760
Views
1
CrossRef citations to date
0
Altmetric
Original Articles

Applying Saudi clay deposits for treatment of household water at the point-of-use

ORCID Icon, ORCID Icon & ORCID Icon
Pages 150-161 | Received 18 Feb 2022, Accepted 25 Apr 2022, Published online: 14 May 2022

References

  • Addae, E. A., & Adu, D. (2020). Investigating water poverty in sub-Sahara Africa: Addressing the potentials for water resources management, and policy implications. International Journal of Scientific Research in Computer Science, Engineering and Information Technology, 6(6), 57–64. doi:10.32628/CSEIT20664
  • Amonette, J. E. (2002). Iron redox chemistry of clays and oxides: Environmental applications (Vol. 10, pp. 89–147). CMS Workshop Lectures. Electrochemical properties of clay, Alanah Fitch, Clay Minerals Society Publisher, Chantilly, USA. doi:10.1346/CMS-WLS-10.3
  • Akosile, S. I., Ajibade, F. O., Lasisi, K. H., Ajibade, T. F., Adewumi, J. R., Babatola, J. O., & Oguntuase, A. M. (2020). Performance evaluation of locally produced ceramic filters for household water treatment in Nigeria. Scientific African, 7, e00218. doi:10.1016/j.sciaf.2019.e00218
  • Bain, R., Gundry, S., Wright, J., Yang, H., Pedley, S., & Bartram, J. (2012). Accounting for water quality in monitoring access to safe drinking-water as part of the Millennium Development Goals: Lessons from five countries. Bulletin of the World Health Organization, 90(3), 228–235. doi:10.2471/blt.11.094284
  • Carriazo, J. G. (2012). Influence of iron removal on the synthesis of pillared clays: A surface study by nitrogen adsorption, XRD and EPR. Applied Clay Science, 67–68, 99–105. doi:10.1016/j.clay.2012.07.010
  • Clasen, T., Nadakatti, S., & Menon, S. (2006). Microbiological performance of a water treatment unit designed for household use in developing countries. Tropical Medicine & International Health: TM & IH, 11(9), 1399–1405. doi:10.1111/j.1365-3156.2006.01699.x
  • Das, T. K., Kirtunia, R., & Shaibur, M. R. (2018). Application of ceramic filter for improvement of surface water quality. Journal of Innovation and Development Strategy, 12(1), 68–73.
  • Dong, H., & Lu, A. (2012). Clay-microbe interactions and implications for environmental mitigation. Elements, 8(2), 95–100. doi:10.2113/gselements.8.2.95
  • Eisazadeh, A., Kassim, K. A., & Nur, H. (2012). Solid-state NMR and FTIR studies of lime stabilized montmorillonitic and lateritic clays. Applied Clay Science, 67–68, 5–10. doi:10.1016/j.clay.2012.05.006
  • Elasaad, H., Bilton, A., Kelley, L., Duayhe, O., & Dubowsky, S. (2015). Field evaluation of a community scale solar powered water purification technology: A case study of a remote Mexican community application. Desalination, 375, 71–80. doi:10.1016/j.desal.2015.08.001
  • Gundry, S. W., Wright, J. A., Conroy, R., Du Preez, M., Genthe, B., Moyo, S., … Potgieter, N. (2006). Contamination of drinking water between source and point-of-use in rural households of South Africa and Zimbabwe: Implications for monitoring the Millennium Development Goal for water. Water Practice and Technology, 1(2), 1–9. doi:10.2166/wpt.2006.032
  • Ihekweme, G. O., Shondo, J. N., Orisekeh, K. I., Kalu-Uka, G. M., Nwuzor, I. C., & Onwualu, A. P. (2020). Characterization of certain Nigerian clay minerals for water purification and other industrial applications. Heliyon, 6(4), e03783. doi:10.1016/j.heliyon.2020.e03783
  • Kallman, E. N., Oyanedel-Craver, V. A., & Smith, J. A. (2011). Ceramic filters impregnated with silver nanoparticles for point-of-use water treatment in rural Guatemala. Journal of Environmental Engineering, 137(6), 407–415. doi:10.1061/(ASCE)EE.1943-7870.0000330
  • Lange, J., Materne, T., & Grüner, J. (2016). Do low-cost ceramic water filters improve water security in rural South Africa. Drinking Water Engineering and Science, 9(2), 47–55. doi:10.5194/dwes-9-47-2016
