인문학
사회과학
자연과학
공학
의약학
농수해양학
예술체육학
복합학
개인구독
소속 기관이 없으신 경우, 개인 정기구독을 하시면 저렴하게
논문을 무제한 열람 이용할 수 있어요.
지원사업
학술연구/단체지원/교육 등 연구자 활동을 지속하도록 DBpia가 지원하고 있어요.
커뮤니티
연구자들이 자신의 연구와 전문성을 널리 알리고, 새로운 협력의 기회를 만들 수 있는 네트워킹 공간이에요.
초록·키워드
Acid Mine drainage is produced mainly from the two sources such as mineral and mining industries and there are a factors to enhance the AMD formation: i) atmospheric moisture, ii) pH, iii)temperature, and iv) surface area of sulfide minerals exposed to the oxygen. Acid Mine Drainage (AMD) is formed with the outflow of extremely acidic water from the mine dumps or abandoned mine sites, which contains the dissolved heavy metals such as Copper (Cu), Lead (Pb), Mercury (Hg), Nickel (Ni), Arsenic (As), Cobalt (Co), Cadmium (Cd), and other some common metals are Manganese (Mn), Iron (Fe), and Zinc (Zn). AMD is a major pollutant that causes a severe threat to the aquatic and ecosystem. There are a few major issues associated with this AMD including contamination of drinking water, lowering the reproduction growth rate of plants and aquatic animals, etc. In this paper, we discussed a new technical solution carbon mineralization technology for the treatment of acid mine drainage, and also promoting the possible circular economy was proposed. A carbon mineralization technology was studied for the stabilization of heavy metals in soil and ashes as well as hardness removal of water. The proposed carbon mineralization is an alternative technical solution for the treatment of AMD which leads the AMD wastewater to be a resource to achieve a circular economy.
본문·목차
인공지능 문자 인식 모델을 통해 추출된 텍스트로, 일부 오타나 오류가 포함될 수 있으나 지속적으로 개선 중입니다.
오류를 발견하셨다면 해당 부분을 드래그한 후 ' 를 통해 신고해주세요.
오류를 발견하셨다면 해당 부분을 드래그한 후 ' 를 통해 신고해주세요.
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UCI(KEPA) : I410-ECN-0101-2023-572-000129229