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Article

Weathering-Controlled Copper Retention in the Saprolite of the Alvo 118 Deposit, Carajás, Brazil

by
Pabllo Henrique Costa dos Santos
1,*,
Marcondes Lima da Costa
1,2,
Nilson S Ferreira
3,
Mariella Alzamora Camarena
4 and
Rayara do Socorro Souza da Silva
5
1
Institute of Technology, Federal University of Pará, Belém 66075-110, PA, Brazil
2
Institute of Geosciences, Federal University of Pará, Belém 66075-110, PA, Brazil
3
Department of Physics, Federal University of Sergipe, São Cristóvão 49107-230, SE, Brazil
4
Xerém Campus, Federal University of Rio de Janeiro, Duque de Caxias 25240-005, RJ, Brazil
5
Senai Innovation Institute for Mineral Technologies, Belém 66035-080, PA, Brazil
*
Author to whom correspondence should be addressed.
Minerals 2025, 15(5), 501; https://doi.org/10.3390/min15050501
Submission received: 26 March 2025 / Revised: 30 April 2025 / Accepted: 3 May 2025 / Published: 8 May 2025
(This article belongs to the Section Mineral Deposits)

Abstract

The Carajás Mineral Province hosts one of the world’s most extensive sulfide-bearing copper belts. These deposits are typically covered by thick regolith, including gossans, laterites, colluviums, and soil, which can be used as important exploration indicators. In some cases, these covers can be mined alongside the parent hypogene ore. Therefore, accurate identification of copper-bearing minerals is essential for selecting the most appropriate metallurgical techniques. This study investigated the saprolite horizon overlying the Alvo 118 deposit, where the parent rocks are chloritites hosting copper-bearing hypogene sulfides, partially altered to an immature gossan. Saprolite formation was primarily controlled by the weathering of chlorite, mostly converted into kaolinite, with smectite and vermiculite serving as intermediates, forming a typical lower saprolite association. During weathering, iron released from chlorite and indirectly by vermiculite and smectite contributed to the formation of ferrihydrite, goethite, and hematite. Magnetite octahedrons, relics of the hypogene ore, pseudomorphic phases, are embedded in the clay mineral matrix. While FTIR analysis of kaolinite showed no evidence of copper retention, Mössbauer spectroscopy enabled the quantification of iron-bearing minerals, revealing a strong correlation between CuO contents and goethite and ferrihydrite. These results suggest that goethite and ferrihydrite may be the main copper carriers in the deposit, consistent with findings from similar deposits. Weak acid leaching is proposed as the most effective technique for copper extraction from this mineralization type.
Keywords: goethite; ferrihydrite; hematite; kaolinite; Mössbauer spectroscopy goethite; ferrihydrite; hematite; kaolinite; Mössbauer spectroscopy

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MDPI and ACS Style

Santos, P.H.C.d.; da Costa, M.L.; Ferreira, N.S.; Camarena, M.A.; Souza da Silva, R.d.S. Weathering-Controlled Copper Retention in the Saprolite of the Alvo 118 Deposit, Carajás, Brazil. Minerals 2025, 15, 501. https://doi.org/10.3390/min15050501

AMA Style

Santos PHCd, da Costa ML, Ferreira NS, Camarena MA, Souza da Silva RdS. Weathering-Controlled Copper Retention in the Saprolite of the Alvo 118 Deposit, Carajás, Brazil. Minerals. 2025; 15(5):501. https://doi.org/10.3390/min15050501

Chicago/Turabian Style

Santos, Pabllo Henrique Costa dos, Marcondes Lima da Costa, Nilson S Ferreira, Mariella Alzamora Camarena, and Rayara do Socorro Souza da Silva. 2025. "Weathering-Controlled Copper Retention in the Saprolite of the Alvo 118 Deposit, Carajás, Brazil" Minerals 15, no. 5: 501. https://doi.org/10.3390/min15050501

APA Style

Santos, P. H. C. d., da Costa, M. L., Ferreira, N. S., Camarena, M. A., & Souza da Silva, R. d. S. (2025). Weathering-Controlled Copper Retention in the Saprolite of the Alvo 118 Deposit, Carajás, Brazil. Minerals, 15(5), 501. https://doi.org/10.3390/min15050501

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