Genesis of Meka’a Geophagic Kaolin Deposit (In Foreke-Dschang West Cameroon)
Author(s) -
S. A. Douola Ninla,
Gervaise Kieufack,
Isaac Yannick Bomeni,
Merlin Gountié Dedzo,
Armand Sylvain Ludovic Wouatong
Publication year - 2021
Publication title -
current journal of applied science and technology
Language(s) - English
Resource type - Journals
ISSN - 2457-1024
DOI - 10.9734/cjast/2021/v40i231247
Subject(s) - orthoclase , geology , kaolinite , quartz , hematite , mineralogy , geochemistry , scanning electron microscope , organic matter , weathering , goethite , mineral , illite , plagioclase , clay minerals , materials science , chemistry , metallurgy , paleontology , adsorption , composite material , organic chemistry
Geological, mineralogical and geochemical studies where carried out on Meka’a kaolin deposit located in Foréké-Dschang in order to define the ore genesis. Three kaolin facies (yellow, red and white) and isalteritic components were characterized by different methods including morphostructural description, XRD, XRF, ICP-MS, SEM-EDS, heavy mineral research and organic matter contents. The results show that all these kaolins are based on kaolinite (87–90%) associated with more or less significant phases of orthoclase (1-2%), goethite (0.5-3.5%), quartz (1-1.5%), anatase (1.2-2%) and hematite (1-2%). Small amounts of illite (3.5%) was found only in Original Research Article Douola Ninla et al.; CJAST, 40(2): 1-17, 2021; Article no.CJAST.65528 2 white facies. The scanning electron microscope (SEM) pattern shows that kaolinite particles contained in these kaolins are very small (<2 μm) and are poorly crystallized due to the impurities they contain. Meka’a kaolin’s are extremely weathered (CIA and CIW ≈ 100) and their organic matter content is considerable (1.82-2.54%) and is explained by the presence of carbonized wood in the ignimbrites. The combination of different analytical techniques points out a meteoric weathering of ignimbrite under oxidizing conditions as being of petrogenetic origin of this kaolin deposit.
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