Fabrication of nickel oxide functionalized zeolite USY composite as a promising adsorbent for CO2 capture
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Fabrication of nickel oxide functionalized zeolite USY composite as a promising adsorbent for CO2 capture
Chinese Journal of Chemical EngineeringVol. 46, Issue 6, Pages: 207-213(2022)
Affiliations:
1. Shandong Key Laboratory of Multiphase Fluid Reaction and Separation Engineering, College of Chemical Engineering, Qingdao University of Science and Technology,Qingdao,China,266042
2. Department of Chemical Engineering, Qingdao University of Science and Technology, Gaomi,China,261500
Author bio:
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DOI:
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Published:2022
Accepted:
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capture[J]. 中国化学工程学报, 2022, 46(6): 207-213.
DOI:
capture[J]. 中国化学工程学报, 2022, 46(6): 207-213.DOI:
Fabrication of nickel oxide functionalized zeolite USY composite as a promising adsorbent for CO2 capture
Adsorption process is considered to be the most promising alternative for the CO
2
capture to the traditional energy-intensive amine absorption process
and the development of feasible and efficient CO
2
adsorbents is still a challenge. In this work
the NiO@USY (ultrastable Y) composites with different NiO loadings were prepared for the CO
2
adsorption using Ni(NO
3
)
2
as the precursor. The composites were characterized by X-ray photoelectron spectroscopy
X-ray diffraction
nitrogen adsorption–desorption test
scanning electron microscopy analysis
and thermogravimetric analysis
and were evaluated for the CO
2
adsorption capacity
CO
2
/N
2
adsorption selectivity and CO
2
cycle adsorption capacity. The characterization results show that after the activation at 423 K
the Ni(NO
3
)
2
species were well dispersed into the surface of zeolite USY
and after the further activation at 823 K
Ni(NO
3
)
2
could be converted into highly dispersed NiO. The adsorption results show that the presence of the active component NiO plays an important role in improving the CO
2
adsorption performance
and the NiO@USY composite with a NiO loading of 1.5 mmol·g
-1
USY support displays a high adsorption capacity and adsorption selectivity for CO
2
and shows a good cycle stability. In addition
the Clausius–Clapeyron equation was u
sed to evaluate the isosteric heat of adsorption of CO
2
on the NiO(1.5)@USY composite
and the heat of adsorption was 17.39–38.34 kJ·mol
-1
.
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