MARÍA MERCEDES
OLIET PALA
Catedrática de universidad
Argitalpenak (101) MARÍA MERCEDES OLIET PALA argitalpenak
2024
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Fractionation of Pinus radiata by ethanol-based organosolv process
Biomass Conversion and Biorefinery, Vol. 14, Núm. 1, pp. 451-464
2023
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Effect of autohydrolysis and ionosolv treatments on eucalyptus fractionation and recovered lignin properties
RSC Advances, Vol. 13, Núm. 15, pp. 10338-10348
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Eucalyptus bleached kraft pulp-ionic liquid inks for 3D printing of ionogels and hydrogels
Carbohydrate Polymers, Vol. 313
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MATLAB applications for teaching Applied Thermodynamics: Thermodynamic cycles
Computer Applications in Engineering Education, Vol. 31, Núm. 4, pp. 900-915
2022
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A new approach for the use of cellulose-rich solids from biorefinery in the formulation of gel-like materials
Industrial Crops and Products, Vol. 186
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Materiales docentes para el autoaprendizaje y la enseñanza virtual: notebooks y aplicaciones
Jornada «Aprendizaje Eficaz con TIC en la UCM» (Universidad Complutense de Madrid), pp. 425-435
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Organosolv and ionosolv processes for autohydrolyzed poplar fractionation: Lignin recovery and characterization
International Journal of Biological Macromolecules, Vol. 197, pp. 131-140
2021
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Cellulose ionogels, a perspective of the last decade: A review
Carbohydrate Polymers, Vol. 274
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Teaching chemical engineering using Jupyter notebook: Problem generators and lecturing tools
Education for Chemical Engineers, Vol. 37, pp. 1-10
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Technoeconomic Assessment of a Biomass Pretreatment + Ionic Liquid Recovery Process with Aprotic and Choline Derived Ionic Liquids
ACS Sustainable Chemistry and Engineering
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Thermal degradation kinetics of a lignin particle-reinforced phenolic foam
Journal of Cellular Plastics, Vol. 57, Núm. 2, pp. 176-192
2020
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A biorefinery strategy for the manufacture and characterization of oligosaccharides and antioxidants from poplar hemicelluloses
Food and Bioproducts Processing, Vol. 123, pp. 398-408
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Acidic depolymerization vs ionic liquid solubilization in lignin extraction from eucalyptus wood using the protic ionic liquid 1-methylimidazolium chloride
International Journal of Biological Macromolecules, Vol. 157, pp. 461-469
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Chitosan-reinforced cellulosic bionogels: Viscoelastic and antibacterial properties
Carbohydrate Polymers, Vol. 229
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Control de emisiones y residuos
Ingeniería de procesos: diseño e integración de procesos químicos (Dextra), pp. 327-371
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Diseño de procesos sostenibles
Ingeniería de procesos: diseño e integración de procesos químicos (Dextra), pp. 373-391
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Ecotoxicity of cellulose-1-butyl-3-methylimidazolium chloride ionogels composites reinforced with chitosan
ECCM 2018 - 18th European Conference on Composite Materials
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Evaluating Protic Ionic Liquid for Woody Biomass One-Pot Pretreatment + Saccharification, Followed by Rhodosporidium toruloides Cultivation
ACS Sustainable Chemistry and Engineering, Vol. 8, Núm. 2, pp. 782-791
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Protic, Aprotic, and Choline-Derived Ionic Liquids: Toward Enhancing the Accessibility of Hardwood and Softwood
ACS Sustainable Chemistry and Engineering, Vol. 8, Núm. 3, pp. 1362-1370
2019
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Application of microscopy techniques for a better understanding of biomass pretreatment
Industrial Crops and Products, Vol. 138