Dr. Hector Valdes Morales
Associate ProfessorCatholic University of Concepcion, Chile
Highest Degree
Ph.D. in Chemical Engineering from University of Concepcion, Chile
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Biography
Dr. Hector Valdes Morales is currently working as Associate Professor in the College of Engineering Catholic University of Concepcion. He obtained his Ph.D. in Chemical Engineering from same University. His research concerns the development of new processes for Water and Wastewater Treatment, and Industrial Emission Control. He focused on advanced Oxidation processes for Water Recycling, Wastewater Treatment and Industrial Emission Control. At the present, he is the Director of the Laboratory of Clean Technologies. In past he worked as Project Engineer and Lecturer in the Chemical Engineering Department at Central University of Las Villas, Cuba, Lecturer at University of Bio, Chillan, Chile, Postdoctoral Research Associate at Technical University of Clausthal, Germany, Environmental Consultant at University of Concepcion. Concepcion, Chile, Invited Professor at Universite de Toulouse, France, Universite Sidi Mohamed Ben Abdellah Fez Morocco, and Universidad de Concepcion, Chile. He has published 28 articles in journals, 1 book chapter, and 31 proceedings, 1 patent contributed as author/co-author. He also attended number of conferences. He supervised 1 PhD students. He is also serving as referee in number of journals. He is also member of Representative of Academics at the Council Board of the Universidad Catolica de la Santisima Concepcion. He is professional member of International Water Association, and Chilean National Association of Sanitary and Environmental Engineering. He was received Scholarship award by the Flemish Government, DAAD Postdoctoral Award, Best Platform Presentation at IWA Young Researchers Conference, and PhD scholarship awarded by the Chemical Engineering Department, University of Concepcion.
Area of Interest:
Selected Publications
- Valdes, H., V.A. Solar, E.H. Cabrera, A.F. Veloso and C.A. Zaror, 2014. Control of released volatile organic compounds from industrial facilities using natural and acid-treated mordenites: The role of acidic surface sites on the adsorption mechanism. Chem. Eng. J., 244: 117-127.
CrossRef | Direct Link | - Alejandro, S., H. Valdes, M.H. Manero and C.A. Zaror, 2014. Oxidative regeneration of Toluene-saturated natural zeolite by gaseous ozone: The influence of zeolite chemical surface characteristics. J. Hazard. Mater., 274: 212-220.
CrossRef | Direct Link | - Valdes, H., K. Schrickel, H. Bormann and M. Sievers, 2013. Ozonation of pentylacetate contaminated waters from textile care industry. Obras y Proyectos, 13: 41-45.
Direct Link | - Brodu, N., M.H. Manero, C. Andriantsiferana, J.S. Pic and H. Valdes, 2013. Role of Lewis acid sites of ZSM-5 zeolite on gaseous ozone abatement. Chem. Eng. J., 231: 281-286.
CrossRef | Direct Link | - Valdes, H., S. Alejandro and C.A. Zaror, 2012. Natural zeolite reactivity towards ozone: The role of compensating cations. J. Hazard. Mater., 227: 34-40.
CrossRef | Direct Link | - Valdes, H., R.F. Tardon and C.A. Zaror, 2012. Role of surface hydroxyl groups of acid-treated natural zeolite on the heterogeneous catalytic ozonation of methylene blue contaminated waters. Chem. Eng. J., 211: 388-395.
CrossRef | Direct Link | - Valdes, H., R.F. Tardon and C.A. Zaror, 2012. Methylene blue removal from contaminated waters using heterogeneous catalytic ozonation promoted by natural zeolite: mechanism and kinetic approach. Environ. Technol., 33: 1895-1903.
CrossRef | Direct Link | - Valdes, H., H.P. Godoy and C.A. Zaror, 2012. Influence of volcanic sand surface hydroxyl groups on the heterogeneous catalytic ozonation of methylene blue contaminated waters. J. Adv. Oxidation Technol., 15: 266-276.
Direct Link | - Alejandro, S., H. Valdes, M.H. Manero and C.A. Zaror, 2012. BTX abatement using Chilean natural zeolite: The role of Bronsted acid sites. Water Sci. Technol., 66: 1759-1765.
