Dr. MARTÍN RIGOBERTO ARELLANO MARTÍNEZ
Resumen curricular:
El Dr. Martin Rigoberto Arellano Martínez es Profesor Investigador Titular “C” adscrito al Ingeniería Química (CUCEI). Actualmente, se desempeña como Jefe del Departamento de Ingeniería Química (2011-). Desde 1991 es miembro del Sistema Nacional de Investigadores (S.N.I.), actualmente como Investigador Nacional Nivel I, tiene un índice H de 14 y cuenta con 40 artículos en revistas de JCR. Ha dirigido varias tesis (6 del Doctorado en Ciencias en Ingeniería Química, 16 de la Maestría en Ciencias Ingeniería Química, 1 de la Maestría en Ciencias Química y 28 de la Licenciatura en Ingeniería Química). En 1999 obtuvo el Premio al mejor trabajo (Best Paper Award, ANTEC 99) otorgado por la División de polímeros termofijos (Thermoset Division) de la Sociedad de Ingenieros en Plásticos (Society of Plastics Engineers, E.U.). Sus líneas de investigación son Síntesis y Caracterización de Polímeros y Procesamiento de Polímeros, actualmente trabaja en el desarrollo de compositos y biocompositos poliméricos con aplicaciones en la remoción de sustancias contaminantes.
Perfil de Investigador SNII:
Perfil PRODEP:
Bases de datos bibliográficas:
Publicaciones del académico:
- Mechanical recycling of biobased polyethylene-agave fiber composites
- Weathering of compatibilized poly(hydroxybutyrate)/agave fiber biocomposites produced by different mixing methods
- Weathering of compatibilized poly (hydroxybutyrate)/agave fiber biocomposites produced by different mixing methods
- A critical overview of adsorption models linearization: methodological and statistical inconsistencies
- Influence of agro-industrial wastes over the abiotic and composting degradation of polylactic acid biocomposites
- Chemically modified polysaccharides for hexavalent chromium adsorption
- A discussion on linear and non-linear forms of Thomas equation for fixed-bed adsorption column modeling
- Accelerated weathering of polylactic acid/agave fiber biocomposites and the effect of fiber–matrix adhesion
- Accelerated weathering of poly(lactic acid) and its biocomposites: A review
- Fixed-bed adsorption of Cr(VI) onto chitosan supported on highly porous composites
- Mechanical and thermal properties of polyethylene/carbon nanofiber composites produced by rotational molding
- Accelerated weathering of poly (lactic acid) and its biocomposites: A review
- Fixed-bed adsorption of Cr (VI) onto chitosan supported on highly porous composites
- GLYCIDYL Methacrylate-Compatibilized Poly (Lactic Acid)/Nanoclay/Agave Fiber Hybrid Biocomposites: Effect on The Physical and Mechanical Properties
- Glycidyl methacrylate as compatibilizer of poly(Lactic acid)/nanoclay/agave fiber hybrid biocomposites: Effect on the physical and mechanical properties
- Effect of surface treatment on the physical and mechanical properties of injection molded poly(lactic acid)-coir fiber biocomposites
- Effect of low nanoclay content on the physico-mechanical properties of poly(lactic acid) nanocomposites
- A Quantitative Spectroscopic Study of the Bleaching Phenomena in Plasticized Formulations Containing PVC Exposed to Outdoor Conditions
- Effect of surface treatment on the physical and mechanical properties of injection molded poly (lactic acid)‐coir fiber biocomposites
- Effect of low nanoclay content on the physico-mechanical properties of poly (lactic acid) nanocomposites
- Polymerization of alkyl methacrylate nanoemulsions made by the phase inversion temperature method
- Synthesis, characterization, and drug delivery from pH-and thermoresponsive poly (N-isopropylacrylamide)/chitosan core/shell nanocomposites made by semicontinuous heterophase …
- Synthesis, Characterization, and Drug Delivery from pH- and Thermoresponsive Poly(N-Isopropylacrylamide)/Chitosan Core/Shell Nanocomposites Made by Semicontinuous Heterophase Polymerization
- Synthesis, Characterization, and Drug Delivery from pH‐and Thermoresponsive Poly (N‐Isopropylacrylamide)/Chitosan Core/Shell Nanocomposites Made by Semicontinuous Heterophase …
- Effect of coupling agent content and water absorption on the mechanical properties of coir-agave fibers reinforced polyethylene hybrid composites
- Temperature and pH-Responsive Polyacrylamide/Poly(Acrylic Acid) Interpenetrating Polymer Network Nanoparticles
- Temperature and pH-responsive polyacrylamide/poly (acrylic acid) interpenetrating polymer network nanoparticles
- Effect of coupling agent content and water absorption on the mechanical properties of coir‐agave fibers reinforced polyethylene hybrid composites
- Effect of particle size on the swelling and compression modulus of nanostructured polyacrylamide hydrogels
- A novel polyacrylamide-based hydrogel crosslinked with cellulose acetate and prepared by precipitation polymerization