$\require{mediawiki-texvc}$

연합인증

연합인증 가입 기관의 연구자들은 소속기관의 인증정보(ID와 암호)를 이용해 다른 대학, 연구기관, 서비스 공급자의 다양한 온라인 자원과 연구 데이터를 이용할 수 있습니다.

이는 여행자가 자국에서 발행 받은 여권으로 세계 각국을 자유롭게 여행할 수 있는 것과 같습니다.

연합인증으로 이용이 가능한 서비스는 NTIS, DataON, Edison, Kafe, Webinar 등이 있습니다.

한번의 인증절차만으로 연합인증 가입 서비스에 추가 로그인 없이 이용이 가능합니다.

다만, 연합인증을 위해서는 최초 1회만 인증 절차가 필요합니다. (회원이 아닐 경우 회원 가입이 필요합니다.)

연합인증 절차는 다음과 같습니다.

최초이용시에는
ScienceON에 로그인 → 연합인증 서비스 접속 → 로그인 (본인 확인 또는 회원가입) → 서비스 이용

그 이후에는
ScienceON 로그인 → 연합인증 서비스 접속 → 서비스 이용

연합인증을 활용하시면 KISTI가 제공하는 다양한 서비스를 편리하게 이용하실 수 있습니다.

해외 금속자원에 대한 광상유형별 자료 분석을 통한 효과적인 자원개발
The Optimal Resource Development for Analysing Data of Deposit Types' Ore Reserves of Oversea Metal Resource 원문보기

자원환경지질 = Economic and environmental geology, v.41 no.6, 2008년, pp.773 - 795  

유봉철 (충남대학교 자연과학대학 지질환경과학과) ,  이종길 (충남대학교 자연과학대학 지질환경과학과) ,  이길재 (충남대학교 자연과학대학 지질환경과학과) ,  이현구 (충남대학교 자연과학대학 지질환경과학과)

초록
AI-Helper 아이콘AI-Helper

우리나라의 주요 수입 광종은 동광, 연-아연광, 철광, 망간광 및 몰리브덴광 등이다. 우리나라의 해외자원개발은 아시아 14개국 92개 사업, 미주 및 유럽지역 10개국 29개 사업 그리고 중동 및 아프리카 9개국 14개 사업이 있으며 주로 호주, 중국, 몽골 및 인도네시아에서 사업수가 높다. 호주, 인도네시아 및 중국의 사업은 대부분이 석탄이고 일부 망간, 철, 연-아연, 니켈, 구리, 금, 몰리브덴, 희유원소 및 우라늄 등이나 몽골은 금과 희유원소가 큰 부분을 차지한다. 금속자원에 대한 광상 유형별 대표적인 광상형은 조산 lode형 광상, VMS형 광상, 반암형 광상, SEDEX형 광상, MVT형 광상, IOCG형 광상 및 마그마성 Ni-Cu-PGE형 광상 등이 있으며 이들 유형별 광상들은 전세계적으로 도처에 분포하며 다른 유형별 광상보다 금속자원의 매장량이 높고 부산물인 미량 금속자원에 대한 품위도 높게 나타난다. 따라서 향후 해외광물자원의 탐사 및 개발에 있어 우선 각 국가별 매장량, 주요 광물자원의 생산량 및 지체구조와 함께 광상 유형별 등을 종합 검토하여 조사 및 탐사를 실시한다면, 해외자원개발의 투자 위험도가 감소될 뿐만 아니라 탐사대상지역에서 품위가 높은 광체를 확보할 수 있을 것이다.

Abstract AI-Helper 아이콘AI-Helper

The major import minerals of South Korea are copper ore, lead-zinc ore, iron ore, manganese ore and molybdenum ore. Oversea resources development of South Korea have 92 projects in 14 nations of Asia, 29 projects in 10 nations of America and Europe, and 14 projects in 9 nations of Middle Asia and Af...

