Articles citing this article

The Citing articles tool gives a list of articles citing the current article.
The citing articles come from EDP Sciences database, as well as other publishers participating in CrossRef Cited-by Linking Program. You can set up your personal account to receive an email alert each time this article is cited by a new article (see the menu on the right-hand side of the abstract page).

Cited article:

Deactivation and Regeneration of Commercial Type Fischer-Tropsch Co-Catalysts—A Mini-Review

Erling Rytter and Anders Holmen
Catalysts 5 (2) 478 (2015)
https://doi.org/10.3390/catal5020478

The characterization of micro-structure of cobalt on γ-Al2O3 for FTS: Effects of pretreatment on Ru–Co/γ-Al2O3

Jae-Sun Jung, Jae-Suk Lee, Garam Choi, S. Ramesh and Dong Ju Moon
Fuel 149 118 (2015)
https://doi.org/10.1016/j.fuel.2014.09.001

An Investigation into the Effects of Mn Promotion on the Activity and Selectivity of Co/SiO2 for Fischer–Tropsch Synthesis: Evidence for Enhanced CO Adsorption and Dissociation

Gregory R. Johnson, Sebastian Werner and Alexis T. Bell
ACS Catalysis 5 (10) 5888 (2015)
https://doi.org/10.1021/acscatal.5b01578

In situ diffraction of highly dispersed supported platinum nanoparticles

James R. Gallagher, Tao Li, Haiyan Zhao, et al.
Catal. Sci. Technol. 4 (9) 3053 (2014)
https://doi.org/10.1039/C4CY00414K

Fischer–Tropsch synthesis on Co/ZnO – Two step activation procedure for improved performance

Zhendong Pan, Matin Parvari and Dragomir B. Bukur
Applied Catalysis A: General 480 79 (2014)
https://doi.org/10.1016/j.apcata.2014.04.040

X-ray absorption, X-ray diffraction and electron microscopy study of spent cobalt based catalyst in semi-commercial scale Fischer–Tropsch synthesis

Nikolaos E. Tsakoumis, Roya Dehghan-Niri, Magnus Rønning, et al.
Applied Catalysis A: General 479 59 (2014)
https://doi.org/10.1016/j.apcata.2014.03.035

Controlled Environment Specimen Transfer

Christian D. Damsgaard, Henny Zandbergen, Thomas W. Hansen, Ib Chorkendorff and Jakob B. Wagner
Microscopy and Microanalysis 20 (4) 1038 (2014)
https://doi.org/10.1017/S1431927614000853

Incorporation of Highly Dispersed Cobalt Nanoparticles into the Ordered Mesoporous Carbon for CO Hydrogenation

Yifei Yang, Litao Jia, Bo Hou, et al.
Catalysis Letters 144 (1) 133 (2014)
https://doi.org/10.1007/s10562-013-1124-1

Crossing the boundary between face-centred cubic and hexagonal close packed: the structure of nanosized cobalt is unraveled by a model accounting for shape, size distribution and stacking faults, allowing simulation of XRD, XANES and EXAFS

Alessandro Longo, Luisa Sciortino, Francesco Giannici and Antonino Martorana
Journal of Applied Crystallography 47 (5) 1562 (2014)
https://doi.org/10.1107/S1600576714015970

Fischer–Tropsch Synthesis on Co/Al2O3 Catalyst: Effect of Pretreatment Procedure

Zhendong Pan, Matin Parvari and Dragomir B. Bukur
Topics in Catalysis 57 (6-9) 470 (2014)
https://doi.org/10.1007/s11244-013-0203-2

Palladium-promoted cobalt catalysts supported on silica prepared by impregnation and reverse micelle for Fischer–Tropsch synthesis

Nattawut Osakoo, Robert Henkel, Sirinuch Loiha, Frank Roessner and Jatuporn Wittayakun
Applied Catalysis A: General 464-465 269 (2013)
https://doi.org/10.1016/j.apcata.2013.06.008

How does activation affect the cobalt crystallographic structure? An in situ XRD and magnetic study

L. Braconnier, E. Landrivon, I. Clémençon, et al.
Catalysis Today 215 18 (2013)
https://doi.org/10.1016/j.cattod.2013.02.021

Ethylene oligomerisation over Co/SiO2 in the presence of trace carbon monoxide: The Eidus reaction revisited

