Luis E. Arteaga Pérez. Dr.
Doctor en Ciencias Técnicas
Asignaturas
.- Simulación y optimización de procesos químicos
.- Proyecto de ingeniería
Lineas de Investigación
Publicaciones
Publicaciones ISI
[1]. Arteaga-Pérez, L. E., Gòmez-Capiro, O., Delgado, A., Alejandro, S., & Jímenez, R. (2017). Elucidating the role of ammonia-based salts on the preparation of cellulose-derived carbon aerogels. Chemical Engineering Science, 161, 80–91.
[2]. Arteaga-pérez, L. E., Grandón, H., Flores, M., Segura, C., & Kelley, S. S. (2017). Bioresource Technology Steam torrefaction of Eucalyptus globulus for producing black pellets?: A pilot-scale experience. Bioresource Technology, 238, 194–204.
[3]. Arteaga-Pérez, L. E., Romero, R., Olivera, P., Delgado, A., Gómez-Cápiro, O., & Jimenez, R. (2017). In situ catalytic fast pyrolysis of crude and torrefied Eucalyptus globulus using carbon aerogel-supported catalysts. Energy, 128, 701–712.
[4]. Spaudo, F., & Arteaga-p, L. E. (2017). Exergoenvironmental analysis of a waste-based Integrated Combined Cycle ( WICC ) for heat and power production. Journal of Cleaner Productions, 164, 187–197.
[5]. Arteaga-pérez, L. E., Gómez-cápiro, O., Karelovic, A., & Jiménez, R. (2016). A modelling approach to the techno-economics of Biomass-to-SNG / Methanol systems?: Standalone vs Integrated topologies. Chemical Engineering Journal, 286, 663–678.
[6]. Arteaga-pérez, L. E., Segura, C., & Diéguez, K. (2016). Procesos de torrefacción para valorización de residuos lignocelulósicos. Análisis de posibles tecnologías de aplicación en Sudamérica. Afinidad, 572(73), 1–9.
[7]. Arteaga-Pérez, L. E., Segura, C., Bustamante-García, V., Gómez Cápiro, O., & Jiménez, R. (2015). Torrefaction of wood and bark from Eucalyptus globulus and Eucalyptus nitens: Focus on volatile evolution vs feasible temperatures. Energy, 93, 1731–1741.
[8]. Arteaga-Pérez, L. E., Segura, C., Espinoza, D., Radovic, L. R., & Jiménez, R. (2015). Torrefaction of Pinus radiata and Eucalyptus globulus: A combined experimental and modeling approach to process synthesis. Energy for Sustainable Development, 29, 13–23.
[9]. Arteaga-Pérez, L. E., Vega, M., Rodríguez, L. C., Flores, M., Zaror, C. A., & Casas Ledón, Y. (2015). Life-Cycle Assessment of coal-biomass based electricity in Chile: Focus on using raw vs torrefied wood. Energy for Sustainable Development, 29, 81–90.
[10]. Casas Ledón, Y., Arteaga-Perez, L. E., Toledo, J., & Dewulf, J. (2015). Exergoeconomic evaluation of an ethanol-fueled solid oxide fuel cell power plant. Energy, 93, 1287–1295.
[11]. Casas Ledón, Y., González, P., Concha, S. Arteaga-Pérez, L. E., (2016). Exergoeconomic valuation of a waste-based integrated combined cycle ( WICC) for heat and power production. Energy, 114, 239–252.
[12]. Rodríguez-Díaz, J. M., García, J. O. P., Sánchez, L. R. B., da Silva, M. G. C., da Silva, V. L., & Arteaga-Pérez, L. E. (2015). Comprehensive Characterization of Sugarcane Bagasse Ash for Its Use as an Adsorbent. BioEnergy Research, 8(4), 1885–1895.
[13]. Arteaga-Pérez, L. E., Casas-Ledón, Y., Prins, W., & Radovic, L. (2014). Thermodynamic predictions of performance of a bagasse integrated gasification combined cycle under quasi-equilibrium conditions. Chemical Engineering Journal, 258, 402–411.
[14]. Casas-Ledon, Y., Arteaga-Perez, L. E., Dewulf, J., Morales, M. C., Rosa, E., Peralta-Suáreza, L. M., & Van Langenhove, H. (2014). Health external costs associated to the integration of solid oxide fuel cell in a sugar-ethanol factory. Applied Energy, 113, 1283–1292.
[15]. Arteaga-Pérez, L. E., Casas-Ledón, Y., Pérez-Bermúdez, R., Peralta, L. M., Dewulf, J., & Prins, W. (2013). Energy and exergy analysis of a sugar cane bagasse gasifier integrated to a solid oxide fuel cell based on a quasi-equilibrium approach. Chemical Engineering Journal, 228, 1121–1132.
[16]. Busto, Y., Tack, F. M. G., Peralta, L. M., Cabrera, X., & Arteaga-Pérez, L. E. (2013). An investigation on the modelling of kinetics of thermal decomposition of hazardous mercury wastes. Journal of Hazardous Materials, 260, 358–367.
[17]. Arteaga-Pérez, L. E., Casas-Ledón, Y., Pérez-Bermúdez, R., Rodríguez-Machín, L., Peralta-Suárez, L. M., Prieto-García, J. O., & Dewulf, J. (2012). Determinación de la calidad energética y la composición del gas de síntesis producido con biocombustibles. Parte II: Combustibles sólidos, bagazo de caña de azúcar. Afinidad, 557(48), 35–41.