주제어

참고문헌 (47)

  1. Carlon, C.J. (2000) Iron oxide systems and base metal mineralisation in northern Sweden, in Porter, T.M., ed., Hydrothermal iron oxide copper-gold and related deposits: A global perspective: PGC Publishing, Adelaide, v. 1, p. 283-296 

  2. Corriveau, L. (2007) Iron oxide copper-gold ( $\pm$ Ag $\pm$ Nb $\pm$ P $\pm$ REE $\pm$ U) deposits: A canadian perspective. In Wayne, D.G. (eds), Mineral Deposits of Canada : A Synthesis of Major Deposit Types, District Metallogeny, the Evolution of Geological Provinces and Exploration Methods. Geological Survey of Canada, p. 307-328 

  3. Dube, B. and Gosselin, P. (2007) Greenstone-hosted quartz-carbonate vein deposits(orogenic, mesothermal, lode gold, shear-zone-related quartz-carbonate or gold-only deposits). In Wayne, D.G. (eds), Mineral Deposits of Canada : A Synthesis of Major Deposit Types, District Metallogeny, the Evolution of Geological Provinces and Exploration Methods. Geological Survey of Canada, p. 49-74 

  4. Dube, B., Gosselin, P., Hannington, M. and Galley, A. (2007) Gold-rich volcanogenic massive sulphide deposits. In Wayne, D.G. (eds), Mineral Deposits of Canada : A Synthesis of Major Deposit Types, District Metallogeny, the Evolution of Geological Provinces and Exploration Methods. Geological Survey of Canada, p. 75-94 

  5. Eckstrand, O.R. and Hulbert, L. (2007) Magmatic nickelcopper- platinum group elements deposits. In Wayne, D.G. (eds), Mineral Deposits of Canada : A Synthesis of Major Deposit Types, District Metallogeny, the Evolution of Geological Provinces and Exploration Methods. Geological Survey of Canada, p. 205-222 

  6. Elias, M. (2002) Nickel laterite deposits-geological overview, resources and exploration. In: Cooke, D.R., Pongratz, J. eds., Giant ore deposits: Characteristics, genesis, and exploration. Centre for ore deposit research special publication, v. 4, p. 205-220 

  7. Franklin, J.M., Lydon, J.W. and Sangster, D.F. (1981) Valcanic- associated massive sulfide deposits. in Skinner, B.J., ed., Economic Geology 75th Anniversary Volume, p. 485-627 

  8. Galley, A.G., Hannington, M.D. and Jonasson, I.R. (2007) Volcanogenic massive sulphide deposits. In Wayne, D.G. (eds), Mineral Deposits of Canada : A Synthesis of Major Deposit Types, District Metallogeny, the Evolution of Geological Provinces and Exploration Methods. Geological Survey of Canada, p. 141-162 

  9. Goldfarb, R.J., Groves, D.I. and Gardoll, S. (2001) Orogenic gold and geologic time: a global synthesis. Ore Geology Reviews, v. 18, p. 1-75 

  10. Goodfellow, W. and Lydon, J. (2007) SEDEX deposits. In Wayne, D.G. (eds), Mineral Deposits of Canada : A Synthesis of Major Deposit Types, District Metallogeny, the Evolution of Geological Provinces and Exploration Methods. Geological Survey of Canada, p. 163-184 

  11. Groves, D.I. (1993) The crustal continuum model for late-Archaean lode-gold deposits of the Yilgarn Block, Western Australia. Mineralium Deposita, v. 28, p. 366-374 

  12. Hannington, M.D., Barrie, C.T. and Bleeker, W. (1999a) The giant Kidd Creek Volcanogenic Massive Sulfide Deposit, Western Abitibi Subprovince, Canada, in Hannington, M.D., and Barrie, C.T., eds., The Giant Kidd Creek Volcanogenic Massive Sulfide Deposit, Western Abitibi Subprovince, Canada. Economic Geology Monograph 10, p. 1-30 

