비교됩니까?AEF 기초 통계시가총액CA$5.94m순이익 (TTM)-CA$1.60m매출 (TTM)n/a0.0x주가매출비율(P/S)-3.7x주가수익비율(P/E)AEF는 고평가되어 있습니까?공정 가치 및 평가 분석 보기순이익 및 매출최근 실적 보고서(TTM)의 주요 수익성 지표AEF 손익계산서 (TTM)매출CA$0매출원가CA$0총이익CA$0기타 비용CA$1.60m순이익-CA$1.60m최근 보고된 실적Dec 31, 2025다음 실적 발표일해당 없음주당순이익(EPS)-0.038총이익률0.00%순이익률0.00%부채/자본 비율2.2%AEF의 장기 실적은 어땠습니까?과거 실적 및 비교 보기View Valuation기업 분석 및 재무 데이터 상태데이터최종 업데이트 (UTC 시간)기업 분석2026/08/07 01:28종가2026/08/05 00:00수익2025/12/31연간 수익2025/12/31데이터 소스당사의 기업 분석에 사용되는 데이터는 S&P Global Market Intelligence LLC에서 제공됩니다. 아래 데이터는 이 보고서를 생성하기 위해 분석 모델에서 사용됩니다. 데이터는 정규화되므로 소스가 제공된 후 지연이 발생할 수 있습니다.패키지데이터기간미국 소스 예시 *기업 재무제표10년손익계산서현금흐름표대차대조표SEC 양식 10-KSEC 양식 10-Q분석가 컨센서스 추정치+3년재무 예측분석가 목표주가분석가 리서치 보고서Blue Matrix시장 가격30년주가배당, 분할 및 기타 조치ICE 시장 데이터SEC 양식 S-1지분 구조10년주요 주주내부자 거래SEC 양식 4SEC 양식 13D경영진10년리더십 팀이사회SEC 양식 10-KSEC 양식 DEF 14A주요 개발10년회사 공시SEC 양식 8-K* 미국 증권에 대한 예시이며, 비(非)미국 증권에는 해당 국가의 규제 서식 및 자료원을 사용합니다.별도로 명시되지 않는 한 모든 재무 데이터는 연간 기간을 기준으로 하지만 분기별로 업데이트됩니다. 이를 TTM(최근 12개월) 또는 LTM(지난 12개월) 데이터라고 합니다. 자세히 알아보기.분석 모델 및 스노우플레이크이 보고서를 생성하는 데 사용된 분석 모델의 세부 정보는 당사의 GitHub 페이지에서 확인하실 수 있습니다. 또한 보고서 사용 방법에 대한 가이드와 YouTube 튜토리얼도 제공하고 있습니다.Simply Wall St 분석 모델을 설계하고 구축한 세계적 수준의 팀에 대해 알아보세요.산업 및 섹터 지표산업 및 섹터 지표는 Simply Wall St가 6시간마다 계산하며, 프로세스에 대한 자세한 내용은 Github에서 확인할 수 있습니다.분석가 소스AE Fuels Corporation는 0명의 분석가가 다루고 있습니다. 이 중 0명의 분석가가 우리 보고서에 입력 데이터로 사용되는 매출 또는 수익 추정치를 제출했습니다. 분석가의 제출 자료는 하루 종일 업데이트됩니다.
공고 • Jun 24AE 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.
공고 • May 08AE Fuels Corporation, Annual General Meeting, Jun 30, 2026AE Fuels Corporation, Annual General Meeting, Jun 30, 2026. Location: british columbia, vancouver Canada
Board Change • Jan 07No independent directorsFollowing the recent departure of a director, there are no independent directors on the board. The company's board is composed of: No independent directors. 5 non-independent directors. CEO, President & Executive Director Gary Lewis was the last director to join the board, commencing their role in 2025. The company's lack of independent directors is a risk according to the Simply Wall St Risk Model.
공고 • Jun 24AE 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.
공고 • May 08AE Fuels Corporation, Annual General Meeting, Jun 30, 2026AE Fuels Corporation, Annual General Meeting, Jun 30, 2026. Location: british columbia, vancouver Canada
Board Change • Jan 07No independent directorsFollowing the recent departure of a director, there are no independent directors on the board. The company's board is composed of: No independent directors. 5 non-independent directors. CEO, President & Executive Director Gary Lewis was the last director to join the board, commencing their role in 2025. The company's lack of independent directors is a risk according to the Simply Wall St Risk Model.