| Literature DB >> 25531683 |
Paul O Biney1, Michael Gyamerah2, Jiacheng Shen3, Bruna Menezes4.
Abstract
A new multi-stage kinetic model has been developed for TGA pyrolysis of arundo, corn stover, sawdust and switch grass that accounts for the initial biomass weight (W0). The biomass were decomposed in a nitrogen atmosphere from 23°C to 900°C in a TGA at a single 20°C/min ramp rate in contrast with the isoconversion technique. The decomposition was divided into multiple stages based on the absolute local minimum values of conversion derivative, (dx/dT), obtained from DTG curves. This resulted in three decomposition stages for arundo, corn stover and sawdust and four stages for switch grass. A linearized multi-stage model was applied to the TGA data for each stage to determine the pre-exponential factor, activation energy, and reaction order. The activation energies ranged from 54.7 to 60.9 kJ/mol, 62.9 to 108.7 kJ/mol, and 18.4 to 257.9 kJ/mol for the first, second and the third decomposition stages respectively.Entities:
Keywords: Activation energy; Biomass; Kinetic model; Pseudo-unimolecule; Thermogravimetric analysis
Mesh:
Year: 2014 PMID: 25531683 DOI: 10.1016/j.biortech.2014.10.155
Source DB: PubMed Journal: Bioresour Technol ISSN: 0960-8524 Impact factor: 9.642