Impact of stabilization environment and heating rates on P84 co-polyimide/nanocrystaline cellulose carbon membrane for hydrogen enrichment
These past few decades, the separation of various gas mixtures problems in order to obtain high purity gases can be overcome by the introduction of membrane-based technology. This current research was focusing on the development of tubular carbon membranes (TCMs) from polymeric precursors for the se...
Principais autores: | Norazlianie, Sazali, Wan Norharyati, Wan Salleh, A. F., Ismail, K., Kadirgama, F. E. C., Othman, N. H., Ismail |
---|---|
Formato: | Artigo |
Idioma: | English |
Publicado em: |
Elsevier Ltd
2019
|
Assuntos: | |
Acesso em linha: | http://umpir.ump.edu.my/id/eprint/23819/1/Impact%20of%20stabilization%20environment%20and%20heatingmrates.pdf |
Registros relacionados
-
The influence of coating-carbonization cycles toward P84 co-polyimide/nanocrystalline cellulose
por: Norazlianie, Sazali, et al.
Publicado em: (2019) -
P84 Co-Polyimide Based-Tubular Carbon Membrane: Effect of Heating Rates on Helium Separations
por: Norazlianie, Sazali, et al.
Publicado em: (2018) -
Reformed polyimide/nanocrytalline cellulose for gas separation
por: Norazlianie, Sazali, et al.
Publicado em: (2021) -
P84 Co-polyimide/Nanocrystalline Cellulose (NCC)-based tubular carbon membrane: effect of drying times for carbon dioxide separation at elevated carbonization temperature
por: Norazlianie, Sazali, et al.
Publicado em: (2018) -
Exploiting pyrolysis protocols on BTDA‐TDI/MDI (P84) polyimide/nanocrystalline cellulose carbon membrane for gas separations
por: Norazlianie, Sazali, et al.
Publicado em: (2019)