Catalytic hydrodeoxygenation (HDO) is an effective technology for upgrading pyrolysis bio-oils. Although, in the past years, this process has been extensively studied, the relevance of the cross-reactivity between the numerous chemical components of bio-oil has been scarcely explored. However, molecular coupling can be beneficial for improving the bio-oil characteristics. With the aim of gaining a better understanding of these interactions, this work investigates the catalytic hydrodeoxygenation of mixtures of two typical components of pyrolysis bio-oils: guaiacol and acetic acid. The catalytic tests were carried out employing a bifunctional catalyst based on nickel phosphide (Ni2P) deposited over a commercial nanocrystalline ZSM-5 zeolite....
Bifunctional metal/acid catalysts of 5 wt% Ni/HBeta, 5 wt% Fe/HBeta, 2.5 wt% Ni-2.5 wt% Fe/HBeta (Ni...
In recent decades, the quest for renewable and sustainable alternatives, namely biomass/bio waste, h...
The hydrotreatment of bio-oil, which obtained from fast pyrolysis of pine sawdust, was investigated ...
[EN] Catalytic hydrodeoxygenation (HDO) is an effective technology for upgrading pyrolysis bio-oils....
The aim of the study was to provide a detailed characterization of the catalytic hydro-deoxygenation...
Pyrolysis bio-oil is recognized as a renewable and carbon-neutral fuel which could be potential alte...
The upgrading of the Norwegian spruce derived bio-oil was carried out in a batch reactor with condit...
This work showcases an innovative route for biocompound upgrading via hydrodeoxygenation (HDO) react...
Pyrolysis is considered the most promising way to convert biomass to fuels. Upgrading biomass pyroly...
Fast pyrolysis of lignocellulosic biomass is an attractive thermochemical conversion process to prod...
Pyrolysis of biomass is a promising technology to convert solid biomass into liquid bio-oils. Howeve...
5 Figuras.- Tablas suplementarias disponibles en línea en la página web del editor.-- © 2019. This m...
Bifunctional catalysts comprising Ni2P supported over a hierarchical ZSM-5 zeolite (h-ZSM-5) were sy...
Highly reactive phenolic compounds of pyrolysis bio-oil are recognized as a major cause of the unple...
Depletion of fossil fuel reserves has urged active researching effort in search of alternative sourc...
Bifunctional metal/acid catalysts of 5 wt% Ni/HBeta, 5 wt% Fe/HBeta, 2.5 wt% Ni-2.5 wt% Fe/HBeta (Ni...
In recent decades, the quest for renewable and sustainable alternatives, namely biomass/bio waste, h...
The hydrotreatment of bio-oil, which obtained from fast pyrolysis of pine sawdust, was investigated ...
[EN] Catalytic hydrodeoxygenation (HDO) is an effective technology for upgrading pyrolysis bio-oils....
The aim of the study was to provide a detailed characterization of the catalytic hydro-deoxygenation...
Pyrolysis bio-oil is recognized as a renewable and carbon-neutral fuel which could be potential alte...
The upgrading of the Norwegian spruce derived bio-oil was carried out in a batch reactor with condit...
This work showcases an innovative route for biocompound upgrading via hydrodeoxygenation (HDO) react...
Pyrolysis is considered the most promising way to convert biomass to fuels. Upgrading biomass pyroly...
Fast pyrolysis of lignocellulosic biomass is an attractive thermochemical conversion process to prod...
Pyrolysis of biomass is a promising technology to convert solid biomass into liquid bio-oils. Howeve...
5 Figuras.- Tablas suplementarias disponibles en línea en la página web del editor.-- © 2019. This m...
Bifunctional catalysts comprising Ni2P supported over a hierarchical ZSM-5 zeolite (h-ZSM-5) were sy...
Highly reactive phenolic compounds of pyrolysis bio-oil are recognized as a major cause of the unple...
Depletion of fossil fuel reserves has urged active researching effort in search of alternative sourc...
Bifunctional metal/acid catalysts of 5 wt% Ni/HBeta, 5 wt% Fe/HBeta, 2.5 wt% Ni-2.5 wt% Fe/HBeta (Ni...
In recent decades, the quest for renewable and sustainable alternatives, namely biomass/bio waste, h...
The hydrotreatment of bio-oil, which obtained from fast pyrolysis of pine sawdust, was investigated ...