2020
DOI: 10.1021/acsami.0c09188
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Fabrication and Performance Evaluation of Industrial Alumina Based Graded Ceramic Substrate for CO2 Selective Amino Silicate Membrane

Abstract: The present study mainly focuses on the careful design of an amino-silicate membrane integrated on an asymmetric graded membrane substrate, comprised of a cost-effective macroporous industrial alumina based ceramic support with a systematic graded assemblage of sol−gel derived γ-alumina intermediate and silica-CTAB sublayer-based multilayered interface, specifically dedicated for the separation of CO 2 gas from the binary gas mixture (CO 2 /N 2 ) under nearly identical flue gas atmospheric conditions. The tail… Show more

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Cited by 14 publications
(8 citation statements)
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“…Sharma et al fabricated an amino-silicate membrane integrated on a cost-effective macroporous industrial alumina-based ceramic support. The synthesized ceramic membrane displayed a CO 2 permeance of 46.44 GPU with a CO 2 /N 2 selectivity of 12.5 at 80 °C . However, owing to the challenges of the mass-production of defect free inorganic membranes, polymeric membranes and mixed matrix membranes predominate in commercial uses …”
Section: Membranes Used For Co2 Separationmentioning
confidence: 99%
“…Sharma et al fabricated an amino-silicate membrane integrated on a cost-effective macroporous industrial alumina-based ceramic support. The synthesized ceramic membrane displayed a CO 2 permeance of 46.44 GPU with a CO 2 /N 2 selectivity of 12.5 at 80 °C . However, owing to the challenges of the mass-production of defect free inorganic membranes, polymeric membranes and mixed matrix membranes predominate in commercial uses …”
Section: Membranes Used For Co2 Separationmentioning
confidence: 99%
“…In an ideal situation, the filler would provide molecular sieving or Knudsen diffusion separation pathway for a CO 2 molecule that is thermodynamically preferable to the solution-diffusion transport mechanism found in most polymeric membranes . While many fillers, such as single- or multi-walled carbon nanotubes, graphene oxide, silica, quantum dots, porousorganic frameworks, covalent organic frameworks, metal–organic frameworks (MOFs), zeolite, and carbon molecular sieves, have been incorporated into MMMs. Due to the presence of both organic ligands and metal centers in MOFs, it has a synergistic effect in the efficiency toward CO 2 capture. In addition to the inherent properties of MOFs, they also provide tunability to their shape and size.…”
Section: Introductionmentioning
confidence: 99%
“…Amongst the various possible synthesis strategies, ALD has recently gained research attention, especially due to the ability to support the conformal deposition of a surface protective film with controlled thickness and uniform continuity, 32 but, considering the synergetic goals of minimal process complexity and widespread technical feasibility, the present study intends to utilize the beneficial aspects of sol-gel-based synthesis strategies. 34,35 Specifically, the sol-gel route has always been a useful tactic for generating a simple, cost-effective, and universal processing approach, permitting efficient control from the molecular-level precursor to the final product, and thus providing great assistance in maintaining the close mixing and good interfacial adhesion of the inorganic oxide thin film with the underlying CNT surface. [36][37][38] However, to be more precise, it is worth noting that efficiency, reliability, and durability are three major factors that are key in order to specifically obtain and accordingly implement the true technological potential of one-dimensional (1D) CNTinorganic oxide nano-hybrid structures for specific end-use application.…”
Section: Introductionmentioning
confidence: 99%