Effect of Zeolite on Fischer-Tropsch Synthesis in the Presence of a Catalyst Based on Skeletal Cobalt

被引:8
作者
Asalieva, E. Yu. [1 ]
Kul'chakovskaya, E. V. [1 ]
Sineva, L. V. [1 ,2 ]
Mordkovich, V. Z. [1 ,2 ]
机构
[1] Technol Inst Superhard & Novel Carbon Mat, Moscow 108840, Russia
[2] INFRA Tekhnol, Moscow 125009, Russia
关键词
DIRECT CONVERSION; GASOLINE; CO; SYNGAS; PERFORMANCE;
D O I
10.1134/S0965544120010028
中图分类号
O62 [有机化学];
学科分类号
070303 ; 081704 ;
摘要
The joint effect of skeletal cobalt and zeolite on the main catalytic parameters of a pelletized composite catalyst has been studied. All samples contain 50 wt % fine metallic aluminum powder. The amounts of other components are as follows: 20-30 wt % binder (boehmite), 5-20 wt % Beta zeolite in the H form (SiO2/Al2O3 = 38), and 10-20 wt % fine skeletal cobalt. The reference catalyst does not contain any zeolite. All the catalysts exhibit activity in Fischer-Tropsch synthesis and secondary transformations, the intensity of which depends on the zeolite/cobalt ratio. The composition of the resulting hydrocarbons (HCs) varies over a wide range; in particular, the content of n-paraffins and olefins is 39-88 and 3-38%, respectively. The chain growth probability varies in a range of 0.65-0.83 depending on the zeolite/cobalt ratio and the synthesis conditions. It has been shown that the catalysts studied are superior advantage to other cobalt-zeolite catalysts in CO conversion, specific activity, productivity, and stability.
引用
收藏
页码:69 / 74
页数:6
相关论文
共 29 条
[1]  
[Anonymous], 2011, RF Patent, Patent No. 2422202
[2]   Novel Natural Gas to Liquids Processes: Process Synthesis and Global Optimization Strategies [J].
Baliban, Richard C. ;
Elia, Josephine A. ;
Floudas, Christodoulos A. .
AICHE JOURNAL, 2013, 59 (02) :505-531
[3]   Hydrocracking under Fischer-Tropsch conditions; the effect of CO on the mass transfer resistance by metal clusters [J].
Brosius, Roald ;
Fletcher, Jack C. Q. .
JOURNAL OF CATALYSIS, 2014, 317 :318-325
[4]   Co-based MOR/ZSM-5 composite zeolites over a solvent-free synthesis strategy for improving gasoline selectivity [J].
Cheng, Shilin ;
Mazonde, Brighton ;
Zhang, Guihua ;
Javed, Mudassar ;
Dai, Peiyao ;
Cao, Yingnan ;
Tu, Sisi ;
Wu, Jiayi ;
Lu, Chengxue ;
Xing, Chuang ;
Shan, Shengdao .
FUEL, 2018, 223 :354-359
[5]  
DeKlerk A, 2010, RSC CATAL SER, P1
[6]  
Ejdus Ya. T., 1971, RUSS CHEM B, V20, P589
[7]   Catalytic behavior of Co/(Nanoβ-Zeolite) bifunctional catalysts for Fischer-Tropsch reactions [J].
Espinosa, G. ;
Dominguez, J. M. ;
Morales-Pacheco, P. ;
Tobon, A. ;
Aguilar, M. ;
Benitez, J. .
CATALYSIS TODAY, 2011, 166 (01) :47-52
[8]   The applicability of the composition-skeleton as a catalysts for the benzine-synthesis from carbon dioxide and hydrogen [J].
Fischer, F ;
Meyer, K .
BERICHTE DER DEUTSCHEN CHEMISCHEN GESELLSCHAFT, 1934, 67 :253-261
[9]   Preparation and performance of Co based capsule catalyst with the zeolite shell sputtered by Pd for direct isoparaffin synthesis from syngas [J].
Jin, Yuzhou ;
Yang, Ruiqin ;
Mori, Yasuhiro ;
Sun, Jian ;
Taguchi, Akira ;
Yoneyama, Yoshiharu ;
Abe, Takayuki ;
Tsubaki, Noritatsu .
APPLIED CATALYSIS A-GENERAL, 2013, 456 :75-81
[10]   Chevron's gas conversion catalysis-hybrid catalysts for wax-free Fischer-Tropsch synthesis [J].
Kibby, C. ;
Jothimurugesan, K. ;
Das, T. ;
Lacheen, H. S. ;
Rea, T. ;
Saxton, R. J. .
CATALYSIS TODAY, 2013, 215 :131-141