Direct Link | - Valdes, H., E.E. Padilla and C.A. Zaror, 2011. Influence of chemical surface characteristics of natural zeolite on catalytic ozone abatement. Ozone: Sci. Eng., 33: 279-284.
CrossRef | Direct Link | - Valdes, H. and C.A. Zaror, 2011. Impact of ozone treatment on activated carbon surface properties. Ingeniare. Revista Chilena Ingenieria, 19: 174-185.
- Alejandro, S., H. Valdes and C.A. Zaror, 2011. Natural zeolite reactivity towards ozone: The role of acid surface sites. J. Adv. Oxid. Technol., 14: 182-189.
Direct Link | - Valdes, H., R.F. Tardon and C.A. Zaror, 2010. Effect of zeolite chemical surface properties on catalytic ozonation of methylene blue contaminated waters. Ozone: Sci. Eng., 32: 344-348.
CrossRef | Direct Link | - Valdes, H., H.P. Godoy and C.A. Zaror, 2010. Heterogeneous catalytic ozonation of cationic dyes using volcanic sand. Water Sci. Technol., 61: 2973-2978.
CrossRef | Direct Link | - Valdes, H. and C.A. Zaror, 2010. Influence of activated carbon chemical surface composition on the adsorption ob benzothiazoles. Ingeniare. Revista Chilena Ingenieria, 18: 38-43.
- Valdes, H., V.J. Farfan, J.A. Manoli and C.A. Zaror, 2009. Catalytic ozone aqueous decomposition promoted by natural zeolite and volcanic sand. J. Hazard. Mater., 165: 915-922.
CrossRef | Direct Link | - Valdes, H., R.F. Tardon and C.A. Zaror, 2009. Methylene blue removal from contaminated waters using O3, natural zeolite and O3/zeolite. Water Sci. Technol., 60: 1419-1424.
CrossRef | Direct Link | - Valdes, H., R.F. Tardon and C.A. Zaror, 2009. Cationic dyes removal using ozone, natural zeolite and ozone/zeolite. Ingeniare. Revista Chilena Ingenieria, 17: 360-364.
- Valdes, H., F.A. Murillo, J.A. Manoli and C.A. Zaror, 2008. Heterogeneous catalytic ozonation of benzothiazole aqueous solution promoted by volcanic sand. J. Hazard. Mater., 153: 1036-1042.
CrossRef | Direct Link | - Valdes, H. and C.A. Zaror, 2006. Ozonation of benzothiazole saturated-activated carbons: Influence of carbon chemical surface properties. J. Hazard. Mater., 137: 1042-1048.
CrossRef | Direct Link | - Valdes, H. and C.A. Zaror, 2006. Heterogeneous and homogeneous catalytic ozonation of benzothiazole promoted by activated carbon: Kinetic approach. Chemosphere, 65: 1131-1136.
CrossRef | Direct Link | - Valds, H. and C. Zaror, 2005. Advanced treatment of benzothiazole contaminated waters: Comparison of O3, AC and O3/AC processes. Water Sci. Technol., 52: 281-288.
Direct Link | - Valds, H., C.A. Zaror and M. Jekel, 2004. Kinetic study of reactions between ozone and benzothiazole in water. Water Sci. Technol., 48: 505-510.
Direct Link | - Valdes, H., M. Sanchez-Polo and C.A. Zaror, 2003. Effect of ozonation on the activated carbon surface chemical properties and on 2-mercaptobenzothiazole adsorption. Latin Am. Applied Res., 33: 219-223.
Direct Link | - Valdes, H., M. Sanchez-Polo, J. Rivera-Utrilla and C.A. Zaror, 2002. Effect of ozone treatment on surface properties of activated carbon. Langmuir, 18: 2111-2116.
CrossRef | Direct Link | - Zaror, C., G. Soto, H. Valds and H. Mansilla, 2001. Ozonation of 1, 2-dihydroxybenzene in the presence of activated carbon. Water Sci. Technol., 44: 125-130.
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