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dc.contributor.author | Rangel Calderon, Haiver Eusebio. | - |
dc.date.accessioned | 2022-06-22T22:52:37Z | - |
dc.date.available | 2016-09-24 | - |
dc.date.available | 2022-06-22T22:52:37Z | - |
dc.date.issued | 2016 | - |
dc.identifier.citation | Rangel Calderon, H. E. (2016). Determinación de los parámetros Cinéticos en la síntesis de resina alquídica a partir de policondensación con anhidrido Ftálico y Etilenglicol [Trabajo de Grado Pregrado, Universidad de Pamplona]. Repositorio Hulago Universidad de Pamplona. http://repositoriodspace.unipamplona.edu.co/jspui/handle/20.500.12744/2260 | es_CO |
dc.identifier.uri | http://repositoriodspace.unipamplona.edu.co/jspui/handle/20.500.12744/2260 | - |
dc.description | El aceite de palma (Elais guineensis) es utilizado en la industria alimenticia y en la producción de biocombustibles, aunque no solo se limita a estos dos propósitos. Actualmente, como fuente de ácidos grasos en la producción de monoglicéridos, existe una tendencia a darle valor agregado y una de las opciones es la producción de resinas alquídicas, La obtención de resinas alquídicas se da por la reacción de poliesterificación entre alcoholes polibásicos con ácidos polihídricos, con el uso de aceites como modificadores. Bibliográficamente datos sobre la cinética de reacciones de este tipo son escasos y de muy difícil acceso. En este proyecto se determinaron los parámetros cinéticos en la producción de resina alquídica de aceite de palma a partir de la policondensación con etil englicol, anhídrido ftálico y monoglicéridos. El proceso para la determinación de dichos parámetros conlleva el siguiente protocolo: caracterización del aceite, formulación de la resina alquídica, síntesis de la resina alquídica, caracterización de la resina y finalmente la determinación de los parámetros cinéticos y modelado en Matlab ®. En el proceso de síntesis, la toma de muestras para la determinación de las constantes de velocidad y ordenes de reacción, fue consecutivamente cada 5 minutos durante los primeros 15 minutos desde un tiempo 0 de reacción, posterior a esto se tomó una última muestra al finalizar la reacción ya que pasados los primeros 15 minutos la reacción tiende a un comportamien to lineal. Al mismo tiempo se realizaron mediciones del valor acido para tener control del avance de la reacción. Una vez finalizado este proceso, se determinaron las cantidades de etilenglicol, anhídrido ftálico, ácidos grasos y glicerol en cada muestra, a partir de estos datos se calculó estequiometricamente la producción de los monómeros A y B, y la producción de resina alquídica a partir del agua generada experimentalmente. Los cálculos del orden de reacción y constantes de velocidad se llevaron a cabo con el uso de la ecuación general para orden n que involucra ambos parámetros. El orden de la reacción para el anhídrido ftálico fue de 2 al principio de la reacción y decrece a un orden de 1.5 al término de esta. El etilenglicol y monoglicérido, tuvieron comportamientos similares, ya que los órdenes de reacción fueron de 1.8 y 1.7 respectivamente al principio de la reacción y se propuso un orden final de 1 para ambos reactivos. El modelado con el algoritmo del método cinético de Monte Carlo, a partir de estos datos, dio como resultado una predicción del comportamiento que se ajusta a los datos experimentales. El uso de este método en la verificación de parámetros cinéticos lo hace una herramienta poderosa y de fácil entendimiento. | es_CO |
