All Issue

2025 Vol.62, Issue 2 Preview Page

Technical Report

30 April 2025. pp. 138-152
Abstract
References
1

Badarch, G. 2005. Tectonic overview of Mongolia, Mongolian Geoscientist, 27, p.1-7.

2

Badarch, G., Cunningham, W.D., and Windley, B.F., 2002. A new terrane subdivision for Mongolia: implications for the phanerozoic crustal growth of central asia, Journal of Asian Earth Sciences, 21(1), p.87-110.

10.1016/S1367-9120(02)00017-2
3

Bae, H. and Kim, Y., 2021. Technologies of lithium recycling from waste lithium ion batteries: a review, Materials advances, 2(10), p.3234-3250.

10.1039/D1MA00216C
4

Bowell, R.J., Lagos, L., de los Hoyos, C.R., and Declercq, J., 2020. Classification and characteristics of natural lithium resources, Elements, 16(4), p.259-264.

10.2138/gselements.16.4.259
5

Choi, H.K., Kim, C.H., Cho, Y.J., and Jeon, H. S., 2023. Status of tin mineral resources according to the geological characteristics and mineralization in Mongolia, Journal of the Korean Society of Mineral and Energy Resources Engineers, 60(4), p.252-264.

10.32390/ksmer.2023.60.4.252
6

Dostal, J. and Gerel, O., 2022. Occurrences of niobium and tantalum mineralization in Mongolia, Minerals, 12(12), p.1529.

10.3390/min12121529
7

Dostal, J. and Gerel, O., 2023. Rare earth element deposits in Mongolia, Minerals, 13(1), p.129.

10.3390/min13010129
8

Dostal, J. and Gerel, O., 2024. Characteristics of lithium deposits in Mongolia, Minerals, 14(10), p.960.

10.3390/min14100960
9

Dostal, J., Svojtka, M., Gerel, O., and Corney, R., 2020. Early jurassic rare metal granitic pluton of the central asian orogenic belt in north-central Mongolia: tungsten mineralization, geochronology, petrogenesis and tectonic implications, Frontiers in Earth Science, 8, p.242.

10.3389/feart.2020.00242
10

Gerel, O. 2021. Rare metals: Tin, tungsten, molybdenum, lithium, tantalum, and niobium deposits, Mineral Resources of Mongolia, p.129-184.

10.1007/978-981-15-5943-3_5
11

Gerel, O., Pirajno, F., Batkhishig, B., and Dostal, J., 2021. Mineral Resources of Mongolia, Springer, Singapore, p.1-12.

10.1007/978-981-15-5943-3
12

Han, Y. and Zhao, G. 2018. Final amalgamation of the tianshan and junggar orogenic collage in the southwestern central asian orogenic belt: constraints on the closure of the paleo-asian ocean, Earth-Science Reviews, 186, p.129-152.

10.1016/j.earscirev.2017.09.012
13

Han, Z., Golev, A., and Edraki, M., 2021. A review of tungsten resources and potential extraction from mine waste, Minerals, 11(7), p.701.

10.3390/min11070701
14

Hedenquist, J.W. and Lowenstern, J.B., 1994. The role of magmas in the formation of hydrothermal ore deposits, Nature, 370(6490), p.519-527.

10.1038/370519a0
15

Heinrich, C.A., 1990. The chemistry of hydrothermal tin (-tungsten) ore deposition, Economic Geology, 85(3), p.457-481.

10.2113/gsecongeo.85.3.457
16

Helble, M., Hill, H., and Magee, D., 2020. Mongolia's Economic Prospects: Resource-rich and Landlocked Between Two Giants, Asian Development Bank, p.101-150

17

IEA, 2021. The role of critical minerals in clean energy transitions, International Energy Agency Report, p.50-84.

18

Kesler, S.E., Gruber, P.W., Medina, P.A., Keoleian, G.A., Everson, M.P., and Wallington, T.J., 2012. Global lithium resources: Relative importance of pegmatite, brine and other deposits, Ore geology reviews, 48, p.55-69.

10.1016/j.oregeorev.2012.05.006
19

KIGAM(Korea Institute of Geoscience and Mineral Resources), 2024.12.30., www.kigam.re.kr

20

KOMIS(Korea Mineral Resource Information Service), 2024.12.30., www.komis.or.kr

21

KOTRA(Korea Trade-Investment Promotion Agency), 2024.12.30., www.kotra.or.kr

22

Kovalenko, V.I. and Yarmolyuk, V.V., 1995. Endogenous rare metal ore formations and rare metal metallogeny of Mongolia, Economic Geology, 90(3), p.520-529.

