2004
DOI: 10.1016/j.memsci.2004.06.019
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Simulation of structural and permeation properties of multi-layer ceramic membranes

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Cited by 26 publications
(14 citation statements)
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“…Some models are simple like the Hagen-Poiseuille or the Kozeni-Carman equations 17 . However, the complexity of the model grows as the description of the pore network geometry became more rigorous (as examples, the application of grain models 18 or digitized structure models 19 ).…”
Section: Introductionmentioning
confidence: 99%
“…Some models are simple like the Hagen-Poiseuille or the Kozeni-Carman equations 17 . However, the complexity of the model grows as the description of the pore network geometry became more rigorous (as examples, the application of grain models 18 or digitized structure models 19 ).…”
Section: Introductionmentioning
confidence: 99%
“…One major complexity encountered during membrane fabrication is on how to tackle the relationship between getting high flux and high selectivity materials. This can be attributed to the inverse proportionality of flow rate to membrane layer thickness [6] [23]. Some other researchers [23] in their study looked at the relationship between membrane structure and permeation with respect to the material make up of the membrane.…”
Section: Introductionmentioning
confidence: 99%
“…Algunos modelos son sencillos, como el de Hagen-Poiseuille o de Kozeni-Carman [5,130]. Sin embargo, la complejidad de los modelos crece a medida que la descripción de la geometría de la red porosa es más rigurosa (por ejemplo, la aplicación de los modelos de gránulos [131] o los modelos de estructuras digitalizadas [132]). En consecuencia, los enfoques fenomenológicos son útiles para la cuantificación de las propiedades finales de las membranas, pero no pueden describir el mecanismo íntimo de la circulación del fluido [133].…”
Section: Flujo a Través De Membranasunclassified
“…Por ello, además de los modelos descritos en los apartados anteriores, se ha producido una evolución en la modelización de las estructuras porosas hacia modelos más complejos, como resultado de los avances en los desarrollos teóricos y experimentales, así como en los recursos informáticos para realizar los cálculos complejos, tales como los modelos de gránulos [132] o los modelos de estructuras digitalizadas [131], que se describen brevemente a continuación.…”
Section: Otros Modelosunclassified
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