  • Lecomte, I., Liégeois, M., Rulmont, A., Cloots, R., & Maseri, F. (2003). Synthesis and characterization of new inorganic polymeric composites based on kaolin or white clay and on ground-granulated blast furnace slag. Journal of Materials Research, 18(11), 2571–2579. doi:10.1557/JMR.2003.0360
  • Letaief, S., Casal, B., Kbir-Ariguib, N., Trabelsi-Ayadi, M., & Ruiz-Hitzky, E. (2002). Fe-rich smectites from Gafsa (Tunisia): Characterization and pillaring behavior. Clay Minerals, 37(3), 517–529. doi:10.1180/0009855023730050
  • Levitskii, I. A., Pozniak, A. I., & Baranceva, S. E. (2013). Effects of the basaltic tuff additions on the properties, structure and phase composition of the ceramic tiles for interior wall facing. Procedia Engineering, 57, 707–713. doi:10.1016/j.proeng.2013.04.089
  • Lim, S. C., Gomes, C., & Ab Kadir, M. Z. A. (2013). Characterizing of bentonite with chemical, physical and electrical perspectives for improvement of electrical grounding systems. International Journal of Electrochemical Science, 8(9), 11429–11447.
  • Madejova, J., & Komadel, P. (2001). Baseline studies of the clay minerals society source clays: Infrared methods. Clay Minerals, 49(5), 410–432. doi:10.1346/CCMN.2001.0490508
  • Manceau, A., Lanson, B., Drits, V. A., Chateigner, D., Gates, W. P., Wu, J., … Stucki, J. W. (2000). Oxidation-reduction mechanism of iron in dioctahedral smectites. 1. Crystal chemistry of oxidized reference nontronites. American Mineralogist, 85(1), 133–152. doi:10.2138/am-2000-0114
  • Meierhofer, R., Bänziger, C., Deppeler, S., Kunwar, B. M., & Bhatta, M. (2018). From water source to tap of ceramic filters-factor that influence water quality between collection and consumption in rural households in Nepal. International Journal of Environmental Research and Public Health, 15(11), 2439. doi:10.3390/ijerph15112439
  • Melton, E. D., Swanner, E. D., Behrens, S., Schmidt, C., & Kappler, A. (2014). The interplay of microbially mediated and abiotic reactions in the biogeochemical Fe cycle. Nature Reviews. Microbiology, 12(12), 797–808. doi:10.1038/nrmicro3347
  • Mwabi, J. K., Mamba, B. B., & Momba, M. N. B. (2012). Removal of Escherichia coli and faecal coliforms from surface water and groundwater by household water treatment devices/systems: A sustainable solution for improving water quality in rural communities of the Southern African Development Community region. International Journal of Environmental Research and Public Health, 9(1), 139–170. doi:10.3390/ijerph9010139
  • Ngun, B. K., Mohamad, H., Sulaiman, S. K., Okada, K., & Ahmad, Z. A. (2011). Some ceramic properties of clays from central Cambodia. Applied Clay Science, 53(1), 33–41. doi:10.1016/j.clay.2011.04.017
  • Nwuzor, I. C., Chukwuneke, J. L., Nwanonenyi, S. C., Obasi, H. C., & Ihekweme, G. O. (2018). Modification and physiochemical characterization of kaolin clay for adsorption of pollutants from industrial paint effluent. European Journal of Advanced Engineering Technology, 5(8), 609–620.
  • Pokrovski, G. S., Schott, J., Farges, F. O., & Hazemann, J. L. (2003). Iron (III)-silica interactions in aqueous solution: Insights from X-ray absorption fine structure spectroscopy. Geochimica et Cosmochimica Acta, 67(19), 3559–3573. doi:10.1016/S0016-7037(03)00160-1
  • Pranoto, P., Inayati, I., & Firmansyah, F. (2018). Effectiveness study of drinking water treatment using clays/andisol adsorbent in Lariat heavy metal cadmium (Cd) and bacterial pathogens. IOP Conference Series Materials Science and Engineering, 349, 012047. doi:10.1088/1757-899X/349/1/012047
  • Rampe, E. B., Kraft, M. D., & Sharp, T. G. (2013). Deriving chemical trends from thermal infrared spectra of weathered basalt: Implications for remotely determining chemical trends on Mars. Icarus, 225(1), 749–762. doi:10.1016/j.icarus.2013.05.005
  • Ravisankar, R. (2009). Application of spectroscopic technique for the identification of minerals from beach rocks of Tamil Nadu, India. EARFAM, 19, 272–276.
