This research investigates the preparation of Ni-Co/CeO2 catalysts based on impregnation and hydrothermal treatment methods for the hydrogen and valuable fuels generation from the steam reforming and cracking reactions of polyethylene terephthalate (PET) waste liquefied in phenol. PET plastic waste is environmentally harmful, mostly when it eliminated by burning or landfilling. Therefore, in this study, this waste has been dissolved in phenol for hydrogen and liquid fuel generation via catalytic steam reforming and cracking reactions. Complementary characterization techniques such as XRD, BET, FTIR, SEM, TEM, EDX, H2-TPR, CO2-TPD, NH3-TPD, ICP, CHNS and TGA were used to correlate surface structure and functionality to catalytic performance ...
Hydrogen was produced from waste plastics using a novel two-stage pyrolysis-low temperature (250 °C)...
Three Ni/Al2O3catalysts prepared by co-precipitation, impregnation and sol-gel methods were investig...
Most of the hydrogen production processes are designed for large-scale industrial uses and are not s...
Ni–Co/ZrO2 (NCZ) nano-structure catalysts prepared by the hydrothermal method (NCZ-hyd) and conventi...
Hydrogen, a sustainable and clean energy carrier, has gained interest as a potential candidate in th...
Production of hydrogen from plastic waste could be a prospective key to the ecological problems resu...
As a sustainable and renewable energy carrier, hydrogen is considered as a key future fuel to make t...
In this research, titanium nanoparticles (TNPs) for Ni–Pt/Al nano-sized catalysts were prepared via ...
The different loading of nickel oxide, the effect of the addition of Lanthanum (La) with Al2O3 suppo...
Ni/Pd-co-promoted Al2O3–La2O3 catalysts for selective hydrogen production from polyethylene terephth...
The effect of different pellet sizes of nickel (Ni) and lanthanum (La) promoted Al2O3 support on the...
With the aggravation of energy crisis and environmental pollution, green and renewable new alternati...
Theoretical and experimental approaches were achieved to estimate the presence of mass transfer limi...
Humanity reliance on plastic has led to the current problem of dealing with the waste that is genera...
Producing both hydrogen and high-value carbon nanotubes (CNTs) derived from waste plastics is report...
Hydrogen was produced from waste plastics using a novel two-stage pyrolysis-low temperature (250 °C)...
Three Ni/Al2O3catalysts prepared by co-precipitation, impregnation and sol-gel methods were investig...
Most of the hydrogen production processes are designed for large-scale industrial uses and are not s...
Ni–Co/ZrO2 (NCZ) nano-structure catalysts prepared by the hydrothermal method (NCZ-hyd) and conventi...
Hydrogen, a sustainable and clean energy carrier, has gained interest as a potential candidate in th...
Production of hydrogen from plastic waste could be a prospective key to the ecological problems resu...
As a sustainable and renewable energy carrier, hydrogen is considered as a key future fuel to make t...
In this research, titanium nanoparticles (TNPs) for Ni–Pt/Al nano-sized catalysts were prepared via ...
The different loading of nickel oxide, the effect of the addition of Lanthanum (La) with Al2O3 suppo...
Ni/Pd-co-promoted Al2O3–La2O3 catalysts for selective hydrogen production from polyethylene terephth...
The effect of different pellet sizes of nickel (Ni) and lanthanum (La) promoted Al2O3 support on the...
With the aggravation of energy crisis and environmental pollution, green and renewable new alternati...
Theoretical and experimental approaches were achieved to estimate the presence of mass transfer limi...
Humanity reliance on plastic has led to the current problem of dealing with the waste that is genera...
Producing both hydrogen and high-value carbon nanotubes (CNTs) derived from waste plastics is report...
Hydrogen was produced from waste plastics using a novel two-stage pyrolysis-low temperature (250 °C)...
Three Ni/Al2O3catalysts prepared by co-precipitation, impregnation and sol-gel methods were investig...
Most of the hydrogen production processes are designed for large-scale industrial uses and are not s...