journal article Dec 01, 2018

Formation of Nanosized Low-Concentrated Cobalt-Containing Catalytic Dispersions for Three-Phase Fischer–Tropsch Synthesis During the Process of Hydrogen Activation

Petroleum Chemistry Vol. 58 No. 14 pp. 1233-1236 · Pleiades Publishing Ltd
View at Publisher Save 10.1134/s0965544118140074
Topics

No keywords indexed for this article. Browse by subject →

References
18
[1]
N. E. Tsakoumis, M. Ronning, O. Borg, E. Rytter, and A. Holmen, Catal. Today 154 (3–4), 162 (2010). 10.1016/j.cattod.2010.02.077
[2]
Y. Sun, Zh. Jia, G. Yang, L. Zhang, and Zh. Sun, Int. J. Hydrogen Energy 42, 29 222 (2017). 10.1016/j.ijhydene.2017.10.022
[3]
A. O. Odunsi, T. S. O' Donovan, and D. A. Reay, Appl. Therm. Eng. 93, 1377 (2016). 10.1016/j.applthermaleng.2015.08.084
[4]
D. Selvatico, A. Lanzini, and M. Santarelli, Fuel 186, 544 (2016). 10.1016/j.fuel.2016.08.093
[5]
Fischer-Tropsch synthesis in a three-phase system with iron catalyst nanoparticles

S. N. Khadzhiev, A. S. Lyadov, M. V. Krylova et al.

Petroleum Chemistry 2011 10.1134/s0965544111010075
[6]
S. N. Khadzhiev, Pet. Chem. 56 (6), 465 (2016). 10.1134/s0965544116060050
[7]
V. B. Tsvetkov, M. V. Kulikova, and S. N. Khadzhiev, Pet. Chem. 57 (7), 600 (2017). 10.1134/s0965544117070106
[8]
W. Chen, T. Lin, Y. Dai, Y. An, F. Yu, L. Zhong, Sh. Li, and Y. Sun, Catal. Today 311, 8 (2018). 10.1016/j.cattod.2017.09.019
[9]
Catalytic and physicochemical properties of Fe-polymer nanocatalysts of Fischer–Tropsch synthesis: Dynamic light scattering and FTIR spectroscopy study

G. N. Bondarenko, M. V. Kulikova, A. Kh. Al’ Khazradzhi et al.

Petroleum Chemistry 2016 10.1134/s0965544116120033
[10]
Fischer–Tropsch synthesis in the presence of ultrafine iron-containing catalysts derived from reverse microemulsions

M. V. Kulikova, M. V. Chudakova, O. S. Dement’eva et al.

Petroleum Chemistry 2016 10.1134/s0965544116060062
[11]
P. A. Chernavskii, Kinet. Katal. 46 (5), 674 (2005). 10.1007/s10975-005-0119-3
[12]
E. Patanou, N. E. Tsakoumis, R. Myrstad, and E. A. Blekkan, Appl. Catal., A 549, 280 (2018). 10.1016/j.apcata.2017.10.007
[13]
M. Rahmati, B. Huang, Jr. M. Mortensen, K. Keyvanloo, Th. Fletcher, B. Woodfield, W. Hecker, and M. Argyle, J. Catal. 359, 92 (2018). 10.1016/j.jcat.2017.12.022
[14]
J.-X. Liu, P. Wang, W. Xu, and E. J. M. Hensen, Engineering 3, 467 (2017). 10.1016/j.eng.2017.04.012
[15]
L. M. Chew, W. Xia, H. Dudder, Ph. Weide, H. Ruland, and M. Muhler, Catal. Today 270, 85 (2016). 10.1016/j.cattod.2015.09.023
[16]
Formation and Catalytic Behavior Of Fine Iron-Containing Composite Fischer–Tropsch Catalysts in a Slurry Reactor

M. V. Kulikova, O. S. Dement’eva, S. O. Ilyin et al.

Petroleum Chemistry 2017 10.1134/s0965544117140055
[17]
P. A. Chernavskii, B. S. Lunin, R. A. Zakharyan, G. V. Pankina, and N. S. Perov, Prib. Tekh. Eksp. 57 (1), 119 (2014).
[18]
P. A. Chernavskii, G. V. Pankina, and V. V. Lunin, Rus. Chem. Rev. 80 (6), 579 (2011). 10.1070/rc2011v080n06abeh004187
Metrics
2
Citations
18
References
Details
Published
Dec 01, 2018
Vol/Issue
58(14)
Pages
1233-1236
License
View
Cite This Article
M. V. Kulikova, O. S. Dement’eva, M. I. Ivantsev, et al. (2018). Formation of Nanosized Low-Concentrated Cobalt-Containing Catalytic Dispersions for Three-Phase Fischer–Tropsch Synthesis During the Process of Hydrogen Activation. Petroleum Chemistry, 58(14), 1233-1236. https://doi.org/10.1134/s0965544118140074