• The Suitable Industrial Application Of Kaolin
    [KPANKOROGI AND IJERO EKITI]

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    • CHAPTER ONE
      1.0   INTRODUCTION
             Kaolin is a clay rock and part of the group of industrial mineral with the chemical composition (Al2Si205 (OH)4.
      It is a layered silicate mineral with one tetrahedral sheet linked through oxygen atoms to one octahedral sheet alumina i.e. structurally composed of silicate sheet (Si2O¬5) bonded to aluminum oxide/hydroxide layer Al2 (OH)4 called gibbsite layers and repeating layer of the mineral are hydrogen bonded together. (Rost, 1992; Bish, 1993; Klein and Kuribut, 1993; Slivka, 2002).
              Kaolin is a plastic raw material, particular consisting of clay mineral kaolinite. In systematic mineralogy, Kaolin ranks among phyllosilicates, which are stratified clay minerals formed by a net of tetrahedral and octahedral layers. Phyllosillicates are classified into the main groups according to the type of layers, inter-layer contents, charge of the layers and chemical formulae. Besides kaolinite groups, serpentine, halloysite, pyrofylite, mica and montmorillonite groups also rank among phylllosillicates. Group of kaolinites includes di-octahedral mineral with two layers and one silica (SiO4) tetrahedral layer and one aluminum (Al2(OH)4) octahedral layer. The layers are bondecd together by sharing oxygen anion between Al and Si together, these two layers are called platelets (Pauk,et al.,1962; Stejskal, 1971., Duda et al., and Hurlbut, 1993).
      Kaolinite share the same chemistry as the mineral halloysite, dickeite and necrite.  The four minerals are polymorphs as they have the same chemistry but different structures. All the minerals were derived from chemical alteration of aluminum rich silicate minerals, such as feldspars. However, they could be found as sedimentary deposits as well as hydrothermal alteration product of rocks containing a high of alumino-silicate minerals.
        Kaolin is formed under acidic conditions through weathering or hydrothermal change of feldspars, and to a lower extent also other weathered kaolin deposits, kaolin clay or may be a compound of kaolinite, sandstones and olitic ironstones, and  less frequently also of pegmatite and hydrothermal deposit. The most significant kaolin deposits were formed through intensive weathering of rock rich in feldspars (granite, arkoses, certain types of ortho-gneisses and migmatites).
      Millions of years ago, original material was decomposed by weathering, giving rise to kaolin and silica combined with higher or lower amounts of admixtures.(Bernard, el al; 1992).
      1.2   AIM AND OBJECTIVES OF THE STUDY
       Aim of this study is to determine the suitable industrial application of kaolin from location investigated.
      To achieve the above stated aim, the following objective will be carried out:
      1.    Determination of mineralogical composition of the kaolin deposits
      2.    Determination of the chemical/oxide composition of the deposits
      3.    Determination of the physical and engineering properties of the kaolin deposits.
      1.3   SCOPE AND LIMITATION OF THE STUDY
      The purpose of this project covers two deposits, the Kpankorogi and the Ijero-Ekiti kaolin deposits. Samples were collected from each of the deposits for oxide analysis, mineralogical composition as well as the determination of the engineering and physical properties. The numbers of samples are limited due to cost constraint. Samples are collected from each of the deposits for both the oxides and mineralogical analyses. This particular study does not include reserve estimation, but this is recommended for future workers.
      1.4   RESEARCH JUSTIFICATION
      Since Kaolin is a widely used industrial material, determination of chemical composition, mineralogical composition and engineering properties is very important. It will enable the suitable industrial and economic applications of Kaolin.
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    • ABSRACT - [ Total Page(s): 1 ]ABSTRACT COMING HERE SOON ... Continue reading---

         

      CHAPTER TWO - [ Total Page(s): 2 ]CHAPTER TWO2.0    LITERATURE REVIEW2.1    BACKGROUND OF THE STUDY The importance of kaolin is remarkable as one of the most abundant clay rock in soil and sediments, its properties are such that it interacts with other soil element to contribute to the mechanical stability of the soil column (Huertas et al, 1999; Chen et al., 2000).            Kaolin is a layered clay rock and product of advanced weathering process. One layer of the clay consists of an alumina octahedral shut an ... Continue reading---

         

      CHAPTER THREE - [ Total Page(s): 5 ]MECHANICAL METHODS (SIEVE ANALYSES).This method is used in the analysis of particles greater than 0.002mm in diameter. The selection of sieve for this test depends on the soil to be tested and the coarser the clay the larger the top of the sieve.A known quantity of soil is sieved through a stack of sieves with progressively smaller mesh openings, from top to bottom of the stack.This grain size analysis cannot provide information on the shape of soil grains, (weather angular, rounde ... Continue reading---

         

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      CHAPTER FIVE - [ Total Page(s): 1 ]CHAPTER FIVE5.0    CONCLUSION AND RECOMMENDATION5.1    CONCLUSIONCompositional features and industrial applications of Kpankorogi and ijero Ekiti kaolin clay were analysed   based on mineralogy, Chemical composition and physical characteristics of the deposits. This is with the view to determining its suitability as industrial raw material. From the study, it is Obtained that kpankorogi kaolin clay deposit is predominantly Quartz but with high SiO2 and Al2O3 contents, while ijero Ekiti k ... Continue reading---

         

      REFRENCES - [ Total Page(s): 1 ]REFERENCESAderiye, J.(2005). Development of firebricks for furnances. M.Sc. Thesis, Acta 60 (4), 553–564. ADONDUA, S (1988). Indigenous Refractory Raw Materials Base for Nigerian Steel Industry Journal of the Nigerian Society of Chemical Engineers (NSCHE), (7): 2, pp. 322-327. Aliyu, A. (1996): Potentials of the Solid Minerals Industry in Nigeria Abuja: RMDC. Pp. 1-40, 63 – 83, 164 – 172 Aref, A. (2009): Characterization and Evaluation of Alga Deposit of Yemen.Bailey S.W. ... Continue reading---