A commercialized polysulfone (PSf) hollow-fiber membrane module was tested for CO<SUB>2</SUB>/N<SUB>2</SUB> separation performance for application in post-combustion capture. Cost efficiency, easy module manufacturing, an...
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https://www.riss.kr/link?id=A107562923
Hwang, H.Y. ; Nam, S.Y. ; Koh, H.C. ; Ha, S.Y. ; Barbieri, G. ; Drioli, E.
2012
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학술저널
205-211(7쪽)
0
상세조회0
다운로드다국어 초록 (Multilingual Abstract)
A commercialized polysulfone (PSf) hollow-fiber membrane module was tested for CO<SUB>2</SUB>/N<SUB>2</SUB> separation performance for application in post-combustion capture. Cost efficiency, easy module manufacturing, an...
A commercialized polysulfone (PSf) hollow-fiber membrane module was tested for CO<SUB>2</SUB>/N<SUB>2</SUB> separation performance for application in post-combustion capture. Cost efficiency, easy module manufacturing, and efficiency in gas separation are the main advantages of using PSf hollow-fiber modules for CO<SUB>2</SUB> separation. The effects of operating conditions such as temperature, pressure, and feed composition on separation performance were examined at various stage cuts. A 2-stage system including concentration of feed composition at stage 1 and production of high-purity CO<SUB>2</SUB> at stage 2 was constructed to improve separation efficiency. Higher operating temperature and pressure increased CO<SUB>2</SUB> permeance, but the loss of selectivity and higher energy consumption are a concern. Modules with various membrane areas were also used to test the effect of area on CO<SUB>2</SUB> separation.
Characteristics of methane hydrate formation in carbon nanofluids