NiMo-MMO catalyst derived from LDHs precursors toward the deep hydrogenation of pyrene
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NiMo-MMO catalyst derived from LDHs precursors toward the deep hydrogenation of pyrene
NiMo-MMO catalyst derived from LDHs precursors toward the deep hydrogenation of pyrene
中国化学工程学报(英文版)2024年76卷第12期 页码:201-210
Affiliations:
1. School of Chemical Engineering, Northwest University,Xi'an,China,710069
2. International Scientific and Technological Cooperation Base of the Ministry of Science and Technology (MOST) for Clean Utilization of Hydrocarbon Resources,Xi'an,China,710069
3. Chemical Engineering Research Center of the Ministry of Education (MOE) for Advanced Use Technology of Shanbei Energy,Xi'an,China,710069
4. Shaanxi Research Center of Engineering Technology for Clean Coal Conversion,Xi'an,China,710069
5. Collaborative Innovation Center for Development of Energy and Chemical Industry in Northern Shaanxi,Xi'an,China,710069
6. College of Chemistry and Materials Science, Weinan Normal University,Weinan,China,714000
Author bio:
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DOI:
中图分类号:
纸质出版:2024
Accepted:
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Yongliang Jia, Boyang Bai, Jing Wang, 等. NiMo-MMO catalyst derived from LDHs precursors toward the deep hydrogenation of pyrene[J]. 中国化学工程学报(英文版), 2024,76(12):201-210.
Yongliang Jia, Boyang Bai, Jing Wang, Yueyi Wang, Zheng Wang, Xiaoxun Ma. NiMo-MMO catalyst derived from LDHs precursors toward the deep hydrogenation of pyrene[J]. Chinese Journal of Chemical Engineering, 2024, 76(12): 201-210.
Yongliang Jia, Boyang Bai, Jing Wang, 等. NiMo-MMO catalyst derived from LDHs precursors toward the deep hydrogenation of pyrene[J]. 中国化学工程学报(英文版), 2024,76(12):201-210.DOI:
Yongliang Jia, Boyang Bai, Jing Wang, Yueyi Wang, Zheng Wang, Xiaoxun Ma. NiMo-MMO catalyst derived from LDHs precursors toward the deep hydrogenation of pyrene[J]. Chinese Journal of Chemical Engineering, 2024, 76(12): 201-210.DOI:
NiMo-MMO catalyst derived from LDHs precursors toward the deep hydrogenation of pyrene
structural topological transformation from the Ni@Al
2
O
3
layered double hydroxides (LDHs) precursors
and applied for the deep catalytic hydrogenation saturation of pyrene in a high-pressure reactor. The pore structures
active species dispersion
surface morphology
amount and type of acid of the prepared catalysts were characterized by BET
XRD
SEM
TEM
XPS
SEM
NH
3
-TPD and Py-IR. We studied the influence of physicochemical properties of Ni-based catalysts on the regularity and mechanism of deep hydrogenation of pyrene. Meanwhile
the synergy between Ni and Mo
and the interaction between active metals and support were discussed to further reveal the constitutive relationship during the hydrogenation reaction of pyrene. The results of the evaluation of the catalytic hydrogenation of pyrene show that the as-prepared NiMo mixed metal oxide (MMO) catalyst showed excellent catalytic activity: ~95% pyrene conversion
90.12% for the selectivity of deep hydrogenation products (hexahydropyrene
decahydropyrene and hexadecahydropyrene). It was expected that the successfully preparation and utilization of NiMo-MMO catalyst could provide a theoretical basis for the design of this kind of catalysts for deep catalytic hydrogenation of polycyclic aromatic hydrocarbons (PAHs).
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