dc.description.abstract | Palm oil (Elais guineensis) is used in the food industry and biofuel production, although it is not limited to these two purposes. There is now a tendency to give added value and one of the options is the production of alkyd resins, as a source of fatty acids in the production of monoglycerides. Obtaining alkyd resins it is given by the polyesterification reaction between polybasic acids with polyhydric alcohols, with the use of oils as modifiers. Bibliographically data on the kinetics of reactions of this type are rare and very difficult to access. In this project the kinetic parameters were determined in alkyd resin production of palm oil from the polycondensation with ethylene glycol, phthalic anhydride and monoglycerides. The process for determining these parameters followed a protocol to the next character: oil characterization, formulation of alkyd resin synthesis of the alkyd resin, characterization of the resin and final determination of kinetic and modeling parameters in Matlab ®. In the synthesis process, the sampling for determination of rate constants and reaction orders, was consecutively every 5 minutes during the first 15 minutes from time 0 reaction after this a final sample was taken at the end the reaction since past the first 15 minutes the reaction tends to a linear behavior. In turn the acid value measurements to have control progress of the reaction were conducted. Once this process determined quantities of ethylene glycol, phthalic anhydride, fatty acids and glycerol in each sample, from these data is stoichiometrically calculated production of monomers A and B, and the production of alkyd resin from the water generated experimentally. Calculations order reaction rate constants were performed using the general equation for order n involving both parameters. The order of reaction for phthalic anhydride was 2 at the beginning of the reaction and decreases to an order of 1.5 at the end of this. Ethylene glycol and monoglyceride had similar behaviors as the reaction orders were 1.8 and 1.7 respectively of the beginning of the reaction and a final order of 1 for both reagents are proposed. The modeling algorithm kinetic Monte Carlo method, from these data, resulted in a prediction of behavior that fits the experimental data. The use of this method in the verification of kinetic parameters makes it a powerful tool and easily understood. | es_CO |
dc.format.extent | 125 | es_CO |
dc.format.mimetype | application/pdf | es_CO |
dc.publisher | Universidad de Pamplona – Facultad de Ingenierías y Arquitectura. | es_CO |
dc.subject | El autor no proporciona la información sobre este ítem. | es_CO |
dc.title | Determinación de los parámetros Cinéticos en la síntesis de resina alquídica a partir de policondensación con anhidrido Ftálico y Etilenglicol. | es_CO |
dc.type | http://purl.org/coar/resource_type/c_7a1f | es_CO |
dc.date.accepted | 2016-06-24 | - |
dc.relation.references | Al-Harthi, M. A. (2011). MATLAB Programming of Polymerization Processes Using Monte Carlo Techniques, INTECH Open Access Publisher. | es_CO |
dc.relation.references | Ataei, S., R. Yahya and S. N. Gan (2011). "Palm Oleic Acid Based Alkyds: Effect of the Fatty Acid Content on the Polyesterification Kinetics." Journal of Polymers and the Environment 19(2): 540-545. | es_CO |
dc.relation.references | Bailey, A. E., A. G. Padrón and L. M. Cartaya (1961). Aceites y grasas industriales, Reverté. | es_CO |
dc.relation.references | Baryeh, E. A. (2000). "Efects of palm oil processing parameters on yield." | es_CO |
dc.relation.references | Beigzadeh, D., S. Sajjadi and F. A. Taromi (1995). "Kinetic study of polyesterification: Unsaturated polyesters." Journal of Polymer Science Part A: Polymer Chemistry 33(9): 1505-1510. | es_CO |
dc.relation.references | Boaventura, M. (2005). High Solids Alkyd Resins. High solids Alkyd Resins. Resiquimica and C. i. d. n. CIN, K. Holmberg. 1: 18-55. | es_CO |
dc.relation.references | Bonomie, M. and M. Reyes (2012). "Estrategia ambiental en el manejo de efluentes en la extracción de aceite de palma." TELOS Revista de Estudios Interdisciplinarios en Ciencias Sociales 14(3): 323-332. | es_CO |
