Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
6656461 | Fuel Processing Technology | 2018 | 7 Pages |
Abstract
Hydrodeoxygenation and hydroisomerization of palmitic acid were achieved over bi-functional Co/H-ZSM-22 catalysts (about 4 wt% Co loading), and the maximum of isoproducts reached up to 73.4% selectivity at 260 °C for 4 h in presence of 2 MPa H2. Compared to parent H-ZSM-22, the impregnation of Co species for bi-functional catalysts could catalyze completely palmitic acid conversion into 100% selectivity of alkanes in spite of low pressure (1 MPa H2). Furthermore, bi-functional Co/H-ZSM-22 catalysts tailored the deoxygenation route via hydrodeoxygenation leading to more C16 formation. With decreasing of reaction pressure, mole ratio of C16/C15 decreased during complete conversion of palmitic acid, indicating that low reaction pressure favored hydrodecarbonylation to produce more C15. Bi-functional Co/H-ZSM-22 catalysts also exhibited great stability after five runs without any deactivation.
Related Topics
Physical Sciences and Engineering
Chemical Engineering
Chemical Engineering (General)
Authors
Yaya Cao, Yanchun Shi, Yunfei Bi, Kejing Wu, Shaojian Hu, Yulong Wu, Shaobin Huang,