The bio-oil from fast pyrolysis of biomass cannot be used effectively as engine fuel because of its high corrosiveness and instability mainly due to substantial amounts of organic acids and reactive aldehydes. In this paper a treatment of acids and aldehydes in the bio-oil was focused on. A novel upgrading method named one-step hydrogenation−esterification (OHE) was established to convert acids and aldehydes to stable and combustible components. Acetaldehyde (butyl aldehyde) and acetic acid were chosen as model compounds for the OHE reaction over platinum catalysts that acidic supports such as HZSM-5 or amorphous aluminum silicate were adopted. The catalysts were bifunctional, which means they have properties of hydrogenation and esterifica...
Bio-oil is a condensable liquid produced from the pyrolysis of biomass, which can be upgraded to bio...
The hydrotreatment of bio-oil, which obtained from fast pyrolysis of pine sawdust, was investigated ...
There is a growing need to develop the processes to produce renewable fuels and chemicals due to the...
Fast pyrolysis bio-oil is very difficult to be used because of its acidity, instability, high degree...
Acids, aldehydes, ketones and phenols, which are the main components of bio-oil, have negative effec...
Pyrolysis is considered the most promising way to convert biomass to fuels. Upgrading biomass pyroly...
Catalytic refining of bio-oil by reacting with olefin/alcohol over solid acids can convert bio-oil t...
High amounts of acid compounds in bio-oil not only lead to the deleterious properties such as corros...
In this paper, bio-oil from fast pyrolysis of Pinus sylvestris L. was upgraded over supported noble ...
As a clean sustainable substitute for fossil fuel, bio-oil has properties of acidity and instability...
This study developed an upgrading process focusing on acid transformations of water phase pyrolysis ...
Crude bio-oil from pine chip fast pyrolysis was upgraded with olefins (1-octene, cyclohexene, 1,7-oc...
In recent decades, the quest for renewable and sustainable alternatives, namely biomass/bio waste, h...
Pyrolysis bio-oil is recognized as a renewable and carbon-neutral fuel which could be potential alte...
At present, lignocellulosic biomass is the only renewable and available resource capable of supplant...
Bio-oil is a condensable liquid produced from the pyrolysis of biomass, which can be upgraded to bio...
The hydrotreatment of bio-oil, which obtained from fast pyrolysis of pine sawdust, was investigated ...
There is a growing need to develop the processes to produce renewable fuels and chemicals due to the...
Fast pyrolysis bio-oil is very difficult to be used because of its acidity, instability, high degree...
Acids, aldehydes, ketones and phenols, which are the main components of bio-oil, have negative effec...
Pyrolysis is considered the most promising way to convert biomass to fuels. Upgrading biomass pyroly...
Catalytic refining of bio-oil by reacting with olefin/alcohol over solid acids can convert bio-oil t...
High amounts of acid compounds in bio-oil not only lead to the deleterious properties such as corros...
In this paper, bio-oil from fast pyrolysis of Pinus sylvestris L. was upgraded over supported noble ...
As a clean sustainable substitute for fossil fuel, bio-oil has properties of acidity and instability...
This study developed an upgrading process focusing on acid transformations of water phase pyrolysis ...
Crude bio-oil from pine chip fast pyrolysis was upgraded with olefins (1-octene, cyclohexene, 1,7-oc...
In recent decades, the quest for renewable and sustainable alternatives, namely biomass/bio waste, h...
Pyrolysis bio-oil is recognized as a renewable and carbon-neutral fuel which could be potential alte...
At present, lignocellulosic biomass is the only renewable and available resource capable of supplant...
Bio-oil is a condensable liquid produced from the pyrolysis of biomass, which can be upgraded to bio...
The hydrotreatment of bio-oil, which obtained from fast pyrolysis of pine sawdust, was investigated ...
There is a growing need to develop the processes to produce renewable fuels and chemicals due to the...