[18]. Pérez, L. E. A.-, Ledón, Y. C.-, Pérez, R., Rodríguez, L., Suárez, L. M. P.-, & Santos, R. (2012). A Thermodynamic Approach to the Integration of a Sugar Cane Bagasse Gasifier with a Solid Oxide Fuel Cell. Chemical Engineering Transactions, 29, 1255–1260.
[19]. Prieto, J. O., Arteaga-Pérez, L. E., Rodríguez, J. M., Treto, M., Guintana, R., & Alujas, A. (2012). Evaluation of the coupled reaction-adsorption of Ca 2+ ions on ashes from sugar cane bagasse. Kinetic and thermodynamic approaches. Afinidad, 560(53), 45–50.
[20]. Ríos, L. M., Peralta, L. M., & Arteaga, L. E. (2012). Use of the Modelling in the Development of a Technology for Treating Wastewater from a Dangerous Process. Chemical Engineering Transactions, 29, 1279–1284.
[21]. Villar, M. M. P., Domínguez, E. R., Tack, F., Ruiz, J. M. H., Morales, R. S., & Arteaga, L. E. (2012). Vertical Subsurface Wetlands for Wastewater Purification. Procedia Engineering, 42, 1960–1968.
[22]. Zorrilla, M., Velazco, P., Villanueva, G., Arteaga, L. E., & Van Langenhove, H. (2012). Deshalogenation of Sovtol-10 Using a No-Destructive Method: Pilot Plant Design. Procedia Engineering, 42, 346–357.
[23]. Arteaga-Pérez, L. E., Casas, Y., Peralta, L. M., Prieto, O., Granda, D., & Treto, M. A. (2011). Determinación de la calidad energética y la composición del gas de síntesis Parte I?: Combustibles Líquidos, Etanol. Afinidad, 554(48), 285–289.
[24]. Casas, Y., Dewulf, J., Arteaga-Pérez, L. E., Morales, M., Van Langenhove, H., & Rosa, E. (2011). Integration of Solid Oxide Fuel Cell in a sugar–ethanol factory: analysis of the efficiency and the environmental profile of the products. Journal of Cleaner Production, 19(13), 1395–1404.
[25]. Casas, Y., Arteaga-Pérez, L. E., Morales, M., Rosa, E., Peralta, L. M., & Dewulf, J. (2010). Energy and exergy analysis of an ethanol fueled solid oxide fuel cell power plant. Chemical Engineering Journal, 162(3), 1057–1066.
[26]. Arteaga-Pérez, L. E., Casas, Y., Peralta, L. M., Kafarov, V., Dewulf, J., & Giunta, P. (2009). An auto-sustainable solid oxide fuel cell system fueled by bio-ethanolProcess simulation and heat exchanger network synthesis. Chemical Engineering Journal, 150(1), 242–251.
[27]. Arteaga-Pérez, L. E., Prieto, J. O., Curvelo, A., & Peralta, L. M. (2009). Evaluación tecnológica de catalizadores Co-SiO2 y Cu-CaSiO3 para la producción de hidrógeno a partir de etanol. Cinética de adsorción iónica y mecanismo de reacción. Afinidad, 543(46), 3–7.
[28]. Arteaga, L. E., Peralta-Suárez, L. M., Casas-Ledón, Y., & Castro, D. (2009). Optimal Design, Modeling and Simulation of an Ethanol Steam Reforming Reactor International Journal of Chemical Reactor Engineering, 7, A59.
[29]. Arteaga, L. E., Peralta, L. M., Kafarov, V., Casas, Y., & Gonzales, E. (2008). Bioethanol steam reforming for ecological syngas and electricity production using a fuel cell SOFC system. Chemical Engineering Journal, 136(2–3), 256–266.
[30]. Arteaga-Pérez, L. E., & Casas, Y. (2015). Gasificación de biomasa para la producción sostenible de energía. Revisión de las tecnologías y barreras para su aplicación. Afinidad, 570(72), 2–9.
Proyectos
Proyectos (últimos 5 años)
1. Use of microcellulose-derived carbon aerogels as catalysts for tars and ammonia decomposition . CONICYT-FONDECYT. Códg. 11150148.. 2015-2018
2. Advanced materials for catalytic upgrading of biomass-derived syngas: Focus on sustainable energy production. CONICYT-PCI. Códg. BMBF150029. 2016-2019. Investigador Asociado
3. Generación CHP a pequeña escala: Mejoramiento catalítico de los productos de gasificación de biomasa. CONICYT –FONDEF. Códg. ID15I10132. 2015-2017. Director Alterno/Inestigador Principal
4. Empaquetamiento tecnológico de producción de un biocombustible sólido sustituto de carbón, para generación eléctrica y térmica. CORFO INNOVA CHILE. Códg. 14IDL4-30438. 2014-2017. Investigador Principal
5. Research network on thermochemical conversion of biomass between The UDT and The Institute of Chemical and Energy Engineering of BOKU. CONICYT-PCI. Códg. REDES150080. 2016-2017. Investigador
6. Semi-Mobile Bioenergy from Agricultural and Forest residues in Chile and Beyond. (SeMoBioEnergy). BMBF031B0056AInstitute for Industrial Production-KIT 2015-2018. Investigador