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Coke formation and deactivation during catalytic reforming of biomass and waste pyrolysis products: A review
Abstract Undoubtedly, hydrogen (H 2) is a clean feedstock and energy carrier whose
sustainable production should be anticipated. The pyrolysis of biomass or waste plastics …
sustainable production should be anticipated. The pyrolysis of biomass or waste plastics …
Evaluation of thermochemical routes for hydrogen production from biomass: A review
H 2 is regarded as one of the cleanest future energy carrier that can be generated from
renewable sources and will give rise to a reduction of CO 2 emissions and environmental …
renewable sources and will give rise to a reduction of CO 2 emissions and environmental …
[HTML][HTML] Recent development of biomass gasification for H2 rich gas production
H Song, G Yang, P Xue, Y Li, J Zou, S Wang… - Applications in Energy …, 2022 - Elsevier
Biomass gasification for hydrogen (H 2) production provides outstanding advantages in
terms of renewable energy resources, carbon neutral, high efficiency, and environmental …
terms of renewable energy resources, carbon neutral, high efficiency, and environmental …
Catalytic reforming of oxygenates: state of the art and future prospects
This Review describes recent advances in the design, synthesis, reactivity, selectivity,
structural, and electronic properties of the catalysts for reforming of a variety of oxygenates …
structural, and electronic properties of the catalysts for reforming of a variety of oxygenates …
Coke formation during thermal treatment of bio-oil
Bio-oil is a mixture of organics produced from pyrolysis of biomass. The organics in bio-oil
serve as the feedstock for the production of hydrogen, chemicals, biofuels, and carbon …
serve as the feedstock for the production of hydrogen, chemicals, biofuels, and carbon …
Catalytic steam reforming of bio-oil
R Trane, S Dahl, MS Skjøth-Rasmussen… - International journal of …, 2012 - Elsevier
Hydrogen and synthesis gas can be produced in an environmentally friendly and
sustainable way through steam reforming (SR) of bio-oil and this review presents the state-of …
sustainable way through steam reforming (SR) of bio-oil and this review presents the state-of …
The use of different metal catalysts for the simultaneous production of carbon nanotubes and hydrogen from pyrolysis of plastic feedstocks
Nickel, iron, cobalt and copper catalysts were prepared by impregnation and used to
produce carbon nanotubes and hydrogen gas from a LDPE feedstock. A two stage catalytic …
produce carbon nanotubes and hydrogen gas from a LDPE feedstock. A two stage catalytic …
[HTML][HTML] Recent advances and prospects in high purity H2 production from sorption enhanced reforming of bio-ethanol and bio-glycerol as carbon negative processes …
Hydrogen has wide applications in the chemical and petroleum industries and is a clean
energy carrier for electrical power generation and transportation. However, in current …
energy carrier for electrical power generation and transportation. However, in current …
Exsolution–Dissolution of Supported Metals on High-Entropy Co3MnNiCuZnOx: Toward Sintering-Resistant Catalysis
J Zhao, J Bao, S Yang, Q Niu, R **e, Q Zhang… - ACS …, 2021 - ACS Publications
Herein, in situ generation of CuCoNi nanoalloys over a high-entropy oxide Co3MnNiCuZnO
x matrix has been employed to generate a sintering-resistant metal-oxide interface for the …
x matrix has been employed to generate a sintering-resistant metal-oxide interface for the …
[HTML][HTML] Effect of reaction conditions on the deactivation by coke of a NiAl2O4 spinel derived catalyst in the steam reforming of bio-oil
The steam reforming of bio-oil is a promising and economically feasible technology for the
sustainable H 2 production, yet with the main challenge of designing highly active and …
sustainable H 2 production, yet with the main challenge of designing highly active and …