Evaluating Pore Space in Macroporous Ceramics with Water‐Based Porosimetry
Linnéa Andersson, Per Tomas Larsson, Lars Wågberg, Lennart Bergström
Abstract
Linnéa Andersson, Per Tomas Larsson, Lars Wågberg, Lennart Bergström
Abstract
We show that water‐based porosimetry ( WBP ), a facile, simple, and nondestructive porosimetry technique, accurately evaluates both the pore size distribution and throat size distribution of sacrificially templated macroporous alumina. The pore size distribution and throat size distribution derived from the WBP evaluation in uptake (imbibition) and release (drainage) mode, respectively, were corroborated by mercury porosimetry and X‐ray micro‐computed tomography (μ‐CT). In contrast with mercury porosimetry, the WBP also provided information on the presence of “dead‐end pores” in the macroporous alumina.
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We show that water‐based porosimetry ( WBP ), a facile, simple, and nondestructive porosimetry technique, accurately evaluates both the pore size distribution and throat size distribution of sacrificially templated macroporous alumina. The pore size distribution and throat size distribution derived from the WBP evaluation in uptake (imbibition) and release (drainage) mode, respectively, were corroborated by mercury porosimetry and X‐ray micro‐computed tomography (μ‐CT). In contrast with mercury porosimetry, the WBP also provided information on the presence of “dead‐end pores” in the macroporous alumina.
Key concepts: Porosimetry, Materials science, Ceramic, Mineralogy, Imbibition, Composite material, Porosity, Chemistry