  • Rayner, J. (2009). Current practices in manufacturing of ceramic pot filters for water treatment water. M.S. thesis, Engineering and Development Centre (WEDC), Loughborough Univ., Loughborough, UK.
  • Sankaran, S., & Ramasamy, K. (2000). Infrared studies on some archaeological samples. Asian Journal of Physics, 9(2), 362–366.
  • Sheikh, R., & Islam, S. (2017). Application of ceramic filter for improvement of pond sand filter’s water quality. American Journal of Environmental Protection, 6(3), 62–68. doi:10.11648/j.ajep.20170603.11
  • Sobsey, M. D. (2006). Drinking water and health research: A look to the future in the United States and globally. Journal of Water and Health, 4(S1), 17–21. doi:10.2166/wh.2006.0039
  • Sobsey, M. D., Stauber, C. E., Casanova, L. M., Brown, J. M., & Elliott, M. A. (2008). Point of use household drinking water filtration: A practical, effective solution for providing sustained access to safe drinking water in the developing world. Environmental Science & Technology, 42(12), 4261–4267. doi:10.1021/es702746n
  • Sengco, M. R., & Anderson, D. M. (2004). Controlling harmful algal blooms through clay Flocculation. The Journal of Eukaryotic Microbiology, 51(2), 169–172. doi:10.1111/j.1550-7408.2004.tb00541.x
  • Suribabu, C. R., Sudarsan, J. S., & Nithiyanantham, S. (2020). Performance and technical valuation of candle‑type ceramic filter for water purification. International Journal of Energy and Water Resources, 4(1), 37–45. doi:10.1007/s42108-019-00043-7
  • Stucki, J. W. (2011). A review of the effects of iron redox cycles on smectite properties. Comptes Rendus Geoscience, 343(2–3), 199–209. doi:10.1016/j.crte.2010.10.008
  • Tantawy, M. A., & Ramadan, S. A. (2017). Mohamed, Middle Eocene clay from Goset Abu Khashier: Geological assessment and utilization with drinking water treatment sludge in brick manufacture. Applied Clay Science, 138, 114–124. doi:10.1016/j.clay.2017.01.005
  • Ulfa, M., Prasetyoko, D., Bahruji, H., & Nugraha, R. E. (2021). Green synthesis of Hexagonal Hematite (α-Fe2O3) flakes using Pluronic F127-Gelatin template for adsorption and photodegradation of ibuprofen. Materials, 14(22), 6779–6796. doi:10.20944/preprints202110.0138.v1
  • Xie, T., Lu, S., Zeng, J., Rao, L., Wang, X., Sandar Win, M., … Wang, Q. (2020). Soluble Fe release from iron-bearing clay mineral particles in acid environment and their oxidative potential. The Science of the Total Environment, 726, 138650. doi:10.1016/j.scitotenv.2020.138650
  • Wiederhold, J. G., Kraemer, S. M., Teutsch, N., Borer, P. M., Halliday, A. N., & Kretzschmar, R. (2006). Iron isotope fractionation during proton-promoted, ligand-controlled, and reductive dissolution of goethite. Environmental Science & Technology, 40(12), 3787–3793. doi:10.1021/es052228y
  • Zhang, C., Yu, Z., Zeng, G., Huang, B., Dong, H., Huang, J., … Zhang, Q. (2016). Phase transformation of crystalline iron oxides and their adsorption abilities for Pb and Cd. Chemical Engineering Journal, 284, 247–259. doi:10.1016/j.cej.2015.08.096
  • Zhang, W., Zhang, S., Wang, J., Dong, J., Cheng, B., Xu, L., & Shan, A. (2019). A novel adsorbent albite modified with cetylpyridinium chloride for efficient removal of zearalenone. Toxins, 11, 674. doi:10.3390/toxins11110674