View Financial HealthThis company has been acquiredThe company may no longer be operating, as it has been acquired. Find out why through their latest events.See Latest EventsA-Cap Energy 배당 및 자사주 매입배당 기준 점검 0/6A-Cap Energy 배당금을 지급한 기록이 없습니다.핵심 정보n/a배당 수익률-6.3%자사주 매입 수익률총 주주 수익률-6.3%미래 배당 수익률n/a배당 성장률n/a다음 배당 지급일n/a배당락일n/a주당 배당금n/a배당 성향n/a최근 배당 및 자사주 매입 업데이트업데이트 없음모든 업데이트 보기Recent updates공시 • Jan 31A-Cap Energy Limited Announces Wilconi Metallurgical Testwork ResultsAcap Energy Limited updated the market on results of recent metallurgical testwork conducted on ores from the company's Wilconi Nickel - Cobalt Project, in Western Australia. Samples of drill cores representative of differentore types (limonitic, saprolitic and saprock) were selected and provided to Simulus Laboratories (Perth) for testing. The samples were tested for their amenability to nickel and cobalt leaching using five different processing methods, including: Atmospheric Leach, High Pressure Acid Leach, Reductive Leach, Acid Bake and Water Leach and Salt Roast and Water Leach. Results show high metal recoveries for limonitic and saprolitic ores, withaverages between 73.6 - 93.1% Ni and 71.1 - 93.2% Co from HPAL, atmospheric leach and acid bake methods. Metal recoveries for Reductive Leach and Salt Leach tests on the same samples were lower Tests conducted on saprock ore showed good metal recoveries using the atmospheric leach method of 79% Ni and 72.8% Co but were much lower for other methods tested. HPAL returned the highest metal recoveries out of all the methods used, with >93% Ni and >91% Co leached from both the limonitic and saprolitic ores. The atmospheric leach and acid bake methods had similar high recoveries for the limonitic and saprolitic ore types however the acid bake method required much lower acid consumption. More metallurgical testwork is planned using samples from recently drilled diamond cores to continue to refine the preferred processing methods and fine tune the recoveries for thedifferent ore types.공시 • Jan 19A-Cap Energy Limited Announces Drilling Commences at Letlhakane Uranium ProjectA-Cap Energy Limited has started a 1,500m (PQ) diamond drill core program over 25 holes at its Letlhakane Project in Botswana, host to one of the world's top 10 undeveloped uranium resources. The program is expected to take up to six to eight weeks and will collect approximately 2 tonneof mineralised material for beneficiation, leaching, and metallurgical testwork already underway. In conjunction with a ramp up of activities on the ground at Letlhakane being led by new country manager, Mr. Peter Sheehan, metallurgical studies comprising mineralogy and ore characterisation will supplement the beneficiation program. To increase Letlhakane's profitability, A-Cap has engaged technical partners with world-leading expertise in uranium ore sorting and processing that specialise in increasing the ore feed grade to the mill as well as removing acid consuming gangue. Work has begun on preliminary beneficiation testwork based on historic composite ore samples recovered from storage at Australia's Nuclear Science and Technology Organisation, (ANSTO) which was excess to previous column leach tests conducted in 2014. 