The mechanochemical activation of a high defect kaolinite has been studied using a combination of high-resolution thermogravimetry and DRIFT spectroscopy. The effect of grinding causes a decrease in the dehydroxylation temperature and an increase in the amount of adsorbed/coordinated water. The temperature of dehydration also increases with grinding time. It is proposed that this dehydroxylation occurs through a homogenous process involving proton transfer through point heating. The amount of adsorbed water decreases with the increase in temperature of the thermal treatment
11 pages, figures, and tables stastics.Two kaolinites of different structural order designated KGa-2...
Kaolinite surfaces were modified by grinding kaolinite/quartz mixtures with mole fractions of 0.25 k...
The modification of kaolinite surfaces through mechanochemical treatment has been studied using a co...
The thermal behaviour of mechanochemically treated kaolinite has been investigated under dynamic and...
A comparison is made of the mechanochemical activation of three low and one high defect kaolinites u...
The effect of mechanochemical activation upon the intercalation of formamide into a high-defect kaol...
Kaolinite surfaces were modified by mechanochemical treatment for periods of time up to 10 h. X-ray ...
Kaolinite surfaces were modified by mechanochemical treatment for periods of time up to 10 h. X-ray ...
DRIFT spectroscopy has been used to study the changes in the molecular structure of kaolinite mechan...
The effect of mechanochemical activation upon the intercalation of formamide into a high-defect kaol...
Kaolinite has been mechanochemically activated by dry grinding for periods of time up to 10 h. The k...
Changes in the hydroxyl surfaces of kaolinite have been studied through mechanochemical activation f...
The mechanochemical activation (dry grinding) causes destruction in the crystal structure of kaolini...
DRIFT spectroscopy has been used to study the changes in the molecular structure of kaolinite mechan...
Kaolinite surfaces were modified by grinding kaolinite/quartz mixtures with mole fractions of 0.25 k...
11 pages, figures, and tables stastics.Two kaolinites of different structural order designated KGa-2...
Kaolinite surfaces were modified by grinding kaolinite/quartz mixtures with mole fractions of 0.25 k...
The modification of kaolinite surfaces through mechanochemical treatment has been studied using a co...
The thermal behaviour of mechanochemically treated kaolinite has been investigated under dynamic and...
A comparison is made of the mechanochemical activation of three low and one high defect kaolinites u...
The effect of mechanochemical activation upon the intercalation of formamide into a high-defect kaol...
Kaolinite surfaces were modified by mechanochemical treatment for periods of time up to 10 h. X-ray ...
Kaolinite surfaces were modified by mechanochemical treatment for periods of time up to 10 h. X-ray ...
DRIFT spectroscopy has been used to study the changes in the molecular structure of kaolinite mechan...
The effect of mechanochemical activation upon the intercalation of formamide into a high-defect kaol...
Kaolinite has been mechanochemically activated by dry grinding for periods of time up to 10 h. The k...
Changes in the hydroxyl surfaces of kaolinite have been studied through mechanochemical activation f...
The mechanochemical activation (dry grinding) causes destruction in the crystal structure of kaolini...
DRIFT spectroscopy has been used to study the changes in the molecular structure of kaolinite mechan...
Kaolinite surfaces were modified by grinding kaolinite/quartz mixtures with mole fractions of 0.25 k...
11 pages, figures, and tables stastics.Two kaolinites of different structural order designated KGa-2...
Kaolinite surfaces were modified by grinding kaolinite/quartz mixtures with mole fractions of 0.25 k...
The modification of kaolinite surfaces through mechanochemical treatment has been studied using a co...