The Alshar epithermal Au-As-Sb-Tl deposit, southern Macedonia

А. В. Волков1, Todor Serafimovski2, N. T. Kochneva1, I. N. Tomson1, Goran Tasev2
1Institute of Geology of Ore Deposits, Petrography, Mineralogy, and Geochemistry, Russian Academy of Sciences, Moscow, Russia
2Faculty of Mining and Geology, Ss. Cyril and Methodius University, Stip, Republic of Macedonia (FYROM)

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G. B. Arehart, S. L. Chrysoulis, and S. E. Kesler, “Gold and Arsenic Iron Sulfides from Sediment-Hosted Disseminated Gold Deposits,” Econ. Geol. 88, 171–196 (1993).

A. Beran, M. Gotzinger, and B. Rieck, “Fluid Inclusion in Realgar from Allchar,” in Proceedings of the Symposium on Thallium Neutrino detection (Dubrovnic, 1990).

B. Boev, “Petrolojski, geochemiski i vulcanolojski na vilkanskite karpi ot Ko’uf Planina,” Doktorska disertacija (Štip, 1988).

B. Boev and T. Serafimovski, “General Genetic Model of the Alshar Deposit,” in Proceeding of the Annual Meeting on IGCP Project 356 (Sofia, 1996), Vol. 1, pp. 75–84.

B. Boev, V. Bermanes, T. Serafimovski, et al., “Alshar Mineral Assemblage,” Geol. Macedonica Suppl. 15/16, 1–23 (2001–2002).

P. Emsbo, A. H. Hofstra, E. A. Launa, et al., “Origin of High-Grade Gold Ore, Source of Ore Fluid Component, and Genesis of the Meikle and Neighboring Carlin-Type Deposits, Northern Carlin Trend, Nevada,” Econ. Geol. 98(6), 1069–1105 (2003).

L. G. Filimonova and A. V. Chugaev, “Role of Basic Matter and Volcanic Host Rocks in the Formation of Preore Postmagmatic Minerals in the Dukat Ore Field,” Tikhookean. Geol. 21(5), 95–107 (2002).

E. Frantz, “Mineralogishe, geochemishe und isotopengeochemishe Untersuchungen der As-Tl Sulfide in der Lagerstätte von Allchar,” Doctoral Dissertation (Mainz, 1994).

A. D. Genkin, N. S. Bortnikov, L. Cabri, et al., “A Multilevel Study of Invisible Gold in Arsenopyrite from Four Mesothermal Gold Deposits in Siberia, Russian Federation,” Econ. Geol. 93(24), 463–487 (1998).

B. Hadzi-Petrusev, Izvestaj od prospekcijata na primarnata distribucija na zlatoto vo naogalisteto Alsar (Interen Izvestaj-Geoinstitut-Skopje, Kavadarci, 1987).

S. Jancovic, “Metallogenic Features of the Alsar Epithermal Sb-As-Tl-Au Deposit,” N. Jb. Miner. Abh. November, 25–41 (1993).

S. E. Kesler, J. Fortuna, Z. Ye. Jeffrey, et al., “Evaluation of the Role of Sulfidisation in Deposition of Gold Screamer Section of the Betze-Post Carlin-Type Deposit, Nevada,” Econ. Geol. 98(6), 1137–1157 (2003).

N. T. Kochneva and K. Romich, “Structural Features of Present-Day Topography in Serbia and Macedonia,” in Metalliferous Orogenic Structural Features and Their Research Methods (Nauka, Moscow, 1981), pp. 7–19 [in Russian].

N. Kochneva, R. Stojanov, and B. Boev, “A Neogene’s Orogenic Tectonic of East Macedonia (with Use of Morphostructural Analysis),” in Proceeding of Symposium (Štip-Dojran, 1997), pp. 119–123.

S. Lepitkova, Petroloski karakteristiki na vulkaniskite karpi od okolinata na naogalisteto Alsar so poseben osvrt na izotopite na olovoto (Mag. Teza, Štip, 1995).

