The main aim of this paper pivoted around the influence of some parameters relevant to biomass pyrolysis on the numerical solutions of the n th order distributed activation energy model (DAEM) using the Gamma distribution. The upper limit of ‘dE’ integral, frequency factor, reaction order, and the shape and rate parameters of the Gamma distribution are investigated. Analysis of the mathematical model is done with the help of asymptotic expansion
The kinetic compensation effect in the logistic distributed activation energy model (DAEM) for ligno...
The pyrolysis process of various types of biomass (agricultural and wood by-products) in non-isother...
The aim of the present study was to explore the most optimal configuration to numerically solve Dist...
The main aim of th is paper pivote d ar ound th e influence of some parameters relev ant to biomass ...
This paper describes the influence of some parameters significant to biomass pyrolysis on the numeri...
This article focuses on the influence of relevant parameters of biomass pyrolysis on the numerical s...
This paper deals with the influence of some factors relevant to isothermal pyrolysis of residual lea...
The main aim of this paper is to do the comparative analysis of predicted results obtained by using ...
The paper focuses on the influences of some factors significant to pyrolysis of forestry biomass on ...
then resubmitted after minor revisions in September 2002. The Distributed Activation Energy Model (D...
Pyrolysis is a fundamental step in thermochemical processes of biomass materials, so a suitable kine...
The Distributed Activation Energy Model (DAEM), used for the pyrolysis of a range of materials (incl...
This work investigates the thermal decomposition of forest waste for a non-linear temperature distri...
A modification of the simplified Distributed Activation Energy Model is proposed to simulate the pyr...
Pyrolysis is a promising and attractive way to convert lignocellulosic biomass into low carbon-emiss...
The kinetic compensation effect in the logistic distributed activation energy model (DAEM) for ligno...
The pyrolysis process of various types of biomass (agricultural and wood by-products) in non-isother...
The aim of the present study was to explore the most optimal configuration to numerically solve Dist...
The main aim of th is paper pivote d ar ound th e influence of some parameters relev ant to biomass ...
This paper describes the influence of some parameters significant to biomass pyrolysis on the numeri...
This article focuses on the influence of relevant parameters of biomass pyrolysis on the numerical s...
This paper deals with the influence of some factors relevant to isothermal pyrolysis of residual lea...
The main aim of this paper is to do the comparative analysis of predicted results obtained by using ...
The paper focuses on the influences of some factors significant to pyrolysis of forestry biomass on ...
then resubmitted after minor revisions in September 2002. The Distributed Activation Energy Model (D...
Pyrolysis is a fundamental step in thermochemical processes of biomass materials, so a suitable kine...
The Distributed Activation Energy Model (DAEM), used for the pyrolysis of a range of materials (incl...
This work investigates the thermal decomposition of forest waste for a non-linear temperature distri...
A modification of the simplified Distributed Activation Energy Model is proposed to simulate the pyr...
Pyrolysis is a promising and attractive way to convert lignocellulosic biomass into low carbon-emiss...
The kinetic compensation effect in the logistic distributed activation energy model (DAEM) for ligno...
The pyrolysis process of various types of biomass (agricultural and wood by-products) in non-isother...
The aim of the present study was to explore the most optimal configuration to numerically solve Dist...