The commercial application of cobalt-based Fischer-Tropsch synthesis (FTS) suffers from catalyst deactivation. One of the main deactivation mechanisms under industrial conditions is sintering. In this work, we explored the role of manganese oxide as a structural promoter against sintering in a carbon nanofiber supported cobalt model catalyst. We employed in situ Mössbauer emission spectroscopy to study cobalt sintering in synthesis gas as a function of the steam partial pressure, which mimics high CO conversion during FTS. Steam accelerates the sintering of non-promoted metallic cobalt particles. Model experiments point to a synergistic effect between carbon monoxide and steam on cobalt sintering. In the mangense-promoted case, sintering is...
The Fischer-Tropsch Synthesis (FTS) process is an attractive way to obtain synthetic liquid fuel fro...
ABSTRACT: The effects of electronic properties of inner and outer surfaces of Carbon Nano Tubes (CNT...
Manganese oxide is an effective promoter for enhancing the activity and selectivity of cobalt-based ...
The commercial application of cobalt-based Fischer-Tropsch synthesis (FTS) suffers from catalyst dea...
Understanding the deactivation mechanism of cobalt-based Fischer-Tropsch catalysts is of significant...
BIOVERT+PFOA three-step sintering mechanism is proposed for Co-based catalysts under Fischer-Tropsch...
Catalyst deactivation is an important topic for industrial catalyst development. Sintering of small ...
The Fischer-Tropsch synthesis as a large-scale industrial process converts a mixture of carbon monox...
Supported Co is an effective catalyst for the Fischer-Tropsch synthesis of various hydrocarbon produ...
Cobalt-based Fischer-Tropsch synthesis (FTS) catalysts are the systems of choice for use in gas-to-l...
The study of titania-supported cobalt nanoparticles is relevant for industrial Fischer-Tropsch synth...
The Fischer-Tropsch Synthesis (FTS) process is an attractive way to obtain synthetic liquid fuel fro...
ABSTRACT: The effects of electronic properties of inner and outer surfaces of Carbon Nano Tubes (CNT...
Manganese oxide is an effective promoter for enhancing the activity and selectivity of cobalt-based ...
The commercial application of cobalt-based Fischer-Tropsch synthesis (FTS) suffers from catalyst dea...
Understanding the deactivation mechanism of cobalt-based Fischer-Tropsch catalysts is of significant...
BIOVERT+PFOA three-step sintering mechanism is proposed for Co-based catalysts under Fischer-Tropsch...
Catalyst deactivation is an important topic for industrial catalyst development. Sintering of small ...
The Fischer-Tropsch synthesis as a large-scale industrial process converts a mixture of carbon monox...
Supported Co is an effective catalyst for the Fischer-Tropsch synthesis of various hydrocarbon produ...
Cobalt-based Fischer-Tropsch synthesis (FTS) catalysts are the systems of choice for use in gas-to-l...
The study of titania-supported cobalt nanoparticles is relevant for industrial Fischer-Tropsch synth...
The Fischer-Tropsch Synthesis (FTS) process is an attractive way to obtain synthetic liquid fuel fro...
ABSTRACT: The effects of electronic properties of inner and outer surfaces of Carbon Nano Tubes (CNT...
Manganese oxide is an effective promoter for enhancing the activity and selectivity of cobalt-based ...