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- W95132555 abstract "Exhaust gas from thermal power plants, cement plants, and steel mills consists mostly of N2 and CO2 and thus technology to separate these gases is required. This chapter explains how to develop a membrane that provides excellent selectivity for CO2 and is durable and heat resistant. Furthermore, CO2 separation membranes need to be modular to cope effectively with the large volumes of exhaust gases from stationary sources. A new cardo type polymer membrane was developed keeping in mind the ongoing problem of global warming. The cardo type polymer has a molecular structure with a bulky loop form. The polymer shows the important characteristics of a high gas permeability and high solubility in organic solvents that provide hollow fiber membrane processability and heat stability derived from an aromatic structure. Since a cardo type polyimide showed the highest CO2/N2 selectivity and CO2 permeability during the screening of many newly synthesized cardo type polymers, it was selected and a structure function relationship analysis was conducted looking at CO2/N2 selectivity and CO2 permeability. A new cardo type polyimide structure for CO2 separation was identified. Then, the wet spinning technology to produce an asymmetric hollow fiber membrane was developed and the membrane in module was incorporated. In addition to using bench-scale testing to obtain basic data for implementing the module, a 1,000MW coal combustion power plant was considered. The information obtained confirmed that in energy terms, the developed membrane separation method is superior to current methods." @default.
- W95132555 created "2016-06-24" @default.
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- W95132555 date "2003-01-01" @default.
- W95132555 modified "2023-09-25" @default.
- W95132555 title "Development of CO2 Separation Membranes (1) Polymer Membrane" @default.
- W95132555 cites W2042935979 @default.
- W95132555 doi "https://doi.org/10.1016/b978-008044276-1/50243-9" @default.
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