Electrical Double Layer as a Model of Interaction between Cellulose and Solid Acid Catalysts of Hydrolysis

Электрический двойной слой как модель взаимодействия целлюлозы и твердых кислотных катализаторов гидролиза
Nikolay Tarabanko, Valery E. Tarabanko, Sergey V. Kukhtetskiy, Оxana P. Тaran
2019-01-17

cellulose hydrolysisdiffuse layer of protonselectrical double layerelectrostatic attraction between cellulose and catalystsolid acid catalysts
Solid acid catalysts of cellulose hydrolysis in aqueous media attract considerable research interest because of the ease of their separation from the reaction products. The nature of interaction between the two solids is a relevant topic of ongoing research. One aspect of behavior of solid acids in water was not previously discussed in literature with regard to hydrolysis of cellulose: electrolytic dissociation and formation of electric double layers. In this work, on theoretical level, we consider the role of the double layer created by the solid acid when cellulose hydrolysis takes place. The diffuse layer of protons is regarded as the medium where the hydrolysis reaction occurs. Protonation of cellulose by these protons imparts positive charge onto its surface, and cellulose is electrostatically attracted to the polyanion of the catalyst. Thus, the two solid surfaces stay close to each other despite Brownian motion; this allows explaining the high activity of solid catalysts even when chemisorption of carbohydrates on a catalyst is not favorable.
1
Electrolytic dissociation of solid acid catalysts in water leads to formation of an electric double layer relevant to cellulose hydrolysis.
2
Electrostatically attracted protonated cellulose binds to the catalyst polyanion, keeping the two solids closely associated despite Brownian motion.
3
Protonation of cellulose by diffuse-layer protons imparts positive surface charge to cellulose.
4
The diffuse layer of protons around the solid acid is proposed as the medium where cellulose hydrolysis occurs.
5
This electric-double-layer-mediated proximity explains high activity of solid acid catalysts even when chemisorption of carbohydrates on the catalyst is unfavorable.

Electrical double layer formed at the interface between solid acid catalysts and aqueous cellulose (proton diffuse layer at the catalyst–cellulose interface)

Role of the electric double layer in mediating interaction and protonation-driven electrostatic attraction between cellulose and solid acid catalysts, and its effect on hydrolysis reaction locality and catalyst activity

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2019-01-17
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Nikolay Tarabanko
Valery E. Tarabanko
Sergey V. Kukhtetskiy
Оxana P. Тaran
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