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Isomerization of n-Butane over Pd–SO4/ZrO2 Catalyst: Prospects for Commercial Application Full article

Conference XX International Conference on Chemical Reactors
03-07 Dec 2012 , Luxemburg
Journal Chemical Engineering Journal
ISSN: 1385-8947 , E-ISSN: 1873-3212
Output data Year: 2014, Volume: 238, Pages: 148-156 Pages count : 9 DOI: 10.1016/j.cej.2013.08.092
Tags Anion-modified zirconia, H2/C4 ratio effect, N-Butane isomerization, N-Pentane, Pd-catalyst, Pilot testing
Authors Urzhuntsev G.A. 1 , Ovchinnikova E.V. 1 , Chumachenko V.A. 1 , Yashnik S.A. 1 , Zaikovsky V.I. 1 , Echevsky G.V. 1
Affiliations
1 Boreskov Institute of Catalysis SB RAS, Pr. Akademika Lavrentieva, 5, Novosibirsk 630090, Russia

Funding (1)

1 Russian Foundation for Basic Research 12-03-31556

Abstract: Increase in productivity of the refineries and improvement the fuel quality demands to engage isobutane as a key feedstock for producing both alkylates and oxygenated additives. Substantial growth of isobutane output via isomerization of n-butane poses a real technological challenge. The goal of this study is to investigate performance of Pd promoted sulfated zirconia catalysts (Pd–SZ) in n-butane isomerization. The physical–chemical characteristics of various anion-modified zirconia catalysts (XRD and IR spectra, BET surface) are presented. It was observed that Lewis acid sites of medium and strong strength and two types of Brönsted acid sites exist. Approximately 90–97% of zirconia is in tetragonal phase. The influence of parameters on conversion of n-butane and selectivity towards isobutane was investigated by varying the temperature (90–290 C), pressure (15–26 bar), WHSV (0.5–5 h1), and molar ratio H2/C4 (0.08–3). Mainly, temperature and H2/C4 ratio are responsible for increasing the effectiveness of the process. At H2/C4 = 0.08–0.3 the apparent activity of Pd–SZ catalyst was high enough to reach the equilibrium conversion of n-butane to isobutane at 140 C value, that is, 65%. The best results were obtained on Pd–SZ granules in the form of 2 mmtrilobe. Water impact and the catalyst lifetime were studied in the pilot setup. Endurance testing of Pd–SZ catalyst in course of 90 h showed its sustained operation at H2O concentration up to 20 ppm without loss of activity. The estimated process specifications on Pd–SZ catalyst were compared to a conventional process; potential benefits of making use Pd–SZ catalyst are emphasized and discussed.
Cite: Urzhuntsev G.A. , Ovchinnikova E.V. , Chumachenko V.A. , Yashnik S.A. , Zaikovsky V.I. , Echevsky G.V.
Isomerization of n-Butane over Pd–SO4/ZrO2 Catalyst: Prospects for Commercial Application
Chemical Engineering Journal. 2014. V.238. P.148-156. DOI: 10.1016/j.cej.2013.08.092 WOS Scopus РИНЦ ANCAN OpenAlex
Dates:
Published online: Sep 5, 2013
Published print: Feb 15, 2014
Identifiers:
Web of science: WOS:000331431500019
Scopus: 2-s2.0-84888820282
Elibrary: 21861345
Chemical Abstracts: 2013:1486203
Chemical Abstracts (print): 160:103730
OpenAlex: W2001688624
Citing:
DB Citing
Web of science 31
Scopus 33
Elibrary 39
OpenAlex 32
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