Methane is one of the main gas species produced during biomass gasification and may be a desired or undesired product. Syngas CH4 concentrations are typically >5 vol-% (when desired) and 1–3 vol-% even when efforts are made to minimize it, while thermochemical equilibrium calculations (TEC) predict complete CH4 decomposition. How CH4 is generated and sustained in the reactor core is not well understood. To investigate this, accurate quantification of the CH4 concentration during the process is a necessary first step. We present results from rapid in situ measurements of CH4, soot volume fraction, H2O and gas temperature in the reactor core of an atmospheric entrained-flow biomass gasifier, obtained using tunable diode laser absorption sp...
Online measurements of the raw gas composition, including tars and water, during biomass gasificatio...
Tunable diode laser absorption spectroscopy (TDLAS) is employed for simultaneous detection of gas te...
The development of improved biomass pyrolysis models is vital for more accurate modelling and design...
Methane is one of the main gas species produced during biomass gasification and may be a desired or ...
Tunable diode laser absorption spectroscopy (TDLAS) was used to measure several important process pa...
Photofragmentation tunable diode laser absorption spectroscopy (PF-TDLAS) was used to simultaneously...
<div><p>Entrained flow gasification is a promising technique where biomass is converted to a synthes...
Biomass gasification and pyrolysis were studied in a laboratory-scale atmospheric pressure entrained...
The pyrolysis, devolatilization and char combustion of bituminous coal and biomass (beechwood, firwo...
Soot concentration measurements were performed using diode-laser extinction in an atmospheric air-bl...
Original data for mass, element, and methane dynamics under controleed pyrolysis presented for sever...
A novel method for quasi-continuous tar monitoring in hot syngas from biomass gasification is report...
Biomass gasification experiments were carried out in a bench scale entrained flow reactor, and the p...
While thermochemical syngas production facilities for biomass utilization are already employed world...
The development of improved biomass pyrolysis models is vital for more accurate modelling and design...
Online measurements of the raw gas composition, including tars and water, during biomass gasificatio...
Tunable diode laser absorption spectroscopy (TDLAS) is employed for simultaneous detection of gas te...
The development of improved biomass pyrolysis models is vital for more accurate modelling and design...
Methane is one of the main gas species produced during biomass gasification and may be a desired or ...
Tunable diode laser absorption spectroscopy (TDLAS) was used to measure several important process pa...
Photofragmentation tunable diode laser absorption spectroscopy (PF-TDLAS) was used to simultaneously...
<div><p>Entrained flow gasification is a promising technique where biomass is converted to a synthes...
Biomass gasification and pyrolysis were studied in a laboratory-scale atmospheric pressure entrained...
The pyrolysis, devolatilization and char combustion of bituminous coal and biomass (beechwood, firwo...
Soot concentration measurements were performed using diode-laser extinction in an atmospheric air-bl...
Original data for mass, element, and methane dynamics under controleed pyrolysis presented for sever...
A novel method for quasi-continuous tar monitoring in hot syngas from biomass gasification is report...
Biomass gasification experiments were carried out in a bench scale entrained flow reactor, and the p...
While thermochemical syngas production facilities for biomass utilization are already employed world...
The development of improved biomass pyrolysis models is vital for more accurate modelling and design...
Online measurements of the raw gas composition, including tars and water, during biomass gasificatio...
Tunable diode laser absorption spectroscopy (TDLAS) is employed for simultaneous detection of gas te...
The development of improved biomass pyrolysis models is vital for more accurate modelling and design...