The super large Pb Zn deposit at Fankou is very complex in metallogenic mechanism. Syngenetic brine sedimentation, hot submarine spring eruption—accumulation, syngenetic sedimentation—vadose brine replacement had be...The super large Pb Zn deposit at Fankou is very complex in metallogenic mechanism. Syngenetic brine sedimentation, hot submarine spring eruption—accumulation, syngenetic sedimentation—vadose brine replacement had been supposed as the genetic models before. Under these models, syngenetic mineralization should be dominant in ore formation. However, a series of geological and geochemical properties investigated by authors of this paper are contrary to these models. Therefore, the authors here suggest that this deposit is a typical polygenetic compound ore deposit which share the properties of multistages of geotectonic evolution, multifactors of mineralization control, multisystem of material derivation of mineralization, multimodes of mineralization and multitypes of genesis.展开更多
The Fankou Pb-Zn deposit is a very important and famous deposit in China. The time of Pb-Zn enrichment has been debated for a long time in this deposit. A total of seventeen samples of three sections were taken from t...The Fankou Pb-Zn deposit is a very important and famous deposit in China. The time of Pb-Zn enrichment has been debated for a long time in this deposit. A total of seventeen samples of three sections were taken from the Fankou mine for the study of mineralization time and the mechanism of ore formation. The samples were analyzed by microscope, Soxhlet-extract, GC, and GC/MS methods. The results indicated that organic bulk parameters vary with the Pb-Zn contents in different samples and clearly were influenced by ore sulfide formation. Organically geochemical parameters (MPI 1, CPI) indicate that the paleotemperatures in the Fankou deposit are lower than 80℃ in all three sections. Sulfides in the wall rocks might occur mainly during synsedimentation or early diagenesis by BSR or partly by PR, rather than by TSR at such low temperatures, this stage may be the first mineralization stage. Sulfides near the faults might be formed by TSR after sedimentation, this stage may be the second mineralization stage.展开更多
文摘The super large Pb Zn deposit at Fankou is very complex in metallogenic mechanism. Syngenetic brine sedimentation, hot submarine spring eruption—accumulation, syngenetic sedimentation—vadose brine replacement had been supposed as the genetic models before. Under these models, syngenetic mineralization should be dominant in ore formation. However, a series of geological and geochemical properties investigated by authors of this paper are contrary to these models. Therefore, the authors here suggest that this deposit is a typical polygenetic compound ore deposit which share the properties of multistages of geotectonic evolution, multifactors of mineralization control, multisystem of material derivation of mineralization, multimodes of mineralization and multitypes of genesis.
基金support to this study by the NSFC Projects (Nos.40173004 and 40773040) is gratefully acknowledged
文摘The Fankou Pb-Zn deposit is a very important and famous deposit in China. The time of Pb-Zn enrichment has been debated for a long time in this deposit. A total of seventeen samples of three sections were taken from the Fankou mine for the study of mineralization time and the mechanism of ore formation. The samples were analyzed by microscope, Soxhlet-extract, GC, and GC/MS methods. The results indicated that organic bulk parameters vary with the Pb-Zn contents in different samples and clearly were influenced by ore sulfide formation. Organically geochemical parameters (MPI 1, CPI) indicate that the paleotemperatures in the Fankou deposit are lower than 80℃ in all three sections. Sulfides in the wall rocks might occur mainly during synsedimentation or early diagenesis by BSR or partly by PR, rather than by TSR at such low temperatures, this stage may be the first mineralization stage. Sulfides near the faults might be formed by TSR after sedimentation, this stage may be the second mineralization stage.