Multi-Method (Geo-) Thermochronology and Trace Elements Tracing Magmatism, Mineralization and Tectonic Evolution
With the rapid development of analytical techniques, especially the in situ Lu-Hf, Rb-Sr, U-Pb, fission-track, and (U-Th)/He dating of garnet, zircon, apatite, and other accessory minerals, several important geological issues have been successfully resolved or re-determined in the past decade. Among...
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| Language: | English |
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MDPI - Multidisciplinary Digital Publishing Institute
2025
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| ISBN: | 3725834059, 9783725834051, 9783725834068, 3725834067 |
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| Abstract | With the rapid development of analytical techniques, especially the in situ Lu-Hf, Rb-Sr, U-Pb, fission-track, and (U-Th)/He dating of garnet, zircon, apatite, and other accessory minerals, several important geological issues have been successfully resolved or re-determined in the past decade. Among these, the precise temporal evolution and duration of magmatism and mineralized processes, as well as the uplift and exhumation history of mineral deposits and basins within orogenic belts and cratons, can assist the exploration of mineral and petroleum resources. Moreover, in situ mineral-scale trace element concentrations could also be simultaneously determined using LA-ICP-MS in situ accessory mineral dating. This would provide new perspectives on the formation and evolution of major geological objects via integration with corresponding ages. Although previous studies have focused on most scientific issues of magmatism, mineralization, and tectonic evolution in different geological objects, several aspects of these investigations have not previously shown agreement. This Special Issue collects contributions related to the field of petrology, mineralogy, and mineral deposits as well as sedimentology and tectonics based on state-of-the-art analytical techniques. This reprint will contribute to a better understanding of scientific issues of magmatism, mineralization, and tectonic evolution in different geological objects. |
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| AbstractList | With the rapid development of analytical techniques, especially the in situ Lu-Hf, Rb-Sr, U-Pb, fission-track, and (U-Th)/He dating of garnet, zircon, apatite, and other accessory minerals, several important geological issues have been successfully resolved or re-determined in the past decade. Among these, the precise temporal evolution and duration of magmatism and mineralized processes, as well as the uplift and exhumation history of mineral deposits and basins within orogenic belts and cratons, can assist the exploration of mineral and petroleum resources. Moreover, in situ mineral-scale trace element concentrations could also be simultaneously determined using LA-ICP-MS in situ accessory mineral dating. This would provide new perspectives on the formation and evolution of major geological objects via integration with corresponding ages. Although previous studies have focused on most scientific issues of magmatism, mineralization, and tectonic evolution in different geological objects, several aspects of these investigations have not previously shown agreement. This Special Issue collects contributions related to the field of petrology, mineralogy, and mineral deposits as well as sedimentology and tectonics based on state-of-the-art analytical techniques. This reprint will contribute to a better understanding of scientific issues of magmatism, mineralization, and tectonic evolution in different geological objects. |
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| Editor | Chang, Jian Zhang, Cun Yang, Fan |
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| SubjectTerms | 34S stable isotopes A1-type granite adakitic rocks affinity Argoland crude oil Daliuhang gold deposit Earth Sciences, Geography, Environment, Planning Egypt thermochronology Fukang Sag geochemical anomaly recognition geochemical characteristics geothermal gradient gold gold deposit gold deposits heat flow high oxygen fugacity H–O–Pb–He–Ar isotopes in situ elements analysis in situ sulfur isotopes Indo-Burma Range interpretability technique Jiaodong Peninsula LA-ICP-MS Laoshan suite maturity evolution microcontinent mineralogy characteristics Myanmar n/a Neotethys Ocean offshore of Northern Sanshandao organic acid pyrite pyrite Rb–Sr isochron age pyrite trace elements Rb–Sr isochron age Reference, Information and Interdisciplinary subjects Research and information: general rift flanks scheelite Shapley values Sinai tectonic history spectroscopic characteristics Sr-Nd isotopes tectono-thermal evolution the Arabian–Nubian shield thermal history thermochronometry Triassic west Qinling Xuebaoding zircon U–Pb age |
| Title | Multi-Method (Geo-) Thermochronology and Trace Elements Tracing Magmatism, Mineralization and Tectonic Evolution |
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