  13. Hannington, M.D., Bleeker, W. and Kjarsgaard, I. (1999b) Sulfide mineralogy, geochemistry and ore genesis of the Kidd Creek deposit: Part II. The bornite zone, in Hannington, M.D., and Barrie, C.T., eds., The Giant Kidd Creek Volcanogenic Massive Sulfide Deposit, Western Abitibi Subprovince, Canada. Economic Geology Monograph 10, p. 225-266 

  14. Hannington, M.D., Poulsen, K.H., Thompson, J.F.H. and Sillitoe, R.H. (1999c) Volcanogenic gold in the massive sulfide environment, in Barrie, C.T., and Hannington, M.D., eds., Volcanic-Associated Massive Sulfide Deposits: Processes and Examples in Modern and Ancient Settings. Reviews in Economic Geology 8, p. 325-356 

  15. Heo, C.H., Lee, J.H., Kim, Y.D. and Kim, B.C. (2007) Geology of the Boroo gold deposit, Northern Mongolia. Economic and Environmental Geology, v. 40, p. 331-338 

  16. Hoatson, D.M., Jaireth, S. and Jaques, A.L. (2006) Nickel sulfide deposits in Australia: Characteristics, resources, and potential. Ore Geology Reviews, v. 29, p. 177-241 

  17. Hunt, B. (2006) Lead and zinc costs: Miners and projects, 2006 Edition: Surrey, England, Brook Hunt and Associated Ltd 

  18. KIGAM (2006) Study on the Genetic Environments of Metallogenic Provinces of NE Asia. 461p 

  19. KIGAM (2008) Resource information (monthly) (http://rik.kigam.re.kr) 

  20. Kim. I.J. and Lee, J.H. (2006) Occurrence of placer gold deposits from the Takaoi area of the middle Kalimantan, Indonesia. Economic and Environmental Geology, v. 39, p. 191-212 

  21. Kim, I.J. and Lee, J.H. (2007a) Metallic mineral resources in Cambodia. Economic and Environmental Geology, v. 40, p. 339-345 

  22. Kim, I.J. and Lee, J.H. (2007b) Preliminary study for the Tapajos gold mine province, Brazil. Economic and Environmental Geology, v. 40, p. 497-501 

  23. Kim, I.J. and Lee, J.H. (2007c) Introduce to information on the geology and mineral provinces of Brazil. Economic and Environmental Geology, v. 40, p. 827-832 

  24. Kim, I.J. and Lee, J.H. (2008) Preliminary study for the Igarape Bahia deposit in Carajas province, Brazil. Economic and Environmental Geology, v. 41, p. 145-149 

  25. Kim, I.J., Lee, J.H., Lee, S.R., Seoo, J.R., Kim, Y.B. and Lee, G.H. (2004a) The trench exploration of the gold deposits of the Tanggung area of Java, Indonesia. Economic and Environmental Geology, v. 37, p. 277-290 

  26. Kim, I.J., Lee, J.H., Seo, J.R., Lee, S.R., Kim, Y.B. and Lee, G.H. (2004b) The present of state of the metal and gold deposits, Indonesia. Economic and Environmental Geology, v. 37, p. 269-276 

  27. Kim, Y.H. (2008) The policy direction and development condition of oversea mineral resource. Symposium of oversea mineral resource development, p. 7-10 

  28. Kim, Y.D., Park, H.S., Kim, S.Y. and Heo, C.H. (2008) An analysis on mineral resources policies of China. Economic and Environmental Geology, v. 41, p. 151-163 

  29. Kirkham, R.V. (1972) Porphyry deposits; in report of activities, Part B: November 1971 to March 1972: Geological Survey of Canada, Paper 72-1, p. 62-64 

  30. Kirkham, R.V. and Sinclair, W.D. (1996) Gites porphyriques de cuivre, de molybdene, d'or, de tungstene, d'etain et d'argent, in Eckatrand, O.R., Sinclair, W.D., et Thorpe, R.I., eds. Geologie des types de gites mineraux du Canada. Commission geologique du Canada, Geologie du Canada, v. 8, p. 468-495 

  31. Kwon, S.J. (2008) Development strategy of oversea resource for major mineral resource. Symposium of oversea mineral resource development, p. 19-31 

