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Paper Details


Bibliographic Data:


Code: HVB87
Paper Type: Article
Author(s): Hiemstra T, Van Riemsdijk WH, Bruggenwert MGM
Title: Proton adsorption mechanism at the gibbsite and the aluminium oxide solid/solution interface
Journal: Netherlands Journal of Agricultural Science
Volume: 35   Year: 1987   Pages: 281-293
ISSN-Print: 0028-2928
Internal Storage: V1652
Abstract:

Titration curves of a synthetic pure crystalline gibbsite suspension have been made at three NaCl levels. The synthesized gibbsite is characterized by TEM, TGA and X-ray diffraction. The overall BET surface area and the surface area of the edges oh the hexagonal crystals are determined. The surface structure of gibbsite is discussed. The σ0-pH are analysed with a recently proposed one-step charging model for proton adsorption (one-pK model). Analysis of the data suggests that the singly coordinated surface hydroxyls are probably the dominant reactive surface group. Considering these groups as reactive only the titration data could be fitted well with the one-pK model if it is extended with pair formation. Only two adjustable parameters are needed, the Stern layer capacitance and the pair formation constant. Analysis of the titration data of aluminium oxides, as presented in recent literature, showed that all σ0-pH curves could be described rather well with one and the same set of two parameters, the capacitance of the Stern layer and the pair formation constant. The difference in proton adsorption behaviour between different aluminium (hydr)oxides is mainly caused by differences in the site distribution and the site densities of the aluminium (hydr)oxides involved. The results suggest that pair formation should be taken into account.

Comment: cited in [DBMCB98] and[S05]

Surface Area   |   Site Density / Protolysis   |   Complex Formation   |   Formatted Citation