Tar Yield and Collection from the Pyrolysis of Large Biomass Particles
- 1 August 1997
- journal article
- research article
- Published by Taylor & Francis in Combustion Science and Technology
- Vol. 127 (1-6) , 97-118
- https://doi.org/10.1080/00102209708935689
Abstract
Tar yield collection from the pyrolysis of relatively large particles of biomass are investigated using the model of Miller and Bellan (1997).A variety of feedstocks are considered by varying the ratios of cellulose, hemicellulose and lignin within the biomass. Effectsof secondary tar reactions, quenching, temperature, particle size and carrier gas are assessed. Secondary tar reactions occuring in both the particle's interior and the exterior boundary layer strongly reduce the potential amount of tar available for collection compared to the maximum given by kinetic predictions. The primary effect of these reactions is the existence of an optimal reactor temperature range for maximizing tar yields. This range is a function of both the quenching location and the initial particle size. For rapid qvenching near the particle surface, tar collection is maximized at high temperatures for small particles, and at low temperatures for large particles. For delayed quenching, low temperatures slow the secondary reactions and provide larger tar yields for all particle sizes investigated. Tar yields are also dependent on the choice of the inert carrier gas; primarily due to changes in heat capacity. A sensitivity study is performed in order to assess the influence of the biomass apparent density, thermal conductivity, heat capacity and primary heats of reaction.Keywords
This publication has 12 references indexed in Scilit:
- Analysis of Reaction Products and Conversion Time in the Pyrolysis of Cellulose and Wood ParticlesCombustion Science and Technology, 1996
- Thermal Lag, Fusion, and the Compensation Effect during Biomass PyrolysisIndustrial & Engineering Chemistry Research, 1996
- Analysis of Convection and Secondary Reaction Effects Within Porous Solid Fuels Undergoing PyrolysisCombustion Science and Technology, 1993
- Modeling and simulation of combustion processes of charring and non-charring solid fuelsProgress in Energy and Combustion Science, 1993
- Modelling of the pyrolysis of biomass particles. Studies on kinetics, thermal and heat transfer effectsThe Canadian Journal of Chemical Engineering, 1991
- A KINETIC MODEL FOR THE PRODUCTION OF LIQUIDS FROM THE FLASH PYROLYSIS OF BIOMASSChemical Engineering Communications, 1988
- The role of temperature in the fast pyrolysis of cellulose and woodIndustrial & Engineering Chemistry Research, 1988
- Heat transfer and kinetics in the low temperature pyrolysis of solidsChemical Engineering Science, 1984
- The flash pyrolysis of aspen‐poplar woodThe Canadian Journal of Chemical Engineering, 1982
- Kinetic investigation of wood pyrolysisIndustrial & Engineering Chemistry Process Design and Development, 1981