2002Applied Earth Science Transactions of the Institutions of Mining and Metallurgy Section BRequires access

Ore mineralogy of the mesothermal gold lodes of the Dolgellau gold belt, North Wales

John S. Mason, R. E. Bevins, David H. M. Alderton

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Abstract

The auriferous quartz-sulphide veins of the Dolgellau gold belt represent the finest example of a pre-Acadian, mesothermal gold-lode metallogenic province in the United Kingdom. The gold lodes are composite, multi-stage, ribbon-quartz bodies occupying shear zones in clastic marine sedimentary rocks, including black mudstones, of Middle to Upper Cambrian age and in associated altered, basic-intermediate intrusives. Petrological studies have revealed a complex history of multiphase mineralization and anomalously pervasive hydrothermal alteration. The mesothermal gold-lode mineralization has a four-stage paragenetic sequence comprising early Fe-Co-As followed by localized, bonanza-style Au-Ag-Bi-Te-Pb. Stage three is Cu-Fe-dominated, whereas the final stage is dominated by Pb-Zn. Quartz and carbonates accompany all stages, their relative abundances varying considerably from locality to locality. The textural relationships of the ore minerals have been partially modified by post-depositional processes related to regional, strain-related metamorphism and Acadian deformation, but the veins still reveal a consistent regional paragenesis, a detailed account of which is published here for the first time. A discussion of the redefined paragenetic sequence of the gold lodes is followed by a reinterpretation of the extensive existing pool of previously published analytical data.

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The auriferous quartz-sulphide veins of the Dolgellau gold belt represent the finest example of a pre-Acadian, mesothermal gold-lode metallogenic province in the United Kingdom. The gold lodes are composite, multi-stage, ribbon-quartz bodies occupying shear zones in clastic marine sedimentary rocks, including black mudstones, of Middle to Upper Cambrian age and in associated altered, basic-intermediate intrusives. Petrological studies have revealed a complex history of multiphase mineralization and anomalously pervasive hydrothermal alteration. The mesothermal gold-lode mineralization has a four-stage paragenetic sequence comprising early Fe-Co-As followed by localized, bonanza-style Au-Ag-Bi-Te-Pb. Stage three is Cu-Fe-dominated, whereas the final stage is dominated by Pb-Zn. Quartz and carbonates accompany all stages, their relative abundances varying considerably from locality to locality. The textural relationships of the ore minerals have been partially modified by post-depositional processes related to regional, strain-related metamorphism and Acadian deformation, but the veins still reveal a consistent regional paragenesis, a detailed account of which is published here for the first time. A discussion of the redefined paragenetic sequence of the gold lodes is followed by a reinterpretation of the extensive existing pool of previously published analytical data.

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Available abstract

The auriferous quartz-sulphide veins of the Dolgellau gold belt represent the finest example of a pre-Acadian, mesothermal gold-lode metallogenic province in the United Kingdom. The gold lodes are composite, multi-stage, ribbon-quartz bodies occupying shear zones in clastic marine sedimentary rocks, including black mudstones, of Middle to Upper Cambrian age and in associated altered, basic-intermediate intrusives. Petrological studies have revealed a complex history of multiphase mineralization and anomalously pervasive hydrothermal alteration. The mesothermal gold-lode mineralization has a four-stage paragenetic sequence comprising early Fe-Co-As followed by localized, bonanza-style Au-Ag-Bi-Te-Pb. Stage three is Cu-Fe-dominated, whereas the final stage is dominated by Pb-Zn. Quartz and carbonates accompany all stages, their relative abundances varying considerably from locality to locality. The textural relationships of the ore minerals have been partially modified by post-depositional processes related to regional, strain-related metamorphism and Acadian deformation, but the veins still reveal a consistent regional paragenesis, a detailed account of which is published here for the first time. A discussion of the redefined paragenetic sequence of the gold lodes is followed by a reinterpretation of the extensive existing pool of previously published analytical data.

Key concepts: Mesothermal, Geology, Geochemistry, Lode, Arsenopyrite, Paragenesis, Metamorphism, Overprinting

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