Pilar
Rodríguez Barro
Profesora Titular de Universidad
María Teresa
Vilariño Barreiro
Profesora Titular de Universidad
Publicaciones en las que colabora con María Teresa Vilariño Barreiro (11)
2021
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Antioxidant capacity assessment of plant extracts for green synthesis of nanoparticles
Nanomaterials, Vol. 11, Núm. 7
2020
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Biosorption of chemical species by Sargassum algal biomass: Equilibrium data, part I
Handbook of Algal Science, Technology and Medicine (Elsevier), pp. 675-696
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Utilization of seaweed waste: Biosorption of toxic compounds onto invasive seaweed and seaweed wastes
Sustainable Seaweed Technologies: Cultivation, Biorefinery, and Applications (Elsevier), pp. 613-639
2019
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The proton binding properties of biosorbents
Environmental Chemistry Letters, Vol. 17, Núm. 3, pp. 1281-1298
2018
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A Systematic Analysis and Review of the Fundamental Acid-Base Properties of Biosorbents
GREEN ADSORBENTS FOR POLLUTANT REMOVAL: FUNDAMENTALS AND DESIGN (SPRINGER INTERNATIONAL PUBLISHING AG), pp. 73-133
2017
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New polymeric/inorganic hybrid sorbents based on red mud and nanosized magnetite for large scale applications in As(V) removal
Chemical Engineering Journal, Vol. 311, pp. 117-125
2016
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Non-Metabolic Uptake of Al3+ by Dead Leaves of Rubus ulmifolius: Comparison With Metabolic Bioaccumulation Data
Clean - Soil, Air, Water, Vol. 44, Núm. 2, pp. 154-161
2014
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Adsorption of the prototype anionic anthraquinone, acid blue 25, on a modified banana peel: Comparison with equilibrium and kinetic ligand-receptor biochemical data
Industrial and Engineering Chemistry Research, Vol. 53, Núm. 6, pp. 2251-2260
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Erratum: Adsorption of the prototype anionic anthraquinone, acid blue 25, on modified banana peel: Comparison with equilibrium and kinetic ligand-receptor biochemical data (Industrial and Engineering Chemistry Research (2014) 53 (2251-2260) DOI: 10.1021/ie402900n)
Industrial and Engineering Chemistry Research
2011
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Full description of copper uptake by algal biomass combining an equilibrium NICA model with a kinetic intraparticle diffusion driving force approach
Bioresource Technology, Vol. 102, Núm. 3, pp. 2990-2997
1998
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Effect of Ionic Strength on the Kinetics of the Oxidation of Ascorbic Acid by Hexacyanoferrate(III): Comparison between Specific Interaction Theories and the Mean Spherical Approximation
Journal of Chemical Research - Part S, pp. 558-559