Publications des scientifiques de l'IRD

Fernandez-Mort A., Riquelme R., Alonso-Zarza A. M., Campos E., Bissig T., Mpodozis C., Carretier Sébastien, Herrera C., Tapia M., Pizarro H., Munoz S. (2018). A genetic model based on evapoconcentration for sediment-hosted exotic-Cu mineralization in arid environments : the case of the El Tesoro Central copper deposit, Atacama Desert, Chile. Mineralium Deposita, 53 (6), p. 775-795. ISSN 0026-4598.

Titre du document
A genetic model based on evapoconcentration for sediment-hosted exotic-Cu mineralization in arid environments : the case of the El Tesoro Central copper deposit, Atacama Desert, Chile
Année de publication
2018
Type de document
Article référencé dans le Web of Science WOS:000438424800003
Auteurs
Fernandez-Mort A., Riquelme R., Alonso-Zarza A. M., Campos E., Bissig T., Mpodozis C., Carretier Sébastien, Herrera C., Tapia M., Pizarro H., Munoz S.
Source
Mineralium Deposita, 2018, 53 (6), p. 775-795 ISSN 0026-4598
Although the formation of exotic-Cu deposits is controlled by multiple factors, the role of the sedimentary environment has not been well defined. We present a case study of the El Tesoro Central exotic-Cu deposit located in the Atacama Desert of northern Chile. This deposit consists of two mineralized bodies hosted within Late Cenozoic gravels deposited in an arid continental environment dominated by alluvial fans with sub-surficial ponded water bodies formed at the foot of these fans or within the interfan areas. Both exotic-Cu orebodies mostly consist of chrysocolla, copper wad, atacamite, paratacamite, quartz, opal, and calcite. The most commonly observed paragenesis comprises chrysocolla, silica minerals, and calcite and records a progressive increase in pH, which is notably influenced by evaporation. The results of stable isotope analyses (delta C-13 and delta O-18) and hydrogeochemical simulations confirm that evapoconcentration is the main controlling factor in the exotic-Cu mineralization at El Tesoro Central. This conclusion complements the traditional genetic model based on the gradual neutralization of highly oversaturated Cu-bearing solutions that progressively cement the gravels and underlying bedrock regardless of the depositional environment. This study concludes that in exotic-Cu deposits formed relatively far from the source, a favorable sedimentary environment and particular hydrologic and climatic conditions are essential to trap, accumulate, evapoconcentrate, neutralize and saturate Cu-bearing solutions to trigger mineralization. Thus, detailed sedimentological studies should be incorporated when devising exploration strategies in order to discover new exotic-Cu resources, particularly if they are expected to have formed relatively far from the metal sources.
Plan de classement
Géologie et formations superficielles [064]
Description Géographique
CHILI ; ATACAMA
Localisation
Fonds IRD [F B010073621]
Identifiant IRD
fdi:010073621
Contact