SciELO - Scientific Electronic Library Online

 
vol.38 issue3Mobile mud layer underneath the desiccated maar lake of Rincón de Parangueo and insights into its microbial fingerprintsSilicic magmas in the Michoacán-Guanajuato volcanic field: An overview of plumbing systems, crustal storage, and genetic processes author indexsubject indexsearch form
Home Pagealphabetic serial listing  

Services on Demand

Journal

Article

Indicators

Related links

  • Have no similar articlesSimilars in SciELO

Share


Revista mexicana de ciencias geológicas

On-line version ISSN 2007-2902Print version ISSN 1026-8774

Abstract

MADONDO, Joseph; CANET, Carles; NUNEZ-USECHE, Fernando  and  GONZALEZ-PARTIDA, Eduardo. Geology and geochemistry of jasperoids from the ‘Montaña de Manganeso’ district, San Luis Potosí, north-central Mexico. Rev. mex. cienc. geol [online]. 2021, vol.38, n.3, pp.193-209.  Epub Oct 22, 2025. ISSN 2007-2902.  https://doi.org/10.22201/cgeo.20072902e.2021.3.1651.

Large outcrops of jasperoids occur in the ‘Montaña de Manganeso’ mining district in north-central Mexico. They range from massive manganiferous jasperoids to highly brecciated, hematitic jasperoid. The jasperoids of ‘Montaña de Manganeso’ occur mainly as replacements of limestone, sandstone and shale, commonly nearby high-angle fault systems. The mineralogy of the jasperoids consist of quartz and its polymorphs (chalcedony, tridymite and cristobalite), Fe-Mn oxy-hydroxides, calcite and minor barite. Many outcrops show evidence of several periods of brecciation and silicification. The geochemical signature of the jasperoids suggests that silicification was product of hydrothermal activity. The jasperoids display enrichment in elements of hydrothermal provenance such as Ba, Sr, As, Cr, Mo, Sb, Ni, Zn and Cu, whereas are strongly depleted in the elements indicative of clastic sources such as Ti, K, Th and Zr. Element ratios such as (Fe+Mn)/Ti, Al/(Al+Fe+Mn), Fe/Mn and U /Th, along with the Al-Fe-Mn and Fe-Mn-(Ni+Co+Cu)×10 ternary diagrams confirm a hydrothermal origin. Low ∑REE, an enrichment of LREE over HREE, negative Ce anomalies and positive Y anomalies (YPASS/HoPAAS) also support the hydrothermal processes. The geological evidence, in the form of a feeder zone and extensive hydrothermal alteration, show that the silica forming the rocks originated from ascending hot fluids.

Keywords : jasperoid; hydrothermal; silicification; Fe-Mn oxides; San Luis Potosí.

        · abstract in Spanish     · text in English     · English ( pdf )