Besides the feedstock composition, the highest treatment temperature (HTT) in pyrolysis is one of the key production parameters. The latter determines the feedstock’s carbonization extent, which influences physicochemical properties of the resulting biochar, and in consequence its performance in industrial and agricultural applications. The actual HTT of biomass is difficult to measure in a reliable manner in many large-scale pyrolysis units (e.g., rotary kilns). Therefore, producers and end-users often rely on unreliable or biased information regarding this key production parameter that affects biochar quality. Data from indirect chemical assessment methods of biochar’s carbonization extent correlate well with the highest treatment tempera...
Based on the latest estimates, global carbon dioxide (CO2) emissions rose to nearly 36 Pg yr 1 by th...
Important parameters that influence biochar properties include charring temperature and biomass type...
The impact of conversion process parameters in pyrolysis (maximum temperature, inert gas flow rate) ...
Abstract Besides the feedstock composition, the highest treatment temperature (HTT) in pyrolysis is ...
AbstractBiochar properties are highly dependent on the feedstock type and operational conditions dur...
Biochar thermosequences produced from the charring of poultry manure and freshwater macroalgae feeds...
This chapter presents the most promising features and applications of biochar along with their optim...
Pyrolysis temperature and feedstock type used to produce biochar influence the physicochemical prope...
A set of 22 biochars from different feedstock and pyrolysis conditions were produced using the same ...
Slow pyrolysis, fast pyrolysis and gasification are thermochemical processes to produce fuel and che...
Current pyrolysis technologies are used for the production of liquid bio-oil, solid biochar, and gas...
The impact of conversion process parameters in pyrolysis (maximum temperature, inert gas flow rate) ...
This study focuses on analyzing the effect of both the peak temperature and pressure on the properti...
Biochar and its properties can be significantly altered according to how it is produced, and this ha...
Pyrolysis technology can be used for producing biochar and bio-oil simultaneously, as an effective a...
Based on the latest estimates, global carbon dioxide (CO2) emissions rose to nearly 36 Pg yr 1 by th...
Important parameters that influence biochar properties include charring temperature and biomass type...
The impact of conversion process parameters in pyrolysis (maximum temperature, inert gas flow rate) ...
Abstract Besides the feedstock composition, the highest treatment temperature (HTT) in pyrolysis is ...
AbstractBiochar properties are highly dependent on the feedstock type and operational conditions dur...
Biochar thermosequences produced from the charring of poultry manure and freshwater macroalgae feeds...
This chapter presents the most promising features and applications of biochar along with their optim...
Pyrolysis temperature and feedstock type used to produce biochar influence the physicochemical prope...
A set of 22 biochars from different feedstock and pyrolysis conditions were produced using the same ...
Slow pyrolysis, fast pyrolysis and gasification are thermochemical processes to produce fuel and che...
Current pyrolysis technologies are used for the production of liquid bio-oil, solid biochar, and gas...
The impact of conversion process parameters in pyrolysis (maximum temperature, inert gas flow rate) ...
This study focuses on analyzing the effect of both the peak temperature and pressure on the properti...
Biochar and its properties can be significantly altered according to how it is produced, and this ha...
Pyrolysis technology can be used for producing biochar and bio-oil simultaneously, as an effective a...
Based on the latest estimates, global carbon dioxide (CO2) emissions rose to nearly 36 Pg yr 1 by th...
Important parameters that influence biochar properties include charring temperature and biomass type...
The impact of conversion process parameters in pyrolysis (maximum temperature, inert gas flow rate) ...