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Disinfection of Natural Water by Solar Photocatalysis Using Immobilized TiO2 Devices: Efficiency in Eliminating Indicator Bacteria and Operating Life of the System
Indexado
WoS WOS:000298965700008
DOI 10.1115/1.4005338
Año 2012
Tipo artículo de investigación

Citas Totales

Autores Afiliación Chile

Instituciones Chile

% Participación
Internacional

Autores
Afiliación Extranjera

Instituciones
Extranjeras


Abstract



Natural water has been disinfected using TiO2 as the fixed catalyst incorporated in a homemade photoreactor, in which the dimensions and the design parameters are representative of devices that are currently employed at larger scale. The catalyst was immobilized on the external surface of a cylinder of frosted glass situated in the longitudinal axis of a tubular glass reactor. Two alternative methods of immobilizing the catalyst on glass were studied: in the first, a commercial titanium oxide powder (Aeroxide (R) TiO2 P25) was mounted on a polymeric support; and in the second, it was applied by sol-gel deposition. Illumination was effected by installing the glass reactor in the irradiation chamber of a solar simulator. Under laboratory conditions, groundwater contaminated with cultured and wild bacteria was treated photocatalytically, and the influence of the photolysis, the pumping, and the catalysts was studied. The results obtained have demonstrated that the catalyst immobilized in the interior of the photoreactor presents similar results, in the disinfection of E. coli, as 0.5 g/l of TiO2 P25; and that, in 1.5 h approximately of simulated solar illumination (167 kW(UVA) s/m(2)) on the sol-gel deposit of TiO2, it is possible to eliminate 100% of the bacteria covered by international regulations in respect of water for human consumption. With regard to the aging assay of the system, it was observed at 250 h of operation a reduction in the effectiveness of the disinfection process. At 0 and 250 h of operation, the percentages of elimination of E. coli after 50 min of illumination were 100% and 99.5%, respectively. This reduction in the effectiveness of the process was due to the formation of a film of calcium carbonate adhering to the internal glass wall of the photoreactor, which is in contact with the liquid being treated, and to the presence of calcium carbonate precipitates on catalyst surface. [DOI: 10.1115/1.4005338]

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Disciplinas de Investigación



WOS
Engineering, Mechanical
Energy & Fuels
Scopus
Energy Engineering And Power Technology
Renewable Energy, Sustainability And The Environment
SciELO
Sin Disciplinas

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Publicaciones WoS (Ediciones: ISSHP, ISTP, AHCI, SSCI, SCI), Scopus, SciELO Chile.

Colaboración Institucional



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Autores - Afiliación



Ord. Autor Género Institución - País
1 Acevedo, Asuncion - UNIV CADIZ - España
2 Carpio, Edward Hombre Natl Univ Engn - Perú
3 Rodriguez, Juan Hombre Natl Univ Engn - Perú
Universidad de Tarapacá - Chile
4 Manzano, Manuel A. Hombre UNIV CADIZ - España

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Origen de Citas Identificadas



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Citas identificadas: Las citas provienen de documentos incluidos en la base de datos de DATACIENCIA

Citas Identificadas: 8.33 %
Citas No-identificadas: 91.67 %

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Citas identificadas: Las citas provienen de documentos incluidos en la base de datos de DATACIENCIA

Citas Identificadas: 8.33 %
Citas No-identificadas: 91.67 %

Financiamiento



Fuente
UTA-MIDEDUC Convenio de Desempeno
Spanish Agency for International Cooperation for Development (Ministry of External Affairs and Cooperation, Spain)

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Agradecimientos



Agradecimiento
The authors are grateful to the Spanish Agency for International Cooperation for Development (Ministry of External Affairs and Cooperation, Spain) for funding this research; the Central Services of Science and Technology of the University of Cadiz for the scientific collaboration provided; and the Andalusian Centre for Marine Science and Technology (Cadiz, Spain) where the experimental part of this research was carried out. J.R. wishes to thank the UTA-MIDEDUC Convenio de Desempeno for financial support.

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