Noel W. Cant, Irene O.Y. Liu and Jason A. Scott
Catalysis Today 215 267 (2013)
https://doi.org/10.1016/j.cattod.2013.04.025

A combined in situ XAS-XRPD-Raman study of Fischer–Tropsch synthesis over a carbon supported Co catalyst

Nikolaos E. Tsakoumis, Roya Dehghan, Rune E. Johnsen, et al.
Catalysis Today 205 86 (2013)
https://doi.org/10.1016/j.cattod.2012.08.041

Carbon Coating, Carburization, and High-Temperature Stability Improvement of Cobalt Nanorods

Mona Ibrahim, Cécile Marcelot-Garcia, Kahina Aït Atmane, et al.
The Journal of Physical Chemistry C 117 (30) 15808 (2013)
https://doi.org/10.1021/jp3125457

Size dependent reduction–oxidation–reduction behaviour of cobalt oxide nanocrystals

Sajanikumari Sadasivan, Ronan M. Bellabarba and Robert P. Tooze
Nanoscale 5 (22) 11139 (2013)
https://doi.org/10.1039/c3nr02877a

Experimental Microkinetic Approach of the Surface Reconstruction of Cobalt Particles in Relationship with the CO/H2 Reaction on a Reduced 10% Co/Al2O3 Catalyst

Julien Couble and Daniel Bianchi
The Journal of Physical Chemistry C 117 (28) 14544 (2013)
https://doi.org/10.1021/jp401762u

Hierarchical H-ZSM-5-supported cobalt for the direct synthesis of gasoline-range hydrocarbons from syngas: Advantages, limitations, and mechanistic insight

Sina Sartipi, Kshitij Parashar, María José Valero-Romero, et al.
Journal of Catalysis 305 179 (2013)
https://doi.org/10.1016/j.jcat.2013.05.012

Fischer–Tropsch synthesis: Activity of metallic phases of cobalt supported on silica

Muthu Kumaran Gnanamani, Gary Jacobs, Wilson D. Shafer and Burtron H. Davis
Catalysis Today 215 13 (2013)
https://doi.org/10.1016/j.cattod.2013.03.004

Cobalt Catalyzed Fischer–Tropsch Synthesis: Perspectives Opened by First Principles Calculations

Manuel Corral Valero and Pascal Raybaud
Catalysis Letters 143 (1) 1 (2013)
https://doi.org/10.1007/s10562-012-0930-1

Crystallographic Dependence of CO Activation on Cobalt Catalysts: HCP versus FCC

Jin-Xun Liu, Hai-Yan Su, Da-Peng Sun, Bing-Yan Zhang and Wei-Xue Li
Journal of the American Chemical Society 135 (44) 16284 (2013)
https://doi.org/10.1021/ja408521w

The impact of pre-reduction thermal history on the metal surface topology and site-catalytic activity of Fischer–Tropsch catalysts

Gonzalo Prieto, Patricia Concepción, Raúl Murciano and Agustín Martínez
Journal of Catalysis 302 37 (2013)
https://doi.org/10.1016/j.jcat.2013.02.022

Structure and catalytic performance of alumina-supported copper–cobalt catalysts for carbon monoxide hydrogenation

Jingjuan Wang, Petr A. Chernavskii, Andrei Y. Khodakov and Ye Wang
Journal of Catalysis 286 51 (2012)
https://doi.org/10.1016/j.jcat.2011.10.012

Effect of platinum promoters on the removal of O from the surface of cobalt catalysts: A DFT study

Nianthrini Balakrishnan, Babu Joseph and Venkat R. Bhethanabotla
Surface Science 606 (5-6) 634 (2012)
https://doi.org/10.1016/j.susc.2011.11.033

Co–Ru/SiC impregnated with ethanol as an effective catalyst for the Fischer–Tropsch synthesis

Benoit de Tymowski, Yuefeng Liu, Christian Meny, et al.
Applied Catalysis A: General 419-420 31 (2012)
https://doi.org/10.1016/j.apcata.2012.01.004

Structural and electronic properties of cobalt carbide Co2C and its surface stability: Density functional theory study

Yong-Hui Zhao, Hai-Yan Su, Keju Sun, Jinxun Liu and Wei-Xue Li
Surface Science 606 (5-6) 598 (2012)
https://doi.org/10.1016/j.susc.2011.11.025

Fischer–Tropsch synthesis: An XAS/XRPD combined in situ study from catalyst activation to deactivation

