Catalytic steam reforming of liquid hydrocarbons is one of the promising alternatives for hydrogen production. However, coke deposition on the reacted catalyst results in catalyst deactivation and also CO emission during reforming are among the main challenges in the process. In this work, the production of high-value carbon nanotubes (CNTs) during hydrogen production from catalytic reforming of toluene has been investigated. Thus, less carbon emission and higher product values can be expected from the process. A two-stage fixed bed pyrolysis-reforming reactor was used in this work. The results showed that the addition of a Ni-Mg-Al catalyst, with an additional downstream stainless steel mesh, increased hydrogen production from 24.8 to 54.8...
This study aims to develop a two-stage fluidized catalytic bed reactor system for continuous co-prod...
Tar formation during biomass gasification is the main obstacle in the sustainable hydrog...
Gasification provides a promising alternative to thermally recycle waste plastics to produce a synth...
Producing both hydrogen and high-value carbon nanotubes (CNTs) derived from waste plastics is report...
Hydrogen production from waste plastics is an important alternative for managing waste plastics. Thi...
In this work, a two-stage fixed-bed reaction system was used for the production of carbon nanotubes ...
A range of process conditions have been investigated to maximise the production of carbon nanotubes ...
The production of high-value carbon nanotubes and hydrogen from the two-stage pyrolysis catalytic-st...
Nickel, iron, cobalt and copper catalysts were prepared by impregnation and used to produce carbon n...
Hydrogen production by steam reforming of ethanol (SRE) was studied using steam to ethanol ratio of ...
The use of Ni-Fe catalysts for the catalytic pyrolysis of real-world waste plastics to produce hydro...
Hydrogen may play a key role in future sustainable energy system as a carrier of renewable energy to...
Maximizing the efficiency and economic benefits of bio-oil is a major challenge for the emerging bio...
Hydrogen production by steam reforming of ethanol (SRE) was studied using steam to ethanol ratio of ...
The production of high-value carbon nanotubes and hydrogen from the two-stage pyrolysis–catalytic re...
This study aims to develop a two-stage fluidized catalytic bed reactor system for continuous co-prod...
Tar formation during biomass gasification is the main obstacle in the sustainable hydrog...
Gasification provides a promising alternative to thermally recycle waste plastics to produce a synth...
Producing both hydrogen and high-value carbon nanotubes (CNTs) derived from waste plastics is report...
Hydrogen production from waste plastics is an important alternative for managing waste plastics. Thi...
In this work, a two-stage fixed-bed reaction system was used for the production of carbon nanotubes ...
A range of process conditions have been investigated to maximise the production of carbon nanotubes ...
The production of high-value carbon nanotubes and hydrogen from the two-stage pyrolysis catalytic-st...
Nickel, iron, cobalt and copper catalysts were prepared by impregnation and used to produce carbon n...
Hydrogen production by steam reforming of ethanol (SRE) was studied using steam to ethanol ratio of ...
The use of Ni-Fe catalysts for the catalytic pyrolysis of real-world waste plastics to produce hydro...
Hydrogen may play a key role in future sustainable energy system as a carrier of renewable energy to...
Maximizing the efficiency and economic benefits of bio-oil is a major challenge for the emerging bio...
Hydrogen production by steam reforming of ethanol (SRE) was studied using steam to ethanol ratio of ...
The production of high-value carbon nanotubes and hydrogen from the two-stage pyrolysis–catalytic re...
This study aims to develop a two-stage fluidized catalytic bed reactor system for continuous co-prod...
Tar formation during biomass gasification is the main obstacle in the sustainable hydrog...
Gasification provides a promising alternative to thermally recycle waste plastics to produce a synth...