Matches in SemOpenAlex for { <https://semopenalex.org/work/W1997337532> ?p ?o ?g. }
- W1997337532 endingPage "465" @default.
- W1997337532 startingPage "440" @default.
- W1997337532 abstract "The common sulfide mineral pyrite is abundant throughout sedimentary uranium systems at Pepegoona, Pepegoona West and Pannikan, Lake Eyre Basin, South Australia. Combined chemical, isotopic and microstructural analysis of pyrite indicates variation in fluid composition, sulfur source and precipitation conditions during a protracted mineralization event. The results show the significant role played by pyrite as a metal scavenger and monitor of fluid changes in low-temperature hydrothermal systems. In-situ micrometer-scale sulfur isotope analyses of pyrite demonstrated broad-scale isotopic heterogeneity (δ34S = −43.9 to +32.4‰VCDT), indicative of complex, multi-faceted pyrite evolution, and sulfur derived from more than a single source. Preserved textures support this assertion and indicate a genetic model involving more than one phase of pyrite formation. Authigenic pyrite underwent prolonged evolution and recrystallization, evidenced by a genetic relationship between archetypal framboidal aggregates and pyrite euhedra. Secondary hydrothermal pyrite commonly displays hyper-enrichment of several trace elements (Mn, Co, Ni, As, Se, Mo, Sb, W and Tl) in ore-bearing horizons. Hydrothermal fluids of magmatic and meteoric origins supplied metals to the system but the geochemical signature of pyrite suggests a dominantly granitic source and also the influence of mafic rock types. Irregular variation in δ34S, coupled with oscillatory trace element zonation in secondary pyrite, is interpreted in terms of continuous variations in fluid composition and cycles of diagenetic recrystallization. A late-stage oxidizing fluid may have mobilized selenium from pre-existing pyrite. Subsequent restoration of reduced conditions within the aquifer caused ongoing pyrite re-crystallization and precipitation of selenium as native selenium. These results provide the first qualitative constraints on the formation mechanisms of the uranium deposits at Beverley North. Insights into depositional conditions and sources of both sulfide and uranium mineralization and an improved understanding of pyrite geochemistry can also underpin an effective vector for uranium exploration at Beverley North and other sedimentary systems of the Lake Eyre Basin, as well as in comparable geological environments elsewhere." @default.
- W1997337532 created "2016-06-24" @default.
- W1997337532 creator A5047612204 @default.
- W1997337532 creator A5052025175 @default.
- W1997337532 creator A5053338624 @default.
- W1997337532 creator A5062844756 @default.
- W1997337532 creator A5063530502 @default.
- W1997337532 date "2014-01-01" @default.
- W1997337532 modified "2023-10-16" @default.
- W1997337532 title "A combined chemical, isotopic and microstructural study of pyrite from roll-front uranium deposits, Lake Eyre Basin, South Australia" @default.
- W1997337532 cites W1619902242 @default.
- W1997337532 cites W1938264244 @default.
- W1997337532 cites W1963690145 @default.
- W1997337532 cites W1965744338 @default.
- W1997337532 cites W1968600947 @default.
- W1997337532 cites W1969282993 @default.
- W1997337532 cites W1969725957 @default.
- W1997337532 cites W1970369148 @default.
- W1997337532 cites W1972576751 @default.
- W1997337532 cites W1975278947 @default.
- W1997337532 cites W1976836542 @default.
- W1997337532 cites W1979849483 @default.
- W1997337532 cites W1982002946 @default.
- W1997337532 cites W1982905188 @default.
- W1997337532 cites W1983880814 @default.
- W1997337532 cites W1984547753 @default.
- W1997337532 cites W1988666017 @default.
- W1997337532 cites W1998387831 @default.
- W1997337532 cites W1999078890 @default.
- W1997337532 cites W2003182385 @default.
- W1997337532 cites W2003898863 @default.
- W1997337532 cites W2004467790 @default.
- W1997337532 cites W2010159195 @default.
- W1997337532 cites W2011826055 @default.
- W1997337532 cites W2018093298 @default.
- W1997337532 cites W2019501187 @default.
- W1997337532 cites W2030281083 @default.
- W1997337532 cites W2036425149 @default.
- W1997337532 cites W2036501693 @default.
- W1997337532 cites W2040949037 @default.
- W1997337532 cites W2041410712 @default.
- W1997337532 cites W2042173627 @default.
- W1997337532 cites W2046903318 @default.
- W1997337532 cites W2050605106 @default.
- W1997337532 cites W2052534726 @default.
- W1997337532 cites W2059314104 @default.
- W1997337532 cites W2062558671 @default.
- W1997337532 cites W2071105701 @default.
- W1997337532 cites W2075071049 @default.
- W1997337532 cites W2076003993 @default.
- W1997337532 cites W2081641920 @default.
- W1997337532 cites W2088096040 @default.
- W1997337532 cites W2089507620 @default.
- W1997337532 cites W2092725553 @default.
- W1997337532 cites W2100772140 @default.
- W1997337532 cites W2102210684 @default.
- W1997337532 cites W2108146587 @default.
- W1997337532 cites W2108740208 @default.
- W1997337532 cites W2123240837 @default.
- W1997337532 cites W2127357565 @default.
- W1997337532 cites W2130626244 @default.
- W1997337532 cites W2132595765 @default.
- W1997337532 cites W2136617541 @default.
- W1997337532 cites W2141120170 @default.
- W1997337532 cites W2146844961 @default.
- W1997337532 cites W2148016883 @default.
- W1997337532 cites W2150775343 @default.
- W1997337532 cites W2151319453 @default.
- W1997337532 cites W2154295153 @default.
- W1997337532 cites W2158618917 @default.
- W1997337532 cites W2161706050 @default.
- W1997337532 cites W2165399803 @default.
- W1997337532 cites W2171298843 @default.
- W1997337532 cites W2329979335 @default.
- W1997337532 cites W2335661622 @default.
- W1997337532 doi "https://doi.org/10.1016/j.gca.2013.10.017" @default.
- W1997337532 hasPublicationYear "2014" @default.
- W1997337532 type Work @default.
- W1997337532 sameAs 1997337532 @default.
- W1997337532 citedByCount "86" @default.
- W1997337532 countsByYear W19973375322014 @default.
- W1997337532 countsByYear W19973375322015 @default.
- W1997337532 countsByYear W19973375322016 @default.
- W1997337532 countsByYear W19973375322017 @default.
- W1997337532 countsByYear W19973375322018 @default.
- W1997337532 countsByYear W19973375322019 @default.
- W1997337532 countsByYear W19973375322020 @default.
- W1997337532 countsByYear W19973375322021 @default.
- W1997337532 countsByYear W19973375322022 @default.
- W1997337532 countsByYear W19973375322023 @default.
- W1997337532 crossrefType "journal-article" @default.
- W1997337532 hasAuthorship W1997337532A5047612204 @default.
- W1997337532 hasAuthorship W1997337532A5052025175 @default.
- W1997337532 hasAuthorship W1997337532A5053338624 @default.
- W1997337532 hasAuthorship W1997337532A5062844756 @default.
- W1997337532 hasAuthorship W1997337532A5063530502 @default.
- W1997337532 hasConcept C115393850 @default.
- W1997337532 hasConcept C127313418 @default.