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Synthesis of silica nanofluid and application to CO(2) absorption

Authors
Kim, Wun-gwiKang, Hyun UkJung, Kang-minKim, Sung Hyun
Issue Date
2008
Publisher
TAYLOR & FRANCIS INC
Keywords
absorption; CO(2); mass transfer; nanofluid; nanoparticle
Citation
SEPARATION SCIENCE AND TECHNOLOGY, v.43, no.11-12, pp.3036 - 3055
Indexed
SCIE
SCOPUS
Journal Title
SEPARATION SCIENCE AND TECHNOLOGY
Volume
43
Number
11-12
Start Page
3036
End Page
3055
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/125592
DOI
10.1080/01496390802063804
ISSN
0149-6395
Abstract
This study focused on the synthesis of stable nanofluids and their direct application to the CO2 absorption process. A sol-gel process was used as the synthesis method of nanoparticles in nanofluid. The particle size and stability were determined by SEM image and zeta potential of the nanofluid. Three types of nanofluids containing approximately 30 nm, 70 nm, and 120 nm particles were synthesized and all nanofluids had a stable zeta potential of approximately-45 mV. Addition of nanoparticles increased the average absorption rate of 76% during the first 1 minute and total absorption amount of 24% in water. The capacity coefficient of CO(2) absorption in the nanofluid is 4 times higher than water without nanoparticles, because the small bubble sizes in the nanofluid have large mass transfer areas and high solubility.
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