dc.relation.references | Carraher, C. E. (2003). Giant Molecules: Essential Materials for Everyday Living and Problem Solving, Wiley. | es_CO |
dc.relation.references | CORREA, J. D. and E. RESTREPO (2007). ANÁLISIS DE ALTERNATIVAS EN LAS CONDICIONES DE PROCESO Y SU EFECTO EN EL TIEMPO DE ESTERIFICACIÓN Y EL CONSUMO ENERGÉTICO EN LA PRODUCCIÓN DE UNA RESINA ALQUÍDICA. Ingeniero de procesos, UNIVERSIDAD EAFIT. | es_CO |
dc.relation.references | Chen, S.-A. and K.-C. Wu (1982). "Kinetics of Polyesterification. II. Foreign AcidCatalyzed Dibasic Acid and Glycol System " Journal of Polymer Science: Polymer Chemistry Edition 20: 1819-1831. | es_CO |
dc.relation.references | Elliott, W. T. (1993). Alkyd Resins. Surface Coatings. Netherlands, Springer Volume 1: 76-109. | es_CO |
dc.relation.references | Enns, R. H. and G. C. McGuire (2001). Nonlinear Physics with Mathematica for Scientists and Engineers. Boston, Birkhäuser. | es_CO |
dc.relation.references | Esmiol, S. (2008). "Aceite de Palma: Usos, Origenes e Impactos." | es_CO |
dc.relation.references | Fang, Y.-R., C.-G. Lai and J.-L. Lu (1975). "The Kinetics and Mechanism of Polyesterification of Binary Acid and Binary Alcohol." Scientia Sinica 18(1): 74-87. | es_CO |
dc.relation.references | Fedepalma (2015). Documento Informativo Un panorama sobre el sector Palma africana: Por países y por compañías. fedepalma. Bogotá D.C., Conferencia Mundial del sector palma africana. | es_CO |
dc.relation.references | Fernando Cardeño, L. A. Rios, J. F. Cardona and D. Ocampo (2013). "Síntesis de Resinas Alquídicas a partir de Aceites de Higuerilla, de Palma y de Fritura, Mezclados con Aceite de Soja." Informacion Tecnologica 24(4): 33-42. | es_CO |
dc.relation.references | Flory, P. J. (1939). "Kinetics of Polyesterification: A Study of the Effects of Molecular Weight and Viscosity on Reaction Rate." Journal of the American Chemical Society 61(12): 3334-3340. | es_CO |
dc.relation.references | Flory, P. J. (1946). "FUNDAMENTAL PRINCIPLES OF CONDENSATION POLYMERIZATION." Research Laboratory, The Goodyear Tire and Rubber Company, Akron, Ohio. | es_CO |
dc.relation.references | Fumero, A. and T. García (2005). "Evaluación de los factores que inciden en el secado de un barniz de base alquídica." Revista INGENIERÍA UC 12(1): 17-28. | es_CO |
dc.relation.references | Gan, S.-N. and K.-T. Teo (1999). "Effects of composition variations and curing conditions on the gloss of water reducible clear coatings prepared from palm stearin alkyds." Surface Coatings International 82(1): 31-36. | es_CO |
dc.relation.references | Gardner, H. A. and G. G. Sward (1972). Paint Testing Manual, American Society for Testing & Materials. | es_CO |
dc.relation.references | Gillespie, D. T. (1977). "Exact stochastic simulation of coupled chemical reactions." Journal of Physical Chemistry 81(25): 2340-2361. | es_CO |
dc.relation.references | Gómez, M. F., R. V. Pérez and A. B. Sarmiento (2014). "El aceite de palma africana elae guineensis: Alternativa de recurso energético para la producción de biodiesel en Colombia y su impacto ambiental." Prospect 12(1): 90-98. | es_CO |
dc.relation.references | Hempstead, C. and W. Worthington (2005). Encyclopedia of 20th-Century Technology, Taylor & Francis. | es_CO |
dc.relation.references | Hofland, A. (2012). "Alkyd resins: From down and out to alive and kicking." Progress in Organic Coatings 73(4): 274-282. | es_CO |
dc.relation.references | Islam, M. R., M. D. Hosen Beg and S. S. Jamari (2014). "Alkyd Based Resin from Non -drying Oil." Procedia Engineering 90: 78-88. | es_CO |
dc.relation.references | Jansaku, B., M. Mahidon and M. M. K. Witthayāsāt (1985). Sensitivity Analysis of Oscillations System with Application to Oregonator Model. | es_CO |
