The use of reflectance spectroscopy and the prehnite spectral index to target gold mineralization at the Bonfim polymetallic skarn deposit, Serido Mobile Belt, Borborema Province, Brazil

被引:6
作者
de Mesquita, Nayara Moreira [1 ]
Carrino, Thais Andressa [1 ]
de Souza Neto, Joao Adauto [1 ]
机构
[1] Univ Fed Pernambuco, Dept Geol, Av Arquitetura S-N, BR-50740550 Recife, PE, Brazil
关键词
Serido Mobile Belt; Bonfim Au-W-Mo skarn; Hydrothermal alteration; Brazil; VNIR-SWIR; GA SAO-JOSE; NE BRAZIL; NORTHEASTERN BRAZIL; CAMPESTRE MASSIF; LUDWIG SKARN; EXPLORATION; NEVADA; YERINGTON; CALCITE;
D O I
10.1016/j.oregeorev.2019.103192
中图分类号
P5 [地质学];
学科分类号
0709 ; 081803 ;
摘要
The Serido Mobile Belt hosts numerous mineralized skarns in the Borborema Province, northeastern Brazil. The Bonfun W-Mo-Au-Bi-Te skarn occurs within a Neoproterozoic metasedimentary sequence (Serido Group), within marble and schist lenses, or at the contacts between both. An ASD-FieldSpc (TM) 3 High-Resolution spectrometer was used to characterize the mineralogy of a representative drill core interval (181 m) from the Bonfim deposit, in order to generate the spectral characterization to define the gold mineralization. Skarns are characterized by the presence of diopside, actinolite-tremolite, clinozoisite-zoisite, muscovite and prehnite. Prehnite and epidote constitute the main components of the talc-silicate assemblage associated with late-stage gold mineralization. The diagnostic absorption feature of prehnite at 1478 nm (OH) can be used to identify its presence, and the prehnite index proposed in this case study (a reflectance ratio of 1465 nm/1478 nm) allows highlighting the prehnite enriched sections along the core. Geochemical data show a positive correlation between gold and the presence of a prehnite absorption at 1478 nm. The results suggest that the prehnite spectral signature can be used as a reliable and efficient (rapid) indicator for gold skams, perhaps under geologically similar circumstances to those at Bonfim.
引用
收藏
页数:17
相关论文
共 45 条
[21]   BRAZILIAN STRUCTURAL PROVINCES - AN INTRODUCTION [J].
DEALMEIDA, FFM ;
HASUI, Y ;
NEVES, BBD ;
FUCK, RA .
EARTH-SCIENCE REVIEWS, 1981, 17 (1-2) :1-29
[22]  
Einaudi M.T., 1981, ECON GEOL, P317
[23]  
GAFFEY SJ, 1986, AM MINERAL, V71, P151
[24]  
Grove C.I., 1992, COMPILATION LAB REFL
[25]   Detrital zircon ages and Nd isotope compositions of the Serido and Lavras da Mangabeira basins (Borborema Province, NE Brazil): Evidence for exhumation and recycling associated with a major shift in sedimentary provenance [J].
Hollanda, M. H. B. M. ;
Archanjo, C. J. ;
Bautista, J. R. ;
Souza, L. C. .
PRECAMBRIAN RESEARCH, 2015, 258 :186-207
[26]   Long-lived Paleoproterozoic granitic magmatism in the Serido-Jaguaribe domain, Borborema Province-NE Brazil [J].
Hollanda, Maria Helena B. M. ;
Archanjo, Carlos J. ;
Souza, Laecio C. ;
Liu Dunyi ;
Armstrong, Richard .
JOURNAL OF SOUTH AMERICAN EARTH SCIENCES, 2011, 32 (04) :287-300
[27]   Spectral reflectance (0.35-2.5 μm) properties of garnets: Implications for remote sensing detection and characterization [J].
Izawa, M. R. M. ;
Cloutis, E. A. ;
Rhind, T. ;
Mertzman, S. A. ;
Poitras, Jordan ;
Applin, Daniel M. ;
Mann, P. .
ICARUS, 2018, 300 :392-410
[28]  
Kerr A., 2011, Geological Survey, V11, P145
[29]  
Kokaly R.F., 2017, US GEOLOGICAL SURVEY, V1035, DOI [10.3133/DS1035, DOI 10.3133/DS1035, 10.3133/ds1035.]
[30]   Ediacaran to Cambrian magmatic suites in the Rio Grande do Norte domain, extreme Northeastern Borborema Province (NE of Brazil): Current knowledge [J].
Leite do Nascimento, Marcos Antonio ;
Galindo, Antonio Carlos ;
de Medeiros, Vladimir Cruz .
JOURNAL OF SOUTH AMERICAN EARTH SCIENCES, 2015, 58 :281-299