Published 2021 | Version v1
Journal article

Simulation of thermochemical processes in Aspen Plus as a tool for biorefinery analysis

Description

The development of tools for the synthesis, design and optimization of biorefineries requires deep knowledge of the thermochemical processes involved in these schemes. For this project, three models from scientific literature were implemented to simulate the processes: fast pyrolysis in a fluidized bed, fixed-bed, and fluidized-bed gasification using the Aspen Plus software. These models allow the user to obtain performance, consumption, and cost parameters necessary for the design and optimization of biorefineries schemes. The fast pyrolysis model encompasses a detailed description of biomass decomposition and kinetics of the process (149 reactions). In the fixed-bed gasification process, seven reactions that model the process have been integrated into two equilibrium reactors that minimize the Gibbs free energy. The model used for fluidized bed gasification considers both hydrodynamic and kinetic parameters, as well as a kinetic model that considers the change in the combustion reaction rate of biomass with oxygen leading to a change in temperature. Due to the complexity and detail of all these models, it was necessary to use FORTRAN subroutines and iterative Excel macros linked to Aspen Plus. Finally, the results of each simulation were validated with data from the model sources, as well as experimental results from the literature.

Additional details

Additional titles

Original title (Spanish)
Simulacion de procesos termoquimicos en Aspen Plus como herramienta para el analisis de biorrefinerias

Publishing Information

Journal Title
C.T. and F Ciencia, Tecnologia, Futuro (Online)
Journal Volume
11
Journal Issue
2
Journal Page Range
p. 27-38
ISSN
2382-4581

INIS

Country of Publication
Colombia
Country of Input or Organization
Colombia
INIS RN
53083001
Subject category
S09: BIOMASS FUELS;
Descriptors DEI
BIOCONVERSION; BIOFUELS; BIOMASS; BIOMASS CONVERSION PLANTS; COMBUSTION
Descriptors DEC
ALTERNATIVE FUELS; CHEMICAL REACTIONS; ENERGY SOURCES; FUELS; INDUSTRIAL PLANTS; OXIDATION; RENEWABLE ENERGY SOURCES; THERMOCHEMICAL PROCESSES

Optional Information

Notes
This record replaces 53080727