Pelleting torrefied biomass at pilot-scale – Quality and implications for co-firing
Creators
- 1. Swedish University of Agricultural Sciences
- 2. Laboratoire RAGT Energie, Zone Innoprod, Chemin de La Teulière, 81000, Albi, France
- 3. University of Grenoble
- 4. French Alternative Energies and Atomic Energy Commission
- 5. Federal Communications Bar Association
- 6. UNESCO-IHE Institute for Water Education
Description
The co-firing of solid biofuels in coal plants is an attractive and fast-track means of cutting emissions but its potential is linked to biomass densification. For torrefied materials this topic is under-represented in literature. This pilot-scale (121-203 kg h(-1)) pelleting study generated detailed knowledge on the densification of torrefied biomass compared to untreated biomass. Four feedstock with high supply availability (beech, poplar, wheat straw and corn cob) were studied in their untreated and torrefied forms. Systematic methods were used to produce 180 batches of 8 mm dia. pellets using press channel length (PCL) and moisture content (MC) ranges of 30-60 mm and 7.3-16.6% (wet basis) respectively. Analysis showed that moderate degrees of torrefaction (250-280 degrees C, 20-75 min) strongly affected pelleting behaviour. The highest quality black pellets had a mechanical durability and bulk density range of 87.5-98.7% and 662-697 kg m(-3) respectively. Pelleting energy using torrefied feedstock varied from -15 to +53 kWh t(-1) from untreated with increases in production fines. Optimal pelleting MC and PCL were reduced significantly for torrefied feedstock and pellet quality was characterised by a decrease in mechanical durability and an increase in bulk density. Energy densities of 11.9-13.2 GJ m(-3) (as received) were obtained. (C) 2021 The Authors. Published by Elsevier Ltd.
Open Access
Licence Attribution (CC BY)
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Publication Details
Journal article
Persistent Identifiers
MAGID
3173806346
DOI
10.1016/j.renene.2021.06.094
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Funding
Financial Support
Horizon 2