Javascript must be enabled to continue!
Autothermal Operation of a Biomass Torrefaction Plant
View through CrossRef
Biomass torrefaction is a thermal pretreatment which takes place at a temperature between 200–300 °C in a non-oxidative environment. The process requires thermal energy for drying and torrefying the raw biomass. The amount of the required heat may vary depending on the biomass moisture content, operating temperature and residence time. The volatiles released during the torrefaction are usually burnt in a combustor to meet the heat requirement of the process. If the energy content of the volatiles is less than the thermal energy required for the process, the operation of the torrefaction unit is below the autothermal mode so an auxiliary fuel such as natural gas is burnt together with the volatiles.
This paper investigates autothermal operation of a torrefaction unit which consists of a dryer, a torrefaction reactor, a combustor, and two heat exchangers. An experimentally validated process model is employed to identify a relation between the moisture content, torrefaction temperature, and residence time at autothermal operation. The model is capable of predicting the composition of volatiles and torrefied biomass, mass and energy yields, process heat requirement, and CO2 emissions. The results are graphically presented allowing one to determine whether a torrefaction unit operates below or above the autothermal mode at given torrefaction temperature, residence time and moisture content. Furthermore, the effect of the main operating parameters on the carbon dioxide emissions of the torrefaction unit is discussed.
American Society of Mechanical Engineers
Title: Autothermal Operation of a Biomass Torrefaction Plant
Description:
Biomass torrefaction is a thermal pretreatment which takes place at a temperature between 200–300 °C in a non-oxidative environment.
The process requires thermal energy for drying and torrefying the raw biomass.
The amount of the required heat may vary depending on the biomass moisture content, operating temperature and residence time.
The volatiles released during the torrefaction are usually burnt in a combustor to meet the heat requirement of the process.
If the energy content of the volatiles is less than the thermal energy required for the process, the operation of the torrefaction unit is below the autothermal mode so an auxiliary fuel such as natural gas is burnt together with the volatiles.
This paper investigates autothermal operation of a torrefaction unit which consists of a dryer, a torrefaction reactor, a combustor, and two heat exchangers.
An experimentally validated process model is employed to identify a relation between the moisture content, torrefaction temperature, and residence time at autothermal operation.
The model is capable of predicting the composition of volatiles and torrefied biomass, mass and energy yields, process heat requirement, and CO2 emissions.
The results are graphically presented allowing one to determine whether a torrefaction unit operates below or above the autothermal mode at given torrefaction temperature, residence time and moisture content.
Furthermore, the effect of the main operating parameters on the carbon dioxide emissions of the torrefaction unit is discussed.
Related Results
Effect of Torrefaction on the Physiochemical Properties of White Spruce Sawdust for Biofuel Production
Effect of Torrefaction on the Physiochemical Properties of White Spruce Sawdust for Biofuel Production
Torrefaction pretreatment is a mild form of pyrolysis that has the potential to produce a high-quality raw material for making biofuel that serves as a replacement for coal in the ...
Microwave Torrefaction of Corn Stover and Tech-Economic Analysis
Microwave Torrefaction of Corn Stover and Tech-Economic Analysis
Microwave torrefaction of corn stover with particle size of 4 mm was investigated and the effects of reaction temperature and time on the yields of volatile, bio-oil and torrefied ...
Torréfaction du bois et de ses constituants : expériences et modélisation des rendements en matières volatiles
Torréfaction du bois et de ses constituants : expériences et modélisation des rendements en matières volatiles
Actuellement, l’industrialisation de la torréfaction de biomasse se heurte notamment à un manque de connaissances de la nature et de la quantité des matières volatiles produites en...
Potassium a way for improvement of mild pyrolysis processes
Potassium a way for improvement of mild pyrolysis processes
Potassium au service de l'amélioration du procédé de pyrolyse douce
La torréfaction est une technologie de traitement thermique développée pour améliorer les propri...
OXIDATIVE TORREFACTION FOR PULVERIZED PALM BIOMASS USING AIR
OXIDATIVE TORREFACTION FOR PULVERIZED PALM BIOMASS USING AIR
Torrefaction is one of the promising ways to utilize abundant amount of empty fruit bunch (EFB) and palm kernel shell (PKS) while upgrading the combustion properties of both types ...
Economics, Sustainability, and Reaction Kinetics of Biomass Torrefaction
Economics, Sustainability, and Reaction Kinetics of Biomass Torrefaction
Biomass torrefaction is capable of significantly improving the quality and properties of solid biofuels. It is often referred to as complex reactions involving the decomposition of...
Comparison of torrefaction characteristics and structural evolution of agroforestry residues: A study on pine wood and peanut shell
Comparison of torrefaction characteristics and structural evolution of agroforestry residues: A study on pine wood and peanut shell
Abstracts To realize energy sustainable development and climate change mitigation, developing efficient energy utilization for forestry and agricultural residues is a critical stra...
Oxidative Torrefaction of Sunflower Husk Pellets in the Kaolin Layer
Oxidative Torrefaction of Sunflower Husk Pellets in the Kaolin Layer
Abstract
In this paper oxidative torrefaction of sunflower husk pellets in the kaolin layer was firstly investigated. Besides, influence of kaolin without use of special ad...