10.2113/gsecongeo.90.3.520
23

Kovalenko, V.I. and Yarmolyuk, V.V., 2004. Ore deposits and metallogeny of Mongolia, In Tectonics, Magmatism and Metallogeny of Mongolia, Routledge, p.231-250

24

Kovalenko, V.I., Zaytsev, N.S., and Yanshin, A.L., 1981. Genetic types of rare-metal mineralization in Mongolia, International Geology Review, 23(7), p.857-864.

10.1080/00206818109455133
25

Lee, C.W., Bang, E., and Park, G.S., 2023. Building a mineral resources data platform for critical mineral exploration, Journal of the Korean Society of Mineral and Energy Resources Engineers, 60(5), p.315-325.

10.32390/ksmer.2023.60.5.315
26

Lee, S. and Lee, S., 2024. Geological characteristics, ore-forming processes, and mineral resources of rare earth element deposits in Mongolia, Economic and Environmental Geology, 57(6), p.709-720.

10.9719/EEG.2024.57.6.709
27

Linnen, R., Trueman, D.L., and Burt, R., 2014. Tantalum and niobium, Critical Metals Handbook, p.361-384.

10.1002/9781118755341.ch15
28

MRPAM(Mineral Resources and Petroleum Authority of Mongolia), 2024, Mineral Resources and Petroleum Statistics, p.2-50.

29

Porter, T.M., 2016. The geology, structure and mineralisation of the oyu tolgoi porphyry copper-gold-molybdenum deposits, Mongolia: a review, Geoscience Frontiers, 7(3), p.375-407.

10.1016/j.gsf.2015.08.003
30

Şengör, A.C., Sunal, G., Natal'in, B.A., and van der Voo, R., 2022. The altaids: a review of twenty-five years of knowledge accumulation, Earth-Science Reviews, 228, p.104013.

10.1016/j.earscirev.2022.104013
31

Shvartsev, S.L., Isupov, V.P., Vladimirov, A.G., Kolpakova, M.N., Ariunbileg, S., Shatskaya, S.S., and Moroz, E.N., 2012. Lithium and uranium in closed lakes of western Mongolia, Chemistry for Sustainable Development, 20, p.37-42.

32

Štemprok, M., 1991. Ongonite von ongon khairkhan, mongolei, Mineralogy and Petrology, 43, p.255-273.

10.1007/BF01164530
33

Tungalag, N., Jargalan, S., and Odbayar, O., 2016. Tungsten and tin deposits of Mongolia, Mineral Resources in Mongolia: Special, p.66.

34

Uguudei, D., Kusky, T., Khukhuudei, U., Baldorj, B., and Lu, W., 2023. Discovery, geological setting and mineralization of the shuvuutai molybdenum deposit, central-southern Mongolia, Ore Geology Reviews, 162, p.105710.

10.1016/j.oregeorev.2023.105710
36

Westra, G. and Keith, S.B., 1981. Classification and genesis of stockwork molybdenum deposits, Economic Geology, 76(4), p.844-873.

10.2113/gsecongeo.76.4.844
37

Windley, B.F., Alexeiev, D., Xiao, W., Kröner, A., and Badarch, G., 2007. Tectonic models for accretion of the central asian orogenic belt, Journal of the Geological Society, 164(1), p.31-47.

10.1144/0016-76492006-022
38

World Bank, 2024. Recommendations for Mongolia's Sustainable Development Vision, Wold Bank Report, p.101-150.

39

Xiao, W., Windley, B.F., Han, C., Liu, W., Wan, B., Zhang, J.E., and Song, D., 2018. Late paleozoic to early triassic multiple roll-back and oroclinal bending of the Mongolia collage in central asia, Earth-Science Reviews, 186, p.94-128.

10.1016/j.earscirev.2017.09.020
Information
  • Publisher :The Korean Society of Mineral and Energy Resources Engineers
  • Publisher(Ko) :한국자원공학회
  • Journal Title :Journal of the Korean Society of Mineral and Energy Resources Engineers
  • Journal Title(Ko) :한국자원공학회지
  • Volume : 62
  • No :2
  • Pages :138-152
  • Received Date : 2025-02-24
  • Revised Date : 2025-04-04
  • Accepted Date : 2025-04-07