90kg of composite ore material from Gorgon South, Kraken and Serule West was supplied to mineral processing leaders Nagrom in Perth for sample preparation before being sent to magnetic separation company Steinert for sorting/beneficiation testwork utilising radiometric, XRT, and hyperspectral sensors as well as beneficiation techniques by gravity separation using spiral and dense media separation. Steinert have been highly successful upgrading uranium ore with sorting programs for other clients in recent years2, using radiometric information to pre-classify the ore into product and waste for their program development. Once they have a "pre-classified" ore and waste fraction, they process these fractions through a sorter with multiple sensors and record all the information from the sensors available on this sorter (colour, laser, induction and XRT). Subsequently they use proprietary software to detect variations in sensor data between the ore and waste fractions either in: density, colour or any of the other sensors in combination. There are over 200 parameters recorded and they use multiple sensor combinations to find the best potential sorting algorithm to sort the specific ore. These results will be used to optimise design of the sorting/beneficiation testwork for the PQ core samples. Acid consumption is a major operating cost in the proposed process route set out inLetlhakane's 2016 Feasibility Study. Metallurgical consultants MinAssist found that the ANSTO samples from previous Acid Soluble Uranium (ASU) properties test work were ideal for mineralogical classification by Quantitative XRD analysis to provide the following insights: Identify the acid consuming minerals in ASU head samples; Determine the mineral dissolution rate of each acid consuming mineral by analysis of head and residue samples, to provide estimates of acid consumption by mineral (this extends on total acid consumption value from ASU test); and Infer mineralogy and acid consumption for the entire body using machine learning by linking geochemistry, lithologies, and location to mineralogy characterisation. This information can then be used to better inform the geological block model with acid consumption parameters and in generating orebody geometallurgical domains, which can be used to optimise the resource to minimise acid consumption and drive down costs. 48 samples were sent to Bureau Veritas (ADE).지급의 안정성과 성장배당 데이터 가져오는 중안정적인 배당: 과거에 APCD.F 의 주당 배당금이 안정적이었는지 판단하기에는 데이터가 부족합니다.배당금 증가: APCD.F 의 배당금 지급이 증가했는지 판단하기에는 데이터가 부족합니다.배당 수익률 vs 시장A-Cap Energy 배당 수익률 vs 시장APCD.F의 배당 수익률은 시장과 어떻게 비교되나요?구분배당 수익률회사 (APCD.F)n/a시장 하위 25% (US)1.4%시장 상위 25% (US)4.2%업계 평균 (Oil and Gas)3.2%분석가 예측 (APCD.F) (최대 3년)n/a주목할만한 배당금: 회사가 최근 지급을 보고하지 않았기 때문에 하위 25%의 배당금 지급자에 대해 APCD.F 의 배당 수익률을 평가할 수 없습니다.고배당: 회사가 최근 지급을 보고하지 않았기 때문에 배당금 지급자의 상위 25%에 대해 APCD.F 의 배당 수익률을 평가할 수 없습니다.주주 대상 이익 배당수익 보장: 배당금 지급이 수익으로 충당되는지 확인하기 위해 APCD.F 의 지급 비율을 계산하기에는 데이터가 부족합니다.주주 현금 배당현금 흐름 범위: APCD.F 에서 지급을 보고하지 않았기 때문에 배당 지속 가능성을 계산할 수 없습니다.높은 배당을 제공하는 우량 기업 찾기7D1Y7D1Y7D1YUS 시장에서 배당이 강한 기업.View Management기업 분석 및 재무 데이터 상태데이터최종 업데이트 (UTC 시간)기업 분석2023/11/10 20:46종가2023/10/11 00:00수익2023/06/30연간 수익2023/06/30데이터 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 모델에 대한 자세한 내용은 당사의 Github 페이지에서 확인하실 수 있습니다. 또한 보고서 활용 방법에 대한 가이드와 YouTube 튜토리얼도 제공합니다.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 소스A-Cap Energy Limited는 0명의 분석가가 다루고 있습니다. 이 중 명의 분석가가 우리 보고서에 입력 데이터로 사용되는 매출 또는 수익 추정치를 제출했습니다. 분석가의 제출 자료는 하루 종일 업데이트됩니다.
