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Effect of the Nickel Source on the Structure, Performance, and Carbon Deposition of the Ni/Al(2)O(3) Catalyst for CO(2)–CH(4) Reforming

[Image: see text] Ni/Al(2)O(3) catalysts were prepared with Ni(NO(3))(2)·6H(2)O, NiSO(4)·6H(2)O, NiCl(2)·6H(2)O, and NiC(4)H(6)O(4)·4H(2)O as nickel sources by the solution combustion method. The catalysts were characterized by X-ray diffraction, H(2) temperature-programmed hydrogenation, TG-DTG, TP...

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Autores principales: Liu, Yibo, He, Xiaoqiang, Mo, Wenlong, Qin, Song, Guo, Jinchun, Deng, Yuanjian, Abudurehman, Bujannat
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2021
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8552229/
https://www.ncbi.nlm.nih.gov/pubmed/34722966
http://dx.doi.org/10.1021/acsomega.1c02410
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author Liu, Yibo
He, Xiaoqiang
Mo, Wenlong
Qin, Song
Guo, Jinchun
Deng, Yuanjian
Abudurehman, Bujannat
author_facet Liu, Yibo
He, Xiaoqiang
Mo, Wenlong
Qin, Song
Guo, Jinchun
Deng, Yuanjian
Abudurehman, Bujannat
author_sort Liu, Yibo
collection PubMed
description [Image: see text] Ni/Al(2)O(3) catalysts were prepared with Ni(NO(3))(2)·6H(2)O, NiSO(4)·6H(2)O, NiCl(2)·6H(2)O, and NiC(4)H(6)O(4)·4H(2)O as nickel sources by the solution combustion method. The catalysts were characterized by X-ray diffraction, H(2) temperature-programmed hydrogenation, TG-DTG, TPH, and transmission electron microscopy methods, and the effect of the nickel source on performance of the Ni/Al(2)O(3) catalyst was investigated via the CO(2)–CH(4) reforming experiment. Results showed that Ni dispersion, Ni size, and the metal–support interaction between active component Ni and the support were influenced significantly by anion in nickel sources, resulting in that the performance of each catalyst was different. Highly dispersed Ni species, small Ni crystallite size, and strong metal–support interaction were presented in the Ni/Al(2)O(3) catalysts with Ni(NO(3))(2)·6H(2)O and NiSO(4)·6H(2)O as nickel sources. Evaluation results showed that the catalyst prepared with Ni(NO(3))(2)·6H(2)O exhibited higher activity and stability, with CH(4) and CO(2) conversions of 31.21 and 48.97%. Carbon deposition analysis demonstrated that the catalyst prepared with NiSO(4)·6H(2)O contained more graphite carbon.
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spelling pubmed-85522292021-10-29 Effect of the Nickel Source on the Structure, Performance, and Carbon Deposition of the Ni/Al(2)O(3) Catalyst for CO(2)–CH(4) Reforming Liu, Yibo He, Xiaoqiang Mo, Wenlong Qin, Song Guo, Jinchun Deng, Yuanjian Abudurehman, Bujannat ACS Omega [Image: see text] Ni/Al(2)O(3) catalysts were prepared with Ni(NO(3))(2)·6H(2)O, NiSO(4)·6H(2)O, NiCl(2)·6H(2)O, and NiC(4)H(6)O(4)·4H(2)O as nickel sources by the solution combustion method. The catalysts were characterized by X-ray diffraction, H(2) temperature-programmed hydrogenation, TG-DTG, TPH, and transmission electron microscopy methods, and the effect of the nickel source on performance of the Ni/Al(2)O(3) catalyst was investigated via the CO(2)–CH(4) reforming experiment. Results showed that Ni dispersion, Ni size, and the metal–support interaction between active component Ni and the support were influenced significantly by anion in nickel sources, resulting in that the performance of each catalyst was different. Highly dispersed Ni species, small Ni crystallite size, and strong metal–support interaction were presented in the Ni/Al(2)O(3) catalysts with Ni(NO(3))(2)·6H(2)O and NiSO(4)·6H(2)O as nickel sources. Evaluation results showed that the catalyst prepared with Ni(NO(3))(2)·6H(2)O exhibited higher activity and stability, with CH(4) and CO(2) conversions of 31.21 and 48.97%. Carbon deposition analysis demonstrated that the catalyst prepared with NiSO(4)·6H(2)O contained more graphite carbon. American Chemical Society 2021-10-11 /pmc/articles/PMC8552229/ /pubmed/34722966 http://dx.doi.org/10.1021/acsomega.1c02410 Text en © 2021 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by-nc-nd/4.0/Permits non-commercial access and re-use, provided that author attribution and integrity are maintained; but does not permit creation of adaptations or other derivative works (https://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Liu, Yibo
He, Xiaoqiang
Mo, Wenlong
Qin, Song
Guo, Jinchun
Deng, Yuanjian
Abudurehman, Bujannat
Effect of the Nickel Source on the Structure, Performance, and Carbon Deposition of the Ni/Al(2)O(3) Catalyst for CO(2)–CH(4) Reforming
title Effect of the Nickel Source on the Structure, Performance, and Carbon Deposition of the Ni/Al(2)O(3) Catalyst for CO(2)–CH(4) Reforming
title_full Effect of the Nickel Source on the Structure, Performance, and Carbon Deposition of the Ni/Al(2)O(3) Catalyst for CO(2)–CH(4) Reforming
title_fullStr Effect of the Nickel Source on the Structure, Performance, and Carbon Deposition of the Ni/Al(2)O(3) Catalyst for CO(2)–CH(4) Reforming
title_full_unstemmed Effect of the Nickel Source on the Structure, Performance, and Carbon Deposition of the Ni/Al(2)O(3) Catalyst for CO(2)–CH(4) Reforming
title_short Effect of the Nickel Source on the Structure, Performance, and Carbon Deposition of the Ni/Al(2)O(3) Catalyst for CO(2)–CH(4) Reforming
title_sort effect of the nickel source on the structure, performance, and carbon deposition of the ni/al(2)o(3) catalyst for co(2)–ch(4) reforming
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8552229/
https://www.ncbi.nlm.nih.gov/pubmed/34722966
http://dx.doi.org/10.1021/acsomega.1c02410
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