dc.relation.references | Jansen, A. P. J. (2012). An Introduction to Kinetic Monte Carlo Simulations of Surface Reactions, Springer Berlin Heidelberg. | es_CO |
dc.relation.references | Jansen, A. P. J. (2012). A Stochastic Model for the Description of Surface Reaction Systems. An Introduction to Kinetic Monte Carlo Simulations of Surface Reactions, Springer Berlin Heidelberg. | es_CO |
dc.relation.references | Kienle, R. H. and A. G. Hovey (1929). "THE POLYHYDRIC ALCOHOL-POLYBASIC ACID REACTION. I. GLYCEROL-PHTHALIC ANHYDRIDE." Journal of the American Chemical Society 51(2): 509-519. | es_CO |
dc.relation.references | Lanson, H. J. (1985). "Chemistry and Technology of Alkyd and Saturated Reactive Polyester Resins." LanChem Corporation 285: 1181-1204. | es_CO |
dc.relation.references | Learner, T. and Getty (2007). Modern Paints Uncovered: Proceedings from the Modern Paints Uncovered Symposium, Getty Conservation Institute. | es_CO |
dc.relation.references | Lin, C. C. and K. H. Hsieh (1977). "The kinetics of polyesterification. I. Adipic acid and ethylene glycol." Journal of Applied Polymer Science 21(10): 2711-2719. | es_CO |
dc.relation.references | Lin, K. F. (2005). Alkyd Resins. Van Nostrand's Encyclopedia of Chemistry, John Wiley & Sons, Inc.: 1-11. | es_CO |
dc.relation.references | LOUIE, B. M., G. M. CARRATT and D. S. SOONG (1985). "Modeling the Free Radical Solution and Bulk Polymerization of Methyl Methacrylate." Journal of Applied Polymer Science 30: 3985-4012. | es_CO |
dc.relation.references | M., I. A. and C. C.Y. (2009). "A Study of the Effect of Palm Oil on the Properties of a New Alkyd Resin." Malaysian Polymer Journal 4(1): 42-49. | es_CO |
dc.relation.references | Maldonado, J. J. (2015). SÍNTESIS DE RESINAS ALQUÍDICAS A PARTIR DE ACEITE DE PALMA MEDIANTE REACCIÓN CON DIFERENTES POLIOLES. Ingeniero Quimico, Universidad de Pamplona. | es_CO |
dc.relation.references | Mastan, E. and S. Zhu (2015). "Method of moments: A versatile tool for deterministic modeling of polymerization kinetics." European Polymer Journal 68: 139-160. | es_CO |
dc.relation.references | McINTYRE, J. E. (2003). Historical Overview. Modern Polyesters: Chemistry and Technology of Polyesters and Copolyesters. J. Scheirs and T. E. Long. | es_CO |
dc.relation.references | McQUARRIE D, A. (1967). "Stochastic Approach to Chemical Kinetics." Journal of Applied Probability 4(3): 413-478. | es_CO |
dc.relation.references | Nanvaee, A. A., R. Yahya and S. N. Gan (2009). "ALKYD RESINS ARE STILL OF MAJOR IMPORTANT BINDERS IN ORGANIC COATINGS." Malaysia Polymer International Conference 23(2): 65-69. | es_CO |
dc.relation.references | Oladipo, G. O., I. C. Eromosele and O. M. Folarin (2013). "Formation and Characterization of Paint Based on Alkyd Resin Derivative of Ximenia americana (Wild Olive) Seed Oil." Environment and Natural Resources Research 3(3). | es_CO |
dc.relation.references | Patel, V. C., J. Varaghuse, P. A. Krishnamoorthy, R. C. Jain, A. K. Singh and M. Ramanoorty (2007). | es_CO |
dc.relation.references | Synthesis of Alkyd Resin from Jatropha and Rapeseed Oils and Their Applications in Electrical Insulation." Journal of Applied Polymer Science, 107: 1724–1729. | es_CO |
dc.relation.references | Patton, T. C. (1962). Alkyd Resin Technology,. Kirk-Othmer Encyclopedia of Chemical Technology. J. ZENO W. WICKS, John Wiley & Sons,. 2. | es_CO |
dc.relation.references | Raychaudhuri, S. (2008). "INTRODUCTION TO MONTE CARLO SIMULATION." Oracle Crystal Ball Global Business Unit Proceedings of the 2008 Winter Simulation Conference: 91-100. | es_CO |
dc.relation.references | Raychaudhuri, S. (2008). INTRODUCTION TO MONTE CARLO SIMULATION. Proceedings of the 2008 Winter Simulation Conference. S. J. Mason, R. R. Hill, L. Mönch et al. Broomfield, C.O. 80021, U.S.A., Oracle Crystal Ball Global Business Unit. | es_CO |
