Effect of Biomass High-Frequency Pre-Treatment on Combustion Characteristics

Combustion characteristics of microwave (2.45 GHz) pre-treated biomass (wood) pellets are investigated experimentally with the aim to find out the effect of pellets pre-treatment on the biomass composition and the feasibility of their thermo-chemical conversion. A complex study of the main combustio...

Full description

Bibliographic Details
Main Authors: I. Barmina, A. Lickrastina, M. Purmalis, M. Zake, R. Valdmanis, J. Valdmanis, A. Arshanitsa, V. Solodovnik, G. Telisheva
Format: Article
Language:English
Published: AIDIC Servizi S.r.l. 2012-09-01
Series:Chemical Engineering Transactions
Online Access:https://www.cetjournal.it/index.php/cet/article/view/7146
_version_ 1819283539718307840
author I. Barmina
A. Lickrastina
M. Purmalis
M. Zake
R. Valdmanis
J. Valdmanis
A. Arshanitsa
V. Solodovnik
G. Telisheva
author_facet I. Barmina
A. Lickrastina
M. Purmalis
M. Zake
R. Valdmanis
J. Valdmanis
A. Arshanitsa
V. Solodovnik
G. Telisheva
author_sort I. Barmina
collection DOAJ
description Combustion characteristics of microwave (2.45 GHz) pre-treated biomass (wood) pellets are investigated experimentally with the aim to find out the effect of pellets pre-treatment on the biomass composition and the feasibility of their thermo-chemical conversion. A complex study of the main combustion characteristics of the pre-treated biomass samples was carried out using a thermo-gravimetric method and a pilot–scale combustion test facility. The study includes time dependent measurements of mass loss at the primary stage of biomass gasification, variations of the flame temperature and heat production rate, combustion efficiency and composition of pollutants. The results have shown that the low-temperature microwave pre-treatment of wood pellets enriches the biomass carbon content from 50 % to ~ 60 % (d.b.) for biomass pre-treated for 180 s accompanied by the increasing higher heating values (HHV) from 19.9 up to 23.4 MJ/kg. The microwave pre-treatment promotes a faster thermal decomposition of biomass pellets with an enhanced heat energy production (up to 30 %) and a correlating increase of the volume fraction of CO2 in the products up to 25-28 %, while the mass fraction of the main volatiles (CO and H2) in the products decreases, indicating a more complete combustion of the volatiles. The shear of the char combustion stage increases with the increasing pre-treatment time. The data of thermo-gravimetric analysis coincide with the results of the pilot-scale tests.
first_indexed 2024-12-24T01:33:06Z
format Article
id doaj.art-7a652ec920be4fc7871aaf5cdcad1aa7
institution Directory Open Access Journal
issn 2283-9216
language English
last_indexed 2024-12-24T01:33:06Z
publishDate 2012-09-01
publisher AIDIC Servizi S.r.l.
record_format Article
series Chemical Engineering Transactions
spelling doaj.art-7a652ec920be4fc7871aaf5cdcad1aa72022-12-21T17:22:17ZengAIDIC Servizi S.r.l.Chemical Engineering Transactions2283-92162012-09-012910.3303/CET1229150Effect of Biomass High-Frequency Pre-Treatment on Combustion CharacteristicsI. BarminaA. LickrastinaM. PurmalisM. ZakeR. ValdmanisJ. ValdmanisA. ArshanitsaV. SolodovnikG. TelishevaCombustion characteristics of microwave (2.45 GHz) pre-treated biomass (wood) pellets are investigated experimentally with the aim to find out the effect of pellets pre-treatment on the biomass composition and the feasibility of their thermo-chemical conversion. A complex study of the main combustion characteristics of the pre-treated biomass samples was carried out using a thermo-gravimetric method and a pilot–scale combustion test facility. The study includes time dependent measurements of mass loss at the primary stage of biomass gasification, variations of the flame temperature and heat production rate, combustion efficiency and composition of pollutants. The results have shown that the low-temperature microwave pre-treatment of wood pellets enriches the biomass carbon content from 50 % to ~ 60 % (d.b.) for biomass pre-treated for 180 s accompanied by the increasing higher heating values (HHV) from 19.9 up to 23.4 MJ/kg. The microwave pre-treatment promotes a faster thermal decomposition of biomass pellets with an enhanced heat energy production (up to 30 %) and a correlating increase of the volume fraction of CO2 in the products up to 25-28 %, while the mass fraction of the main volatiles (CO and H2) in the products decreases, indicating a more complete combustion of the volatiles. The shear of the char combustion stage increases with the increasing pre-treatment time. The data of thermo-gravimetric analysis coincide with the results of the pilot-scale tests.https://www.cetjournal.it/index.php/cet/article/view/7146
spellingShingle I. Barmina
A. Lickrastina
M. Purmalis
M. Zake
R. Valdmanis
J. Valdmanis
A. Arshanitsa
V. Solodovnik
G. Telisheva
Effect of Biomass High-Frequency Pre-Treatment on Combustion Characteristics
Chemical Engineering Transactions
title Effect of Biomass High-Frequency Pre-Treatment on Combustion Characteristics
title_full Effect of Biomass High-Frequency Pre-Treatment on Combustion Characteristics
title_fullStr Effect of Biomass High-Frequency Pre-Treatment on Combustion Characteristics
title_full_unstemmed Effect of Biomass High-Frequency Pre-Treatment on Combustion Characteristics
title_short Effect of Biomass High-Frequency Pre-Treatment on Combustion Characteristics
title_sort effect of biomass high frequency pre treatment on combustion characteristics
url https://www.cetjournal.it/index.php/cet/article/view/7146
work_keys_str_mv AT ibarmina effectofbiomasshighfrequencypretreatmentoncombustioncharacteristics
AT alickrastina effectofbiomasshighfrequencypretreatmentoncombustioncharacteristics
AT mpurmalis effectofbiomasshighfrequencypretreatmentoncombustioncharacteristics
AT mzake effectofbiomasshighfrequencypretreatmentoncombustioncharacteristics
AT rvaldmanis effectofbiomasshighfrequencypretreatmentoncombustioncharacteristics
AT jvaldmanis effectofbiomasshighfrequencypretreatmentoncombustioncharacteristics
AT aarshanitsa effectofbiomasshighfrequencypretreatmentoncombustioncharacteristics
AT vsolodovnik effectofbiomasshighfrequencypretreatmentoncombustioncharacteristics
AT gtelisheva effectofbiomasshighfrequencypretreatmentoncombustioncharacteristics