In order to study the pore solution, the release and binding of alkalis in a hydrating cement system have been studied. First, the binding factors for sodium and potassium as determined by Taylor [Adv. Cem. Res. 1 (1987) 5] and the corresponding distribution ratios as determined by Hong and Glasser [Cem. Concr. Res. 29 (1999) 1893; Cem. Concr. Res. in press] are related to each other. It follows that the sorption of sodium is practically identical, whereas for potassium Taylor [Adv. Cem. Res. 1 (1987) 5] predicts a substantial lower degree of sorption. The concept of alkali release, pore solution decrease and sorption by formed calcium-silicate hydrate (C-S-H), is incorporated in the NIST hydration model (CEMHYD3D). Subsequently, the model ...
This research investigates the influence of alkali hydroxides on unrestrained volume changes. A deta...
Alkali cations in cement exist either as soluble sulfates or in the major clinker phases, such as tr...
It has been previously established that alkali silica reaction (ASR) in concrete may be controlled b...
In order to study the pore solution, the release and binding of alkalis in a hydrating cement system...
The alkali-binding capacity of C–S–H in hydrated Portland cement pastes is addressed in this study. ...
A computed-based model for the alkali concentrations in pore solution of hydrating Portland cement p...
The alkalinity of the pore liquid in hardened cement paste or concrete is important for the long-ter...
In this paper, a 3D numerical cement hydration model is used for predicting alkali and hydroxyl conc...
The alkalinity of the pore solution is of great interest for evaluating the rising of the alkali&nda...
An experimental procedure was developed and applied to cement pastes made with two different pozzola...
This research investigates the influence of alkali hydroxides on unrestrained volume changes. A deta...
The concentrations of Ca, S, Al, Si, Na, and K in the pore solutions of ordinary Portland cement (OP...
This research investigates the influence of alkali hydroxides on unrestrained volume changes. A deta...
Alkali cations in cement exist either as soluble sulfates or in the major clinker phases, such as tr...
It has been previously established that alkali silica reaction (ASR) in concrete may be controlled b...
In order to study the pore solution, the release and binding of alkalis in a hydrating cement system...
The alkali-binding capacity of C–S–H in hydrated Portland cement pastes is addressed in this study. ...
A computed-based model for the alkali concentrations in pore solution of hydrating Portland cement p...
The alkalinity of the pore liquid in hardened cement paste or concrete is important for the long-ter...
In this paper, a 3D numerical cement hydration model is used for predicting alkali and hydroxyl conc...
The alkalinity of the pore solution is of great interest for evaluating the rising of the alkali&nda...
An experimental procedure was developed and applied to cement pastes made with two different pozzola...
This research investigates the influence of alkali hydroxides on unrestrained volume changes. A deta...
The concentrations of Ca, S, Al, Si, Na, and K in the pore solutions of ordinary Portland cement (OP...
This research investigates the influence of alkali hydroxides on unrestrained volume changes. A deta...
Alkali cations in cement exist either as soluble sulfates or in the major clinker phases, such as tr...
It has been previously established that alkali silica reaction (ASR) in concrete may be controlled b...