Nikolaos E. Tsakoumis, Alexey Voronov, Magnus Rønning, et al.
Journal of Catalysis 291 138 (2012)
https://doi.org/10.1016/j.jcat.2012.04.018

Heats of adsorption of linearly adsorbed CO species on Co2+ and Co° sites of reduced Co/Al2O3 catalysts in relationship with the CO/H2 reaction

Julien Couble and Daniel Bianchi
Applied Catalysis A: General 445-446 1 (2012)
https://doi.org/10.1016/j.apcata.2012.07.017

Re‐dispersion of Cobalt on a Model Fischer–Tropsch Catalyst During Reduction–Oxidation–Reduction Cycles

M. M. Hauman, A. Saib, D. J. Moodley, E. du Plessis, M. Claeys and E. van Steen
ChemCatChem 4 (9) 1411 (2012)
https://doi.org/10.1002/cctc.201200034

In-Situ Reduction of Promoted Cobalt Oxide Supported on Alumina by Environmental Transmission Electron Microscopy

Roya Dehghan, Thomas W. Hansen, Jakob B. Wagner, et al.
Catalysis Letters 141 (6) 754 (2011)
https://doi.org/10.1007/s10562-011-0600-8

Comment on “Operando DRIFTS and XANES Study of Deactivating Effect of CO2 on a Ce0.8Cu0.2O2 CO-PROX Catalyst”

D. Bazin and J. J. Rehr
The Journal of Physical Chemistry C 115 (46) 23233 (2011)
https://doi.org/10.1021/jp2047773

Study of the effect of cobalt content in obtaining olefins and paraffins using the Fischer-Tropsch reaction

Bianca Viana de Sousa, Meiry Gláucia Freire Rodrigues, Leonardo Andrés Cano, Maria Virginia Cagnoli, José Fernando Bengoa, Sérgio Gustavo Marchetti and Gina Pecchi
Catalysis Today 172 (1) 152 (2011)
https://doi.org/10.1016/j.cattod.2011.02.035

Ex-nitrate Co/SBA-15 catalysts prepared with calibrated silica grains: Information given by TPR, TEM, SAXS and WAXS

Fella Boubekr, Anne Davidson, Sandra Casale and Pascale Massiani
Microporous and Mesoporous Materials 141 (1-3) 157 (2011)
https://doi.org/10.1016/j.micromeso.2010.10.038

Cobalt Fischer−Tropsch Catalysts Using Nickel Promoter as a Rhenium Substitute to Suppress Deactivation

Erling Rytter, Torild H. Skagseth, Sigrid Eri and Anja O. Sjåstad
Industrial & Engineering Chemistry Research 49 (9) 4140 (2010)
https://doi.org/10.1021/ie100308f

Combined XRD and XANES studies of a Re-promoted Co/γ-Al2O3 catalyst at Fischer–Tropsch synthesis conditions

Magnus Rønning, Nikolaos E. Tsakoumis, Alexey Voronov, et al.
Catalysis Today 155 (3-4) 289 (2010)
https://doi.org/10.1016/j.cattod.2009.10.010

Deactivation of cobalt based Fischer–Tropsch catalysts: A review

Nikolaos E. Tsakoumis, Magnus Rønning, Øyvind Borg, Erling Rytter and Anders Holmen
Catalysis Today 154 (3-4) 162 (2010)
https://doi.org/10.1016/j.cattod.2010.02.077

Effect of alumina phases on hydrocarbon selectivity in Fischer–Tropsch synthesis

Shreyas Rane, Øyvind Borg, Jia Yang, Erling Rytter and Anders Holmen
Applied Catalysis A: General 388 (1-2) 160 (2010)
https://doi.org/10.1016/j.apcata.2010.08.038

Effects of pore diameter on particle size, phase, and turnover frequency in mesoporous silica supported cobalt Fischer–Tropsch catalysts

I.T. Ghampson, C. Newman, L. Kong, et al.
Applied Catalysis A: General 388 (1-2) 57 (2010)
https://doi.org/10.1016/j.apcata.2010.08.028

Mars-van Krevelen-like Mechanism of CO Hydrogenation on an Iron Carbide Surface

Jose M. Gracia, Frans F. Prinsloo and J. W. Niemantsverdriet
Catalysis Letters 133 (3-4) 257 (2009)
https://doi.org/10.1007/s10562-009-0179-5