Reflectance of dispersed vitrinite in shales hosting Pb–Zn–Cu ore deposits in western Cuba: comparison with clay crystallinity
The Pinar del Rio district of western Cuba contains several examples of stratiform Pb–Zn mineralization underlain by stockwork Cu mineralization. Similar deposits in Canada and Australia have been variously interpreted as products of seafloor hydrothermal systems or of much later hydrothermal activi...
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Published in: | International journal of coal geology Vol. 47; no. 3; pp. 161 - 170 |
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Abstract | The Pinar del Rio district of western Cuba contains several examples of stratiform Pb–Zn mineralization underlain by stockwork Cu mineralization. Similar deposits in Canada and Australia have been variously interpreted as products of seafloor hydrothermal systems or of much later hydrothermal activity associated with peak metamorphism during deep burial. The Cuban deposits are Jurassic in age and are less overprinted by later tectonic events than other deposits of this type, so they offer a useful opportunity to resolve these controversies.
Vitrinite reflectance and illite and chlorite crystallinity were studied from cores and mine exposures from several localities in western Cuba. Dispersed vitrinite in host shales shows a sharp increase in thermal maturity over three distinct stages from host-rock to stratiform mineralization to stock-work mineralization. Based on vitrinite data from modern hydrothermal systems, the paleotemperatures are 175, 250, and 300 °C. The clay mineral results also show a step-wise increase in the crystallinity of illite and chlorite. In addition, there is an increasing dominance of chlorite over illite. When compared to burial diagenetic trends, chlorite crystallinity in the Cuban samples matches values expected from
R
r, whereas illite tends to yield lower-than-expected crystallinities. The clay results indicate that chlorite is an ore-stage mineral that equilibrated at the same temperature/pressure conditions as the vitrinite, whereas the illite is largely detrital and only incompletely recrystallized in the relatively short times available. These results are best explained as reflecting relatively low amounts of heating of shales in the country rock by burial diagenesis, progressing to intermediate heating by exhalative seafloor hydrothermal fluids in the stratiform portion of the deposits, and finally to still higher temperatures in the sub-seafloor stockwork portion. |
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AbstractList | The Pinar del Rio district of western Cuba contains several examples of stratiform Pb–Zn mineralization underlain by stockwork Cu mineralization. Similar deposits in Canada and Australia have been variously interpreted as products of seafloor hydrothermal systems or of much later hydrothermal activity associated with peak metamorphism during deep burial. The Cuban deposits are Jurassic in age and are less overprinted by later tectonic events than other deposits of this type, so they offer a useful opportunity to resolve these controversies.
Vitrinite reflectance and illite and chlorite crystallinity were studied from cores and mine exposures from several localities in western Cuba. Dispersed vitrinite in host shales shows a sharp increase in thermal maturity over three distinct stages from host-rock to stratiform mineralization to stock-work mineralization. Based on vitrinite data from modern hydrothermal systems, the paleotemperatures are 175, 250, and 300 °C. The clay mineral results also show a step-wise increase in the crystallinity of illite and chlorite. In addition, there is an increasing dominance of chlorite over illite. When compared to burial diagenetic trends, chlorite crystallinity in the Cuban samples matches values expected from
R
r, whereas illite tends to yield lower-than-expected crystallinities. The clay results indicate that chlorite is an ore-stage mineral that equilibrated at the same temperature/pressure conditions as the vitrinite, whereas the illite is largely detrital and only incompletely recrystallized in the relatively short times available. These results are best explained as reflecting relatively low amounts of heating of shales in the country rock by burial diagenesis, progressing to intermediate heating by exhalative seafloor hydrothermal fluids in the stratiform portion of the deposits, and finally to still higher temperatures in the sub-seafloor stockwork portion. |
Author | Maynard, J.Barry Hower, James C Elswick, Erika R |
Author_xml | – sequence: 1 givenname: J.Barry surname: Maynard fullname: Maynard, J.Barry email: maynarjb@uc.edu organization: Department of Geology, University of Cincinnati, P.O. Box 210013, Cincinnati, OH 45221, USA – sequence: 2 givenname: Erika R surname: Elswick fullname: Elswick, Erika R email: eelswick@indiana.edu organization: Department of Geological Sciences, Indiana University, 1005 East Tenth St., Bloomington, IN, 47405, USA – sequence: 3 givenname: James C surname: Hower fullname: Hower, James C email: hower@caer.uky.edu organization: University of Kentucky Center for Applied Energy Research, 2540 Research Park Dr., Lexington KY, 40511,USA |
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CitedBy_id | crossref_primary_10_1016_j_coal_2011_08_004 crossref_primary_10_1016_j_coal_2024_104534 crossref_primary_10_1016_j_coal_2023_104253 crossref_primary_10_1016_j_jafrearsci_2022_104582 crossref_primary_10_1016_j_coal_2017_11_013 crossref_primary_10_1144_jgs2019_055 crossref_primary_10_3390_min11040414 crossref_primary_10_1346_CCMN_2007_0550209 |
Cites_doi | 10.1130/0091-7613(1983)11<384:IOTOMO>2.0.CO;2 10.2113/gsecongeo.95.1.1 10.1029/92TC01002 10.1139/e89-059 10.2113/gsecongeo.90.7.2058 10.1007/s001260050172 10.1007/s005310050230 10.1016/S0146-6380(97)00010-7 10.1016/S0009-2541(99)00112-6 10.2113/95.2.361 10.1007/s004100050344 10.1111/j.1525-1314.1991.tb00561.x 10.1016/0375-6505(81)90005-5 10.1180/claymin.1989.024.4.01 10.2113/gsecongeo.93.8.1190 10.1016/0016-7037(95)00024-T 10.1016/0016-7037(85)90223-6 10.2113/gsecongeo.89.5.1031 10.2113/gsecongeo.86.2.364 |
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Keywords | Cuba Chlorite crystallinity Black shales Vitrinite reflectance Illite crystallinity illite Mesozoic burial sheet silicates silicates copper hydrothermal conditions zinc clastic rocks diagenesis black shale thermal maturity paleotemperature reflectance chlorite crystallinity metamorphism lead Caribbean region sedimentary rocks Jurassic mineralization clay minerals vitrinite Phanerozoic |
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Snippet | The Pinar del Rio district of western Cuba contains several examples of stratiform Pb–Zn mineralization underlain by stockwork Cu mineralization. Similar... |
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SubjectTerms | Black shales Chlorite crystallinity Coal Cuba Earth sciences Earth, ocean, space Exact sciences and technology Illite crystallinity Mineralogy Sedimentary rocks Silicates Vitrinite reflectance |
Title | Reflectance of dispersed vitrinite in shales hosting Pb–Zn–Cu ore deposits in western Cuba: comparison with clay crystallinity |
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