Issue 12, 2005

A systematic investigation of aluminium ion speciation at high temperature. Part. 1. Solution studies

Abstract

Speciation diagrams of aluminium ions in aqueous solution (0.2 M) at high temperature (90 °C) have been obtained from 48 h time-resolved multi-batch titration experiments monitored by 27Al NMR spectroscopy, potentiometry and dynamic light scattering. The quantitative speciation patterns and kinetic data obtained offer a dynamic picture of the distribution of soluble and insoluble Al species as a function of hydrolysis ratio h (h = [OH]/[Al3+]) over a very broad range of conditions (−1.0 ≤ h ≤ 4.0). Monomeric, small oligomeric, tridecameric (the ‘Al13-mer’) and the recently characterised 30-meric aluminium species (the ‘Al30-mer’) as well as aluminium hydroxide have been identified and quantified. The Al13-mer species dominates over a relatively broad range of hydrolysis ratios (1.5 ≤ h ≤ 2.7) during the first 6 h of experiment, but are gradually replaced by Al30-mers at longer reaction times. Kinetic profiles indicate that the formation of the Al30-mer is limited by the disappearance of the Al13 species at mildly acidic conditions. The estimated rate constants of both hydrolytic processes show good internal correlation at h ≥ 1.5. The effect of local perturbations leading to the formation of aluminium hydroxide below the electroneutrality point (h = 3.0) has been estimated quantitatively.

Graphical abstract: A systematic investigation of aluminium ion speciation at high temperature. Part. 1. Solution studies

Article information

Article type
Paper
Submitted
09 Feb 2005
Accepted
19 Apr 2005
First published
16 May 2005

Dalton Trans., 2005, 2098-2105

A systematic investigation of aluminium ion speciation at high temperature. Part. 1. Solution studies

K. L. Shafran and C. C. Perry, Dalton Trans., 2005, 2098 DOI: 10.1039/B502097B

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