  32. Large, R.R. (1992) Australian volcanic-hosted massive sulphide deposits: features, styles and genetic models. Economic Geology, v. 87, p. 471-510 

  33. Lee, J.H. and Kim, I.J. (2003) Geologic, fluid inclusion, and sulfur isotopic studies of hydrothermal deposit in the Tanggueng district, West Java, Indonesia. Economic and Environmental Geology, v. 36, p. 321-328 

  34. Lee, J.H., Kim, I.J. and Kim, B.C. (2007) The scheme of the mineral resources and investment opportunity, the Republic of Kazakhstan. Economic and Environmental Geology, v. 40, p. 503-511 

  35. Lee, H.K., Moon, H.S. and Oh, M.S. (2007) Economic mineral deposits in Korea. 762p 

  36. Ministry of Knowledge Economy (2008) Development of oversea resources (http://www.mke.go.kr/index2.html) 

  37. Orris, G.J. and Grauch, R.I. (2002) Rare earth element mines, deposits, and occurrences: USGS, Open-File Report 02-189, 174p 

  38. Paradis, S., Hannigan, P. and Dewing, K. (2007) Mississippi valley-type leas-zinc deposits(MVT). In Wayne, D.G. (eds), Mineral Deposits of Canada : A Synthesis of Major Deposit Types, District Metallogeny, the Evolution of Geological Provinces and Exploration Methods. Geological Survey of Canada, p. 185-204 

  39. Sinclair, W.D. (2007) Porphyry deposits. In Wayne, D.G. (eds), Mineral Deposits of Canada : A Synthesis of Major Deposit Types, District Metallogeny, the Evolution of Geological Provinces and Exploration Methods. Geological Survey of Canada, p. 223-244 

  40. Singer, D.A. (1995) World-class base and precious metal deposits - a quantitative analysis. Economic Geology, v. 90, p. 88-104 

  41. Smith, M. and Chengyu, W. (2000) The geology and genesis of the Bayan Obo Fe-REE-Nb deposit: A review, in Porter, T.M., ed., Hydrothermal iron oxide coppergold and related deposits: A global perspective: PGC Publishing, Adelaide, v. 1, p. 271-281 

  42. USGS (2003) Open-File Report (http://pubs.usgs.gov/of/ 2003/of03-220) 

  43. USGS (2006) National mineral-resource assessment: The 1996 estimate of undiscovered gold, silver, copper, lead, and zinc remaining in the United States (http://pubs.usgs.gov/info/assessment) 

  44. USGS (2007) Introduction to Regional Geology, Metallogenesis, and Tectonics of Northeast Asia. Open-File Report 2007-1183-A(58p.), Open-File Report 2007- 1183-B(43p.), Open-File Report 2007-1183-C(123p.), Open-File Report 2007-1183-Appendix A(24p.), Open- File Report 2007-1183-Appendix B(26p.), Open-File Report 2007-1183-Appendix C(43p.) 

  45. USGS (2008) Mineral commodity summaries 2008. 199p 

  46. Yang, D.Y. (1991) Mineralogy, petrology and geochemistry of the magnesian skarn-type magnetite deposits at the Shinyemi mine, Republic of Korea. Ph.D. thesis, Waseda University, 323p 

  47. Zaw, K., Peters, S.T., Cromie, P., Burrett, C. and Hou, Z. (2007) Nature, diversity of deposit types and metallogenic relations of South China. Ore Geology Reviews, v. 31, p. 3-47 

저자의 다른 논문 :

섹션별 컨텐츠 바로가기

AI-Helper ※ AI-Helper는 오픈소스 모델을 사용합니다.

AI-Helper 아이콘
AI-Helper
안녕하세요, AI-Helper입니다. 좌측 "선택된 텍스트"에서 텍스트를 선택하여 요약, 번역, 용어설명을 실행하세요.
※ AI-Helper는 부적절한 답변을 할 수 있습니다.

선택된 텍스트

맨위로