Lanthanide oxide modified H-Mordenites: Deactivation of external acid sites in the isopropylation of naphthalene
Author | Sugi, Yoshihiro |
Author | Chakkolingam, Anand |
Author | Joseph, Stalin |
Author | Komura, Kenichi |
Author | Jang, Hoi-Gu |
Author | Cho, Sung June |
Author | Kim, Jong-Ho |
Author | Seo, Gon |
Author | Endo, Akira |
Author | Tawada, Shogo |
Author | Sonoda, Joji |
Author | Aldhayanf, Daifallah M. |
Author | Elzatahry, Ahmed A. |
Author | Vinu, Ajayan |
Available date | 2021-09-01T10:02:41Z |
Publication Date | 2016 |
Publication Name | Microporous and Mesoporous Materials |
Resource | Scopus |
Abstract | The external surface of the H-Mordenite (MOR) was modified with lanthanide oxides such as CeO2, La2O3, Pr2O3, Sm2O3, Dy2O3, and Yb2O3, to investigate the deactivation of external acid sites. It is confirmed that the modification with the oxides prevents the isomerization of 2,6-diisopropylnaphthalene (DIPN) during the isopropylation of naphthalene (NP). The oxides accumulated on the MOR surface deactivated the acid sites with keeping catalytic activities of the isopropylation when their loadings are in the range of 5-10 wt%; however, the differences in the activities were observed when the loading was increased to 20-30 wt%: CeO2 gave a high activity with a high selectivity for 2,6-DIPN, and Sm2O3 maintained moderate activities, whereas the other oxides lost the activities. The differences of the modified MORs are ascribed to the morphologies of mesopores formed by the accumulation of the oxides. CeO2 is accumulated as segregated nano-sized crystallites, and the pore-entrances of MOR are opened through their mesopores for the access of NP and its products, and the isopropylation occurs in the channels with a high selectivity for 2,6-DIPN without a significant loss of the activities. However, La2O3 is accumulated as amorphous glassy oxide with a low surface area, leading to the loss of the activities by disturbing the access of NP to MOR pores. Further, amorphous glassy Sm2O3 also supports the selective formation of 2,6-DIPN as the mesopores allow the access of NP to MOR channels. 2016 Elsevier Inc. All rights reserved. |
Sponsor | A part of this work was financially supported by a Grant-in Aid for Scientific Research (B) 15350093 and 16310056 , and (C) 21510098 , the Japan Society for the Promotion of Science (JSPS), and by the National Plan for Science, Technology and Innovation (MAARIFAH), King Abdulaziz City for Science and Technology, Kingdom of 440 Saudi Arabia , Award Number ( 12-(PET2614)02 ), and the Korea CCS R&D Center (KCRC) grant funded by the Korea government ( Ministry of Science, ICT and Future Planning , NRF-2014M1A8A1049254 ). Y.S. appreciates to Australian Institute of Bioengineering and Nanotechnology , The University of Queensland for staying as a visiting Professor. |
Language | en |
Publisher | Elsevier B.V. |
Subject | Glass Naphthalene Neptunium Praseodymium Rare earth elements Samarium Ytterbium Zeolites CeO2 Deactivation External acid sites Isopropylation Mordenites Catalyst activity |
Type | Article |
Pagination | 217-226 |
Volume Number | 230 |
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