dc.relation.references | Rethy, E. S. (1971). "COMMENTS ON THE CALCULATION METHODS OF KINETICS OF POLYESTERIFICATION REACTIONS." European Polymer Journal 7: 1485-1499. | es_CO |
dc.relation.references | Rincón, S. M. and D. M. Martínez (2009). "An Analysis of the Properties of Oil Palm in the Development of the its Industry." PALMAS 30(2): 11-24. | es_CO |
dc.relation.references | Rubinstein, R. Y. and D. P. Kroese (2011). Simulation and the Monte Carlo Method, Wiley. | es_CO |
dc.relation.references | Salami-Kalajahi, M., M. Najafi and V. Haddadi-Asl (2009). "Application of Monte Carlo simulation method to polymerization kinetics over Ziegler-Natta catalysts." International Journal of Chemical Kinetics 41(1): 45-56. | es_CO |
dc.relation.references | Saldıvar-Guerra, E. and E. Vivaldo-Lima (2013). INTRODUCTION TO POLYMERS AND POLYMER TYPES. Handbook of Polymer Synthesis, Characterization, and Processing. E. S. Guerra and E. V. Lima, JOHN WILEY & SONS, INC. | es_CO |
dc.relation.references | Salmi, T., E. Paatero and P. Nyholm (2004). "Kinetic model for the increase of reaction order during polyesterification." Chemical Engineering and Processing: Process Intensification 43(12): 1487-1493. | es_CO |
dc.relation.references | Scheirs, J. and T. E. Long (2004). The Historical Development of polyesters. Modern Polyesters: Chemistry and Technology of Polyesters and Copolyesters. J. Scheirs. | es_CO |
dc.relation.references | Scheirs, J. and T. E. Long (2005). Modern Polyesters: Chemistry and Technology of Polyesters and Copolyesters, Wiley. | es_CO |
dc.relation.references | Seeboldt, S. and Y. S. Abdala (2010). Responsabilidad y sostenibilidad de la industria de la palma. I. d. e. p. e. d. y. l. p. INDEPAZ. Bogotá D.C Oxfam Novid. | es_CO |
dc.relation.references | Soucek, M. D. and R. R. Salata (2014). "Alkyd Resin Synthesis." 1-6. | es_CO |
dc.relation.references | Tang, A.-C. and K.-S. Yao (1959). "Mechanism of hydrogen ion catalysis in esterification. II. Studies on the kinetics of polyesterification reactions between dibasic acids and glycols." Journal of Polymer Science Part B: Polymer Physics 35(128): 219-233. | es_CO |
dc.relation.references | USDA, F. A. S. (2015). Oilseeds: World Markets and Trade. | es_CO |
dc.relation.references | Uzoh, C. F., O. D. Onukwuli, R. S. Odera and S. Ofochebe (2013). "Optimization of polyesterification process for production of palm oil modified alkyd resin using response surface methodology." Journal of Environmental Chemical Engineering 1(4): 777-785. | es_CO |
dc.relation.references | Uzoh, C. F., O. D. Onukwuli, R. S. Odera and C. F. Okey-Onyesolu (2013). "SYNTHESIS AND CHARACTERIZATION OF PALM OIL BASED AIR DRYING ALKYD RESIN FOR SURFACE COATING." | es_CO |
dc.relation.references | Research Journal in Engineering and Applied Sciences 2(3): 187-191. | es_CO |
dc.relation.references | van Haveren, J., E. A. Oostveen, F. Miccichè, B. A. J. Noordover, C. E. Koning, R. A. T. M. van Benthem, A. E. Frissen and J. G. J. Weijnen (2007). "Resins and additives for powder coatings and alkyd paints, based on renewable resources." Journal of Coatings Technology and Research 4(2): 177-186. | es_CO |
dc.relation.references | Zetterlund, P., W. Weaver and A. Johnson (2002). "Kinetics of Polyesterification: Modelling of the Condensation of Maleic Anhydride, Phthalic Anhydride, and 1,2-Propylene Glycol." Polymer Reaction Engineering 10(1&2): 41-57. | es_CO |
dc.relation.references | Zhang, X. Q. and A. P. Jansen (2010). "Kinetic Monte Carlo method for simulating reactions in solutions." Phys Rev E Stat Nonlin Soft Matter Phys 82(4 Pt 2): 046704. | es_CO |
dc.rights.accessrights | http://purl.org/coar/access_right/c_abf2 | es_CO |
dc.type.coarversion | http://purl.org/coar/resource_type/c_2df8fbb1 | es_CO |
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