공시 • Jan 31A-Cap Energy Limited Announces Wilconi Metallurgical Testwork ResultsAcap Energy Limited updated the market on results of recent metallurgical testwork conducted on ores from the company's Wilconi Nickel - Cobalt Project, in Western Australia. Samples of drill cores representative of differentore types (limonitic, saprolitic and saprock) were selected and provided to Simulus Laboratories (Perth) for testing. The samples were tested for their amenability to nickel and cobalt leaching using five different processing methods, including: Atmospheric Leach, High Pressure Acid Leach, Reductive Leach, Acid Bake and Water Leach and Salt Roast and Water Leach. Results show high metal recoveries for limonitic and saprolitic ores, withaverages between 73.6 - 93.1% Ni and 71.1 - 93.2% Co from HPAL, atmospheric leach and acid bake methods. Metal recoveries for Reductive Leach and Salt Leach tests on the same samples were lower Tests conducted on saprock ore showed good metal recoveries using the atmospheric leach method of 79% Ni and 72.8% Co but were much lower for other methods tested. HPAL returned the highest metal recoveries out of all the methods used, with >93% Ni and >91% Co leached from both the limonitic and saprolitic ores. The atmospheric leach and acid bake methods had similar high recoveries for the limonitic and saprolitic ore types however the acid bake method required much lower acid consumption. More metallurgical testwork is planned using samples from recently drilled diamond cores to continue to refine the preferred processing methods and fine tune the recoveries for thedifferent ore types.
공시 • Jan 19A-Cap Energy Limited Announces Drilling Commences at Letlhakane Uranium ProjectA-Cap Energy Limited has started a 1,500m (PQ) diamond drill core program over 25 holes at its Letlhakane Project in Botswana, host to one of the world's top 10 undeveloped uranium resources. The program is expected to take up to six to eight weeks and will collect approximately 2 tonneof mineralised material for beneficiation, leaching, and metallurgical testwork already underway. In conjunction with a ramp up of activities on the ground at Letlhakane being led by new country manager, Mr. Peter Sheehan, metallurgical studies comprising mineralogy and ore characterisation will supplement the beneficiation program. To increase Letlhakane's profitability, A-Cap has engaged technical partners with world-leading expertise in uranium ore sorting and processing that specialise in increasing the ore feed grade to the mill as well as removing acid consuming gangue. Work has begun on preliminary beneficiation testwork based on historic composite ore samples recovered from storage at Australia's Nuclear Science and Technology Organisation, (ANSTO) which was excess to previous column leach tests conducted in 2014. 90kg of composite ore material from Gorgon South, Kraken and Serule West was supplied to mineral processing leaders Nagrom in Perth for sample preparation before being sent to magnetic separation company Steinert for sorting/beneficiation testwork utilising radiometric, XRT, and hyperspectral sensors as well as beneficiation techniques by gravity separation using spiral and dense media separation. Steinert have been highly successful upgrading uranium ore with sorting programs for other clients in recent years2, using radiometric information to pre-classify the ore into product and waste for their program development. Once they have a "pre-classified" ore and waste fraction, they process these fractions through a sorter with multiple sensors and record all the information from the sensors available on this sorter (colour, laser, induction and XRT). Subsequently they use proprietary software to detect variations in sensor data between the ore and waste fractions either in: density, colour or any of the other sensors in combination. There are over 200 parameters recorded and they use multiple sensor combinations to find the best potential sorting algorithm to sort the specific ore. These results will be used to optimise design of the sorting/beneficiation testwork for the PQ core samples. Acid consumption is a major operating cost in the proposed process route set out inLetlhakane's 2016 Feasibility Study. Metallurgical consultants MinAssist found that the ANSTO samples from previous Acid Soluble Uranium (ASU) properties test work were ideal for mineralogical classification by Quantitative XRD analysis to provide the following insights: Identify the acid consuming minerals in ASU head samples; Determine the mineral dissolution rate of each acid consuming mineral by analysis of head and residue samples, to provide estimates of acid consumption by mineral (this extends on total acid consumption value from ASU test); and Infer mineralogy and acid consumption for the entire body using machine learning by linking geochemistry, lithologies, and location to mineralogy characterisation. This information can then be used to better inform the geological block model with acid consumption parameters and in generating orebody geometallurgical domains, which can be used to optimise the resource to minimise acid consumption and drive down costs. 48 samples were sent to Bureau Veritas (ADE).