A Comparative study of the mineral composition of Macrotermes and Cubitermes termite mounds in Lualaba, D.R. Congo: Contribution to strategic prospecting for Cu and Co deposits.
详细信息       来源:Journal of Geochemical Exploration    发布日期:2022年8月10日
  • 标题:A Comparative study of the mineral composition of Macrotermes and Cubitermes termite mounds in Lualaba, D.R. Congo: Contribution to strategic prospecting for Cu and Co deposits.
  • 关键词:Chemical composition;Cu and Co mineralization;Katanga Supergroup;Major elements;Termites;Trace elements
  • 作者:Ilunga Ngoy, Serge;Callec, Yannick;Thieblemont, Denis;Kampata, Dona;Mupande, Jean Flix;Auclerc, Apolline;Watteau, Franoise

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This work focuses on the comparative analysis of the influence of two termites of the Macrotermes (fungus-growing) and Cubitermes (soil-feeding termites) genera on the dynamics of soil lithogeochemical facies. The aim was to establish a general systematic recognition of the lithology of a large area, including its potential for Cu and Co mineralization. Eighty-eight samples of the mound material were collected from termite mounds of these two species along a 50 km transect in Lualaba Province, Democratic Republic of Congo (DRC) in order to carry out major and trace element analyses. Interpretation of the data was carried out through exploratory analysis, using the Ascending Hierarchical Classification (AHC) method and Principal Component Analysis (PCA), followed by statistical modeling using linear regression. After clustering the termite mounds into classes by AHC, an initial PCA was used to map the lithology of these classes using major elements. The results highlight the dependance of the lithological composition of the mounds on the behavior specific to each of the two termite species. Linear regression modeling allowed a delineation of the area of supply of building materials for each species, indicating the possible incorporation of Cu and Co mineralizations likely to be present in the environment of the termite mounds. The use of termite mounds as a tool in mining exploration is discussed. • A regression model is established to predict Cu and Co contents in termite mounds. • Identification of lithogeochemical facies of bedrock • Localization of geological structures using Macrotermes termite mounds 

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