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  4. Syngas production with low tar content from cellulose pyrolysis in molten salt combined with Ni/Al2O3 catalyst
 
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Syngas production with low tar content from cellulose pyrolysis in molten salt combined with Ni/Al2O3 catalyst

Journal
Journal of Analytical and Applied Pyrolysis
Journal Volume
158
Pages
105243
Date Issued
2021
Author(s)
Ratchahat S
Srifa A
Koo-amornpattana W
Sakdaronnarong C
Charinpanitkul T
Wu K.C.-W
Show P.-L
Kodama S
Tanthapanichakoon W
Sekiguchi H.
KEVIN CHIA-WEN WU  
DOI
10.1016/j.jaap.2021.105243
URI
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85111346253&doi=10.1016%2fj.jaap.2021.105243&partnerID=40&md5=2add0d6fa2c77715940e879daf2f8a99
https://scholars.lib.ntu.edu.tw/handle/123456789/581553
Abstract
The syngas production from cellulose pyrolysis was studied in carbonate salts combined with nickel supported on alumina catalyst (MS-Ni) in a preheated reactor. Tar content was greatly reduced by 10 folds when compared to that of the pyrolysis in argon gas (Ar). Molten salt resulted in the reduction of tar and CO2 formation due to the rapid heating of 141 °C/s alter the pyrolysis pathway to produce more syngas products. Further tar elimination was promoted with the presence of nickel supported on alumina catalyst in the salt. Tar was reduced by 5 folds when compared to that the pyrolysis in sole molten salt (MS). Tar from pyrolysis in MS-Ni was about 1 wt%. In addition, CH4 could be reformed with CO2 into additional syngas over the Ni/Al2O3 catalyst. As a result, the pyrolysis in the combined salt and catalyst exhibited high syngas yield at 824 mL/g cellulose. Moreover, alumina particles enhanced the heat transfer in the molten salt, resulting in the highest heating rate of 181 °C/s obtained in MS-Ni medium. However, the catalyst deactivation was a serious issue in combining molten salt with Ni/Al2O3 catalyst. The high corrosiveness would damage the alumina support, while the Ni active metal would be leached from the catalyst particles, resulting in the catalyst deactivation. ? 2021 Elsevier B.V.
Subjects
Alumina; Aluminum oxide; Carbon dioxide; Catalyst deactivation; Cellulose; Fused salts; Heat transfer; Nickel; Nickel compounds; Pyrolysis; Synthesis gas; Synthesis gas manufacture; Tar; Alumina catalysts; Alumina particles; Alumina support; Carbonate salts; Catalyst particles; Cellulose pyrolysis; Ni/Al2O3 catalyst; Syngas production; Catalyst supports; Aluminum Oxide; Carbon Dioxide; Cellulose; Fused Salts; Heat Transfer; Nickel
SDGs

[SDGs]SDG7

Type
journal article

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