J. L. Muntean, J. Cline, M. J. Jonston, et al., “Controversies on the Origin of World-Class Gold Deposits. Part 1: Carlin-Type Gold Deposits in Nevada,” SEG Newsletter, No. 59, 11–19 (2004).

J. B. Murowchick, “Marcasite Inversion and the Petrographic Determination of Pyrite Ancestry,” Econ Geol. 87, 1141–1152 (1992).

J. Nielsen, “Sulfur Isotopes,” in Lecture in Isotope Geology (Springer Verlag, Berlin, 1979), pp. 283–312.

Yu. Novozhilov and A. M. Gavrilov, Gold-Sulfide Deposits in Terrigenous Carbonaceous Sequences (TsNIGRI, Moscow, 1999) [in Russian].

H. Ohmoto and R. O. Rye, “Isotopes of Sulfur and Carbon,” in Geochemistry of Hydrothermal Ore Deposits (Wiley, New York, 1979; Mir, Moscow, 1982), pp. 509–567.

T. J. Percival and A. Radtke, “Sedimentary Rock-Hosted Disseminated Gold Mineralisation in the Alsar District, Macedonia,” Can. Mineral. 32, 649–655 (1994).

T. J. Percival, A. S. Radtke, S. R. Jancovic, et al., “Gold Mineralization of the Carlin Type in the Alsar District, Macedonia, Yugoslavia,” in Proceeding of the Eight Quadrennial IAGOD Symposium (Ottawa, 1990), pp. 637–646.

A. S. Radtke, R. G. Rye, and P. W. Dickson, “Geology and Stable Isotope Studies of the Carlin Gold Deposits, Nevada,” Econ. Geol. 75(5), 641–672 (1980).

T. Serafimovski, V. Cifliganes, S. Jancovic, et al., “Genetic Model of the Buchim Porphyry Copper Deposit, Republic of Macedonia,” in Proceedings of the Annual Meeting on Plate Tectonic Aspects of the Alpine Metallogeny in the Carpatho-Balkan Region (Sofia, 1996), Vol. 1, pp. 63–73.

A. A. Sidorov and I. N. Tomson, “Ore Resource Potential of Black-Shale Sequences: Convergence of Alternative Concepts,” Vest. Ross. Akad. Nauk 70(8), 719–724 (2000).

I. N. Tomson, V. S. Kravtsova, N. T. Kochneva, et al., Metallogeny of Orogens (Nedra, Moscow, 1992) [in Russian].

I. N. Tomson and O. P. Polyakova, Formation Succession and Direction Metallogenic Zone Migration with Reference to the Primorye Orogen, Dokl. Akad. Nauk 374(6), 809–812 (2000) [Dokl. Earth Sci. 375 (8), 1225–1228 (2000)].

I. N. Tomson, T. Serafimovski, and N. T. Kochneva, “Cenozoic Metallogeny of Eastern Macedonia,” Geol. Rudn. Mestorozhd. 40(3), 195–204 (1998) [Geol. Ore Deposits 40 (3), 175–183 (1998)].

K. Vaptsarov, Mishev, N. T. Kochneva, et al., “Tectonic Elements in Present-Day Topography of Southern Bulgaria and the Recognition of Superimposed Deep Structures,” in Geology of the Balkans (Sofia, 1986), pp. 3–19.

A. V. Volkov, N. E. Savva, A. A. Sidorov, et al., “Unique Ore Complexes in the Northwestern Sector of the Pacific Ore Belt,” Dokl. Akad. Nauk 399(4), 369–372 (2004) [Dokl. Earth. Sci. 399A (9), 1185–1188 (2004)].

A. V. Volkov and A. A. Sidorov, Unique Gold-Ore District in Chukchi Peninsula (SVKNII, Magadan, 2001) [in Russian].

J. D. Wells and T. E. Millens, “Gold-Bearing Arsenic Pyrites, Determined by Microprobe Analysis, Cortes and Carlin Gold Mines, Nevada,” Econ. Geol. 68(2), 187–201 (1973).