Montmorillonite clay from Brazil was pillared with aluminium polyhydroxications. The influence of Al/Mont ratio and calcination temperature in the properties of the prepared materials was studied. Results showed that the pillarization process increases the basal spaces of the natural clay from 9,7 to 18,5Å and the superficial area from 41 to ~230m2/g. The calcination process at different temperatures showed that the pillared material was stable until 600oC but the adequate temperature for calcination was 450oC. Materials prepared with different Al/Mont ratios showed the maximum Al incorporation for ratios >10meq Al/g and a good distribution for rations >15meq Al/g
Since the early work of Vaughan et al. (1979) on alumina pillared montmorillonites and their potenti...
The A1 adsorption maximum for montmorillonite is close to 5.5 mEq A1/g clay, whereas the maximum for...
Pillaring of montmorillonite was achieved with partially hydrolysed solutions of gallium, gallium-al...
Montmorillonite clay from Brazil was pillared with aluminium polyhydroxications. The influence of ag...
Montmorillonite clay from Brazil was pillared with aluminium polyhydroxications. The influence of ag...
Saponite, hectorite, and laponite have been pillared with cationic Al clusters, and special attentio...
The effects of OH-/Al3+ ratio within the range of 1.0-2.5, on physico-chemical properties of Al-pill...
Two smectite samples having different layer charges were pillared using hydroxy aluminium oligomers ...
Smectite-type clays from the state of Pará, Brazil, were characterized by XRD, 27Al MAS NMR, FTIR an...
and a natural bentonite from Peru (P bentonite) were used in the preparation of pillared clays with ...
The pillaring process of montmorillonite and beidellite with Al and Ga polymers has been studied usi...
Montmorillonite clay from Brazil was pillared with aluminium polyhydroxications. The influence of ag...
Aluminum pillared clay (AP) was synthesized using ≤ 74 μm fraction of Na-exchanged clay from Wyoming...
Pillared clays are interesting materials with applications in catalysis and adsorption processes. To...
Synthetic beidellite, hectorite (laponite) and two natural montmorillonites of high (3,35 wt Z) and ...
Since the early work of Vaughan et al. (1979) on alumina pillared montmorillonites and their potenti...
The A1 adsorption maximum for montmorillonite is close to 5.5 mEq A1/g clay, whereas the maximum for...
Pillaring of montmorillonite was achieved with partially hydrolysed solutions of gallium, gallium-al...
Montmorillonite clay from Brazil was pillared with aluminium polyhydroxications. The influence of ag...
Montmorillonite clay from Brazil was pillared with aluminium polyhydroxications. The influence of ag...
Saponite, hectorite, and laponite have been pillared with cationic Al clusters, and special attentio...
The effects of OH-/Al3+ ratio within the range of 1.0-2.5, on physico-chemical properties of Al-pill...
Two smectite samples having different layer charges were pillared using hydroxy aluminium oligomers ...
Smectite-type clays from the state of Pará, Brazil, were characterized by XRD, 27Al MAS NMR, FTIR an...
and a natural bentonite from Peru (P bentonite) were used in the preparation of pillared clays with ...
The pillaring process of montmorillonite and beidellite with Al and Ga polymers has been studied usi...
Montmorillonite clay from Brazil was pillared with aluminium polyhydroxications. The influence of ag...
Aluminum pillared clay (AP) was synthesized using ≤ 74 μm fraction of Na-exchanged clay from Wyoming...
Pillared clays are interesting materials with applications in catalysis and adsorption processes. To...
Synthetic beidellite, hectorite (laponite) and two natural montmorillonites of high (3,35 wt Z) and ...
Since the early work of Vaughan et al. (1979) on alumina pillared montmorillonites and their potenti...
The A1 adsorption maximum for montmorillonite is close to 5.5 mEq A1/g clay, whereas the maximum for...
Pillaring of montmorillonite was achieved with partially hydrolysed solutions of gallium, gallium-al...