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Optimization fluidization characteristics conditions of nickel oxide for hydrogen reduction by fluidized bed reactor

Authors
Lee, Jae-RangHasolli, NaimJeon, Seong-MinLee, Kang-SanKim, Kwang-DeukKim, Yong-HaLee, Kwan-YoungPark, Young-Ok
Issue Date
11월-2018
Publisher
KOREAN INSTITUTE CHEMICAL ENGINEERS
Keywords
Fluidized Bed Reactor; Superficial Gas Velocity; Hydrogen Reduction; Reduction Rate; Pressure Drop
Citation
KOREAN JOURNAL OF CHEMICAL ENGINEERING, v.35, no.11, pp.2321 - 2326
Indexed
SCIE
SCOPUS
KCI
Journal Title
KOREAN JOURNAL OF CHEMICAL ENGINEERING
Volume
35
Number
11
Start Page
2321
End Page
2326
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/72076
DOI
10.1007/s11814-018-0137-2
ISSN
0256-1115
Abstract
We evaluated the optimal conditions for fluidization of nickel oxide (NiO) and its reduction into high-purity Ni during hydrogen reduction in a laboratory-scale fluidized bed reactor. A comparative study was performed through structural shape analysis using scanning electron microscopy (SEM); variance in pressure drop, minimum fluidization velocity, terminal velocity, reduction rate, and mass loss were assessed at temperatures ranging from 400 to 600 degrees C and at 20, 40, and 60 min in reaction time. We estimated the sample weight with most active fluidization to be 200 g based on the bed diameter of the fluidized bed reactor and height of the stocked material. The optimal conditions for NiO hydrogen reduction were found to be height of sample H to the internal fluidized bed reactor diameter D was H/D=1, reaction temperature of 550 degrees C, reaction time of 60 min, superficial gas velocity of 0.011 m/s, and pressure drop of 77 Pa during fluidization. We determined the best operating conditions for the NiO hydrogen reduction process based on these findings.
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Lee, Kwan Young
공과대학 (화공생명공학과)
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