Artículo

Lamarra, J.; Fernández, M.A.; Cosp, J.P.; De La Fournière, S.; Garbossa, G.; Torres Sánchez, R.M. "Water decontamination by silver and copper montmorillonite" (2014) International Journal of Environment and Health. 7(1):15-30
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Abstract:

Several bactericide inorganic materials have been used for the purification of water with varying success. The characterisation of the incorporation of Ag or Cu cations in montmorillonite (MMT) clay, to obtain a bactericide material against E. coli, indicated that both outer and interlayer surfaces act as adsorption sites of AgO and Ag2O or CuO, respectively. The Ag-exchanged clays retain their bactericide ability even after being stirred in aqueous suspension, whereas samples with the highest concentration of Cu do not inhibit bacterial growth. Experiences from supernatants of Cu-exchanged clays indicated that bactericide capacity was present at high clay concentration. Copyright © 2014 Inderscience Enterprises Ltd.

Registro:

Documento: Artículo
Título:Water decontamination by silver and copper montmorillonite
Autor:Lamarra, J.; Fernández, M.A.; Cosp, J.P.; De La Fournière, S.; Garbossa, G.; Torres Sánchez, R.M.
Filiación:CETMIC, Centro de Tecnología de Recursos Minerales y Cerámica, CIC-CONICET la Plata, Gonnet B1897ZCA, Argentina
Dep. Ingeniería Civil de Materiales y Fabricación, Escuelas de Las Ingenierías, c/ Dr. Ortiz Ramos, 29071 Málaga, Spain
Facultad de Ciencias Exactas y Naturales, Departamento de Química Biológica, Universidad de Buenos Aires, C1428EHA, Argentina
Instituto de Investigaciones en Salud Pública, Universidad de Buenos Aires, Cuidad Universitaria, Pabellón II, C1428EHA, Buenos Aires, Argentina
Palabras clave:Bactericidal effect; Copper montmorillonite; Silver montmorillonite
Año:2014
Volumen:7
Número:1
Página de inicio:15
Página de fin:30
DOI: http://dx.doi.org/10.1504/IJENVH.2014.060124
Título revista:International Journal of Environment and Health
Título revista abreviado:Int. J. Environ. Health
ISSN:17434955
Registro:https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_17434955_v7_n1_p15_Lamarra

Referencias:

  • Avena, M.J., De Pauli, C.P., Proton adsorption and electrokinetics of an Argentinean montmorillonite (1998) Journal of Colloid and Interface Science, 202 (1), pp. 195-204. , DOI 10.1006/jcis.1998.5402
  • Ball, M.C., Norbury, A.H., (1974) Physical Data for Inorganic Chemists, , Longman, London
  • Carretero, M.I., Clay minerals and their beneficial effects upon human health. A review (2002) Applied Clay Science, 21 (3-4), pp. 155-163. , DOI 10.1016/S0169-1317(01)00085-0, PII S0169131701000850
  • Cui, Y., Wang, Y., Fan, K., Da, W.-L., Surface structural evolution of AuAg/TiO2 catalyst in the transformation of benzyl alcohol to sodium benzoate (2013) Applied Surface Science, 279, pp. 391-399
  • Davies, R.L., Etris, S.F., The development and functions of silver in water purification and disease control (1997) Catalysis Today, 36 (1), pp. 107-114. , PII S0920586196002039
  • Doǧan, M., Türkyilmaz, A., Alkan, M., Demirbaş, Ö., Adsorption of copper (II) ions onto sepiolite and electrokinetic properties (2009) Desalination, 238, pp. 257-270
  • Domek, M.J., LeChevallier, M.W., Cameron, S.C., McFeters, G.A., Evidence for the role of copper in the injury process of coliform bacteria in drinking water (1984) Applied and Environmental Microbiology, 48 (2), pp. 289-293
  • Erdemoglu, M., Sarikaya, M., Effects of heavy metals and oxalate on the zeta potential of magnetite (2006) Journal of Colloid and Interface Science, 300 (2), pp. 795-804. , DOI 10.1016/j.jcis.2006.04.004, PII S002197970600289X
  • Espariz, M., Checa, S.K., Audero, M.E.P., Pontel, L.B., Soncini, F.C., Dissecting the Salmonella response to copper (2007) Microbiology, 153 (9), pp. 2989-2997. , DOI 10.1099/mic.0.2007/006536-0
  • Fang, P., Cai, P., Li, H., Wu Liang W, X., Rong, W., Chen, Q., Huang, W., Microcalorimetric and potentiometric titration studies on the adsorption of copper by P. Putida and B. Thuringiensis and their composites with minerals (2010) Journal of Hazardous Materials, 181, pp. 1031-1038
  • Feng, Q.L., Wu, J., Chen, G.Q., Cui, F.Z., Kim, T.N., Kim, J.O., A mechanistic study of the antibacterial effect of silver ions on Escherichia coli and Staphylococcus aureus (2000) Journal of Biomedical Materials Research, 52, pp. 662-668
  • Fernández, M., Alba, M.D., Torres Sánchez, R.M., Effects of thermal and mechanical treatments on montmorillonite homoionized with mono- and polyvalent cations: Insight into the surface and structural changes (2013) Colloids and Surfaces A, 423, pp. 1-10
  • Ferrage, E., Tournassat, C., Rinnert, E., Lanson, B., Influence of pH on the interlayer cationic composition and hydration state of Ca-montmorillonite: Analytical chemistry, chemical modelling and XRD profile modelling study (2005) Geochimica et Cosmochimica Acta, 69 (11), pp. 2797-2812. , DOI 10.1016/j.gca.2004.12.008, PII S0016703704009676
  • Ferraria, A.M., Carapeto, A.P., Botelho Do Rego, A.M., X-ray photoelectron spectroscopy: Silver salts revisited (2012) Vacuum, 86, pp. 1988-1991
  • Guerra, R., Lima, E., Viniegra, M., Guzmán, A., Lara, V., Growth of Escherichia coli and Salmonella typhi inhibited by fractal Ag nanoparticles supported on zeolites (2012) Microporous and Mesoporous Materials, 147, pp. 267-273
  • He, H.P., Guo, J.G., Xie, X.D., Peng, J.L., Location and migration of cations in Cu+2- adsorbed montmorillonite (2001) Environment International, 26, pp. 347-351
  • Hu, C.-H., Xia, M.-S., Adsorption and antibacterial effect of copper-exchanged montmorillonite on Escherichia coli K88 (2006) Applied Clay Science, 31 (3-4), pp. 180-184. , DOI 10.1016/j.clay.2005.10.010, PII S0169131705001407
  • Klueh, U., Wagner, V., Kelly, S., Johnson, A., Bryers, J.D., Eficacy of silver coatedfabric to prevent bacterial colonization and subsequent device-based biofilm formation (2000) Journal of Biomedical Materials Research, 53, pp. 621-631
  • Magaña, S., Quintana, P., Aguilar, D., Toledo, J., Angeles-Chavez, C., Cortes, M., Leon, L., Torres Sánchez, R.M., Antibacterial activity of montmorillonites modified with silver (2008) Journal of Molecular Catalysis. A, 281, pp. 192-199
  • Magnoli, A.P., Tallone, L., Rosa, C.A.R., Dalcero, A.M., Chiacchiera, S.M., Torres Sanchez, R.M., Commercial bentonites as detoxifier of broiler feed contaminated with aflatoxin (2008) Applied Clay Science, 40 (1-4), pp. 63-71. , DOI 10.1016/j.clay.2007.07.007, PII S0169131707001421
  • Malachová, K., Praus, P., Pavlíčková, Z., Turicová, M., Activity of antibacterial compounds immobilised on montmorillonite (2009) Applied Clay Science, 43, pp. 364-368
  • Malachová, K., Praus, P., Rybková, Z., Kozák, O., Antibacterial and antifungal activities of silver, copper and zinc montmorillonites (2011) Applied Clay Science, 53, pp. 642-645
  • Meda, L., Cerofolini, G.F., A decomposition procedure for the determination of copper oxidation states in Cu-zeolites by XPS (2004) Surface and Interface Analysis, 36, pp. 756-759
  • Moulder, J., Stickle, W., Sobol, P., Bomben, K., (1992) Standard Spectra for Identification and Interpretation of XPS Data, , Perkin Elmer, Eden Prairie, Minessota
  • Ohashi, F., Oya, A., Duclaux, L., Beguin, F., Structural model calculation of antimicrobial and antifungal agents derived from clay minerals (1998) Applied Clay Science, 12 (6), pp. 435-445. , DOI 10.1016/S0169-1317(98)00008-8
  • Ohtaki, H., Radnai, T., Structure and dynamics of hydrated ions (1993) Chemical Reviews, 93, pp. 1157-1204
  • Oueslati, W., Ben Rhaiem, H., Karmous, M.S., Naaman, S., Ben Haj Amara, A., Study of the structural evolution and selectivity of Wyoming montmorillonite in relation with the concentration of Cu2+ and Ni2+ (2006) Zeitschrift fur Kristallography, 23, pp. 425-429
  • Poulston, S., Parlett, P.M., Stone, P., Bowker, M., Surface oxidation and reduction of CuO and Cu2O studied using XPS and XAES (1996) Surface and Interface Analysis, 24 (12), pp. 811-820
  • Raffi, M., Mehrwan, S., Bhatti, T.M., Akhter, J.I., Hameed, A., Yawar, W., Hasan, M.M., Investigations into the antibacterial behavior of copper nanoparticles against Escherichia coli (2010) Annals of Microbiology, 60, pp. 75-80
  • Shen, W., Feng, L., Feng, H., Lei, A., Divalent silver oxide-diatomite hybrids: Synthesis, characterization and antibacterial activity (2013) Ceramics International, 39, pp. 5013-5024
  • Swartzen-Allen, L., Matijevic, E., Colloid and surface properties of clays suspension part III (1997) Journal of Colloid and Interface Science, 56, pp. 159-167
  • Thomas, F., Michot, L.J., Vantelon, D., Montarges, E., Prelot, B., Cruchaudet, M., Delon, J.F., Layer charge and electrophoretic mobility of smectites (1999) Colloids and Surfaces A: Physicochemical and Engineering Aspects, 159 (2-3), pp. 351-358. , DOI 10.1016/S0927-7757(99)00291-5, PII S0927775799002915
  • Top, A., Ulku, S., Silver, zinc, and copper exchange in a Na-clinoptilolite and resulting effect on antibacterial activity (2004) Applied Clay Science, 27 (1-2), pp. 13-19. , DOI 10.1016/j.clay.2003.12.002, PII S0169131703002539
  • Sanchez, R.M.T., Falasca, S., Specific surface area and surface charges of some argentinian soils (1997) Journal of Plant Nutrition and Soil Science, 160 (2), pp. 223-226
  • Valášková, M., Hundáková, M., Mamulová, M., Kutlaková, K., Seidlerová, J., Capková, P., Pazdziorá, E., Rafaja, D., Preparation and characterization of antibacterial silver/vermiculites and silver/montmorillonites (2010) Geochimica et Cosmochimica Acta, 74, pp. 6287-6300
  • Viseras, C., Aguzzi, C., Cerezo, P., Lopez-Galindo, P., Use of clays as drug delivery systems: Possibilities and limitations (2007) Appl. Clay Sci, 36, pp. 37-50
  • Webber, H., Thurman, H., (1991) Marine Biology, , 2nd ed., NY
  • Zhou, S.-W., Xu, M.-G., Chen, S.-B., Wei, D.-P., Aging mechanism of copper added to bentonite (2008) Geoderma, 147, pp. 86-92

Citas:

---------- APA ----------
Lamarra, J., Fernández, M.A., Cosp, J.P., De La Fournière, S., Garbossa, G. & Torres Sánchez, R.M. (2014) . Water decontamination by silver and copper montmorillonite. International Journal of Environment and Health, 7(1), 15-30.
http://dx.doi.org/10.1504/IJENVH.2014.060124
---------- CHICAGO ----------
Lamarra, J., Fernández, M.A., Cosp, J.P., De La Fournière, S., Garbossa, G., Torres Sánchez, R.M. "Water decontamination by silver and copper montmorillonite" . International Journal of Environment and Health 7, no. 1 (2014) : 15-30.
http://dx.doi.org/10.1504/IJENVH.2014.060124
---------- MLA ----------
Lamarra, J., Fernández, M.A., Cosp, J.P., De La Fournière, S., Garbossa, G., Torres Sánchez, R.M. "Water decontamination by silver and copper montmorillonite" . International Journal of Environment and Health, vol. 7, no. 1, 2014, pp. 15-30.
http://dx.doi.org/10.1504/IJENVH.2014.060124
---------- VANCOUVER ----------
Lamarra, J., Fernández, M.A., Cosp, J.P., De La Fournière, S., Garbossa, G., Torres Sánchez, R.M. Water decontamination by silver and copper montmorillonite. Int. J. Environ. Health. 2014;7(1):15-30.
http://dx.doi.org/10.1504/IJENVH.2014.060124