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Scientific Article details

Title Statistical Model for Prediction of Ash Fusion Temperatures from Additive Doped Biomass
ID_Doc 19694
Authors Wnorowska, J; Gadek, W; Kalisz, S
Title Statistical Model for Prediction of Ash Fusion Temperatures from Additive Doped Biomass
Year 2020
Published Energies, 13.0, 24
DOI 10.3390/en13246543
Abstract The prediction of phase transformation of biomass ashes is challenging due to the highly variable composition of these fuels as well as the complex processes accompanying phase transformations. The AFT (Ash Fusion Temperature) model was performed in Statistica 13.1 software. This model was divided into three separate submodels, which were designed to predict the characteristic ash melting temperatures for raw and modified biomass. It is based on the chemical composition of fuel and ash as obtained using ash analysis standards. For the discussed models, several coefficients describing multiple regression parameters are presented. The AFT model discussed in this article is suitable for predicting ash fusion temperatures for biomass and allows for the prediction of the temperature with an average error of <+/- 70.05 degrees C for IDT; <+/- 51.98 degrees C for HT; <+/- 47.52 degrees C for FT for raw biomass. For some of the additionally tested biomass, a value higher than the average difference between the measured temperature and the designated model was observed (<90 degrees C). Moreover, morphological analyses of the structure SEM-EDS for ash samples with and without additive were performed.
Author Keywords ash fusion temperature (AFT); biomass combustion; fuel additives; AFT statistic model; prediction of ash temperature
Index Keywords Index Keywords
Document Type Other
Open Access Open Access
Source Science Citation Index Expanded (SCI-EXPANDED)
EID WOS:000602765500001
WoS Category Energy & Fuels
Research Area Energy & Fuels
PDF https://www.mdpi.com/1996-1073/13/24/6543/pdf?version=1607768575
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