Alpha-alumina inorganic membrane support and method of making the same
Compositions for making alpha-alumina supports for, for example, inorganic membranes are described. Methods for controlling the alumina and pore former particle sizes and other process variables are described which facilitate desirable porosity, pore distribution and strength characteristics of the resulting alpha-alumina inorganic membrane supports.
1. A method of forming an α-alumina support, the method comprising;
providing a batch composition comprising 50 weight % to 90 weight % α-alumina particles, 10 weight % to 30 weight % of organic pore former particles and 1 weight % to 15 weight % of a sintering aid;
shaping the batch to form a green body; and
sintering the green body to form the α-alumina support, wherein the α-alumina support comprises a mean pore size of from 6 microns to 15 microns and having a pore size distribution (d ps ) of from 0.50 to 1.70 as described by the formula:
d ps =( dp 90 −dp 10 )/ dp 50 ;
wherein dp 10 is a pore size wherein 10% of the pore volume has a smaller pore size;
dp 50 is a median pore size wherein 50% of the pore volume has a smaller pore size; and
dp 90 is a pore size wherein 90% of the pore volume has a smaller pore size.
2. The method according to claim 1 , comprising providing the batch composition by combining the 50 weight % to 90 weight % α-alumina particles, 10 weight % to 30 weight % of the organic pore former particles and 1 weight % to 15 weight % of the sintering aid and mixing the α-alumina particles, the organic pore former particles and the sintering aid to provide a homogeneous mixture.
3. The method according to claim 1 , wherein the sintering the green body comprises heating the green body at a temperature of from 1500 degrees Celcius to 2000 degrees Celcius for from 1 hour to 16 hours.
4. The method according to claim 1 , wherein the sintering the green body comprises heating the green body at a temperature of from 1600 degrees Celcius to 1775 degrees Celcius for from 8 hours to 16 hours.
5. The method according to claim 1 , wherein the organic pore former is a starch.
6. The method according to claim 5 , wherein the starch is selected from the group consisting of Canna starch, potato starch, green bean starch, corn starch, rice starch, and Sago starch.
7. The method according to claim 1 , wherein the shaping the batch comprises extruding the batch through an extrusion die.
8. An α-alumina support comprising a mean pore size of from 6 microns to 15 microns and having a pore size distribution (d ps ) of from 0.50 to 1.70 as described by the formula:
d ps =( dp 90 −dp 10 )/ dp 50 ;
wherein dp 10 is a pore size wherein 10% of the pore volume has a smaller pore size;
dp 50 is a median pore size wherein 50% of the pore volume has a smaller pore size; and
dp 90 is a pore size wherein 90% of the pore volume has a smaller pore size.
9. The α-alumina support according to claim 8 , having a d f of from 0.20 to 0.60 as described by the formula:
d f =( dp 50 −dp 10 )/ dp 50 .
10. The α-alumina support according to claim 8 , comprising a first end, a second end, and an inner channel having surfaces defined by porous walls and extending through the support from the first end to the second end.
11. The α-alumina support according to claim 10 , wherein the α-alumina support is in the form of a honeycomb monolith.