Mineralogical and particulate morphological characterization of geophagic clayey soils from Botswana

Mineralogical and particulate morphological characterization of geophagic clayey soils from Botswana

Ekosse, Georges-Ivo;Anyangwe, Stella;
bulletin of the chemical society of ethiopia 2012 Vol. 26 pp. 373-382
328
ekosse2012mineralogicalbulletin

Abstract

This study focused on determining the minerals composition and particle morphology of geophagic clayey soils from Botswana in order to infer on how they could influence human health. Six representative geophagic clayey soils from Botswana were mineralogically characterized using X-ray powder diffractometry (XRPD), optical microscopy, and environmental scanning electron microscopy (ESEM). Results of identified mineral phases revealed quartz (SiO2) as the most dominant in all samples constituting close to 70 wt %; followed by goethite (FeO.OH) having a mean concentration of 9 wt%, and kaolinite (Al2Si2O5(OH)4) with a mean concentration of 8 wt%. Other minerals present were smectite ((Na,Ca)(Al,Mg)6(Si4O10)3(OH)6-n(H2O)), mica (AB2-3(Al,Si)Si3O10)(F,OH)2), feldspar (Na/K(AlSi3O8)) and hematite (Fe2O3). The quartz particles were generally coarse; and angular to very angular in morphology. Due to ions present in goethite, kaolinite, and smectite, these minerals impact positively on properties of geophagic clayey soils and could possibly influence human health when consumed. The quartz particles could negatively affect dental enamel as a result of mastication; and cause abrasion of the walls of the gastro-intestinal tract which may lead to rupturing. Although the studied clayey soils could have potential to provide medicinal benefits to the consumer, there is need for beneficiation exercise to be conducted to reduce the coarse angular particles contained in them. It is therefore necessary for constructive efforts to be directed at beneficiating geophagic materials which will render them safe for human consumption.DOI: http://dx.doi.org/10.4314/bcse.v26i3.6

Citation

ID: 91968
Ref Key: ekosse2012mineralogicalbulletin
Use this key to autocite in SciMatic or Thesis Manager

References

Blockchain Verification

Account:
NFT Contract Address:
0x95644003c57E6F55A65596E3D9Eac6813e3566dA
Article ID:
91968
Unique Identifier:
Network:
Scimatic Chain (ID: 481)
Loading...
Blockchain Readiness Checklist
Authors
Abstract
Journal Name
Year
Title
5/5
Creates 1,000,000 NFT tokens for this article
Token Features:
  • ERC-1155 Standard NFT
  • 1 Million Supply per Article
  • Transferable via MetaMask
  • Permanent Blockchain Record
Blockchain QR Code
Scan with Saymatik Web3.0 Wallet

Saymatik Web3.0 Wallet