Nonoxidative dehydrogenation of propane using boron-incorporated silica-supported Pt Sites synthesized by atomic layer deposition

被引:1
作者
Celik, Gokhan [1 ]
机构
[1] Middle East Tech Univ, Fac Engn, Dept Chem Engn, Ankara, Turkiye
关键词
Propane; dehydrogenation; boron; platinum; atomic layer deposition; propylene; OXIDATIVE DEHYDROGENATION; LIGHT ALKANES; CATALYTIC DEHYDROGENATION; INTERMETALLIC ALLOY; FILM GROWTH; PLATINUM; CO; NANOPARTICLES; TEMPERATURE; PERFORMANCE;
D O I
10.55730/1300-0527.3648
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Nonoxidative dehydrogenation of propane to propylene using Pt -based supported catalysts is an active research area in catalysis because catalyst attributes of Pt sites can be controlled by careful design of active sites. One way to achieve this is by the addition of a second metal that may impart a change in the electron density of active sites, which in turn affects catalytic performance. In this study, bimetallic Pt and B sites were deposited on powder SiO2 using atomic layer deposition (ALD). Boron was first deposited on SiO2 via half -cycle ALD using triisoproplyborate as the B source. Following calcination, Pt deposition was performed via half -cycle ALD using trimethyl(methylcyclopentadienyl)platinum(IV) as the Pt source. The synthesized catalysts were reduced under H2 at 550 degrees C and characterized using inductively coupled plasma optical emission spectroscopy for elemental analysis, diffuse reflectance infrared Fourier transform spectroscopy of adsorbed CO to examine the properties of Pt, and time -resolved X-ray absorption near edge structure spectroscopy to examine the changes in the reducibility of Pt sites. The samples were then tested for nonoxidative dehydrogenation of propane at 550 degrees C using a fixed -bed plug -flow reactor to examine the role of B on the catalytic performance. Characterization results showed that the addition of B imparted an increase in electron density and affected the reducibility of Pt sites. In addition, incorporating B on SiO2 created anchoring sites for Pt ALD. The amount of Pt deposited on B/SiO2 was 2.2 times that on SiO2. Catalytic activity results revealed the addition of B did not change the initial activity of Pt sites significantly, but improved propylene selectivity from 80% to 87% and stability almost threefold. The enhanced selectivity and stability of PtB/SiO2 is most presumably due to favored desorption of propylene and mitigating coke formation under reaction conditions, respectively.
引用
收藏
页码:166 / 175
页数:11
相关论文
共 56 条
[41]   EFFECTS OF PALLADIUM PARTICLE-SIZE AND PALLADIUM SILICIDE FORMATION ON FOURIER-TRANSFORM INFRARED-SPECTRA OF CO ADSORBED ON PD/SIO2 CATALYSTS [J].
SHEU, LL ;
KARPINKSI, Z ;
SACHTLER, WMH .
JOURNAL OF PHYSICAL CHEMISTRY, 1989, 93 (12) :4890-4894
[42]   Catalyst performance of novel Pt/Mg(Ga)(Al)O catalysts for alkane dehydrogenation [J].
Siddiqi, Georges ;
Sun, Pingping ;
Galvita, Vladimir ;
Bell, Alexis T. .
JOURNAL OF CATALYSIS, 2010, 274 (02) :200-206
[43]   Breaking the scaling relationship via thermally stable Pt/Cu single atom alloys for catalytic dehydrogenation [J].
Sun, Guodong ;
Zhao, Zhi-Jian ;
Mu, Rentao ;
Zha, Shenjun ;
Li, Lulu ;
Chen, Sai ;
Zang, Ketao ;
Luo, Jun ;
Li, Zhenglong ;
Purdy, Stephen C. ;
Kropf, A. Jeremy ;
Miller, Jeffrey T. ;
Zeng, Liang ;
Gong, Jinlong .
NATURE COMMUNICATIONS, 2018, 9
[44]   Subnanometer Bimetallic Platinum-Zinc Clusters in Zeolites for Propane Dehydrogenation [J].
Sun, Qiming ;
Wang, Ning ;
Fan, Qiyuan ;
Zeng, Lei ;
Mayoral, Alvaro ;
Miao, Shu ;
Yang, Ruoou ;
Jiang, Zheng ;
Zhou, Wei ;
Zhang, Jichao ;
Zhang, Tianjun ;
Xu, Jun ;
Zhang, Peng ;
Cheng, Jun ;
Yang, Dong-Chun ;
Jia, Ran ;
Li, Lin ;
Zhang, Qinghong ;
Wang, Ye ;
Terasaki, Osamu ;
Yu, Jihong .
ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2020, 59 (44) :19450-19459
[45]   Oxidative dehydrogenation reaction of short alkanes on nanostructured carbon catalysts: a computational account [J].
Sun, XiaoYing ;
Han, Peng ;
Li, Bo ;
Mao, ShanJun ;
Liu, TianFu ;
Ali, Sajjad ;
Lian, Zan ;
Su, DangSheng .
CHEMICAL COMMUNICATIONS, 2018, 54 (08) :864-875
[46]   Development of Dehydrogenation Catalysts and Processes [J].
Vora, Bipin V. .
TOPICS IN CATALYSIS, 2012, 55 (19-20) :1297-1308
[47]   Nucleation and growth process of atomic layer deposition platinum nanoparticles on strontium titanate nanocuboids [J].
Wang, Chuandao ;
Hu, Linhua ;
Poeppelmeier, Kenneth ;
Stair, Peter C. ;
Marks, Laurence .
NANOTECHNOLOGY, 2017, 28 (18)
[48]   Ultrasmall PtZn bimetallic nanoclusters encapsulated in silicalite-1 zeolite with superior performance for propane dehydrogenation [J].
Wang, Yansu ;
Hu, Zhong-Pan ;
Lv, Xianwei ;
Chen, Lei ;
Yuan, Zhong-Yong .
JOURNAL OF CATALYSIS, 2020, 385 :61-69
[49]   Dehydrogenation of Lower Alkanes Using H2S [J].
Watanabe, Ryo ;
Hirata, Nozomu ;
Yoda, Yuta ;
Fukuhara, Choji .
JOURNAL OF THE JAPAN PETROLEUM INSTITUTE, 2022, 65 (02) :50-57
[50]   Intermetallic Compounds as an Alternative to Single-atom Alloy Catalysts: Geometric and Electronic Structures from Advanced X-ray Spectroscopies and Computational Studies [J].
Wegener, Evan C. ;
Bukowski, Brandon C. ;
Yang, Dali ;
Wu, Zhenwei ;
Kropf, A. Jeremy ;
Delgass, W. N. ;
Greeley, Jeffrey ;
Zhang, Guanghui ;
Miller, Jeffrey T. .
CHEMCATCHEM, 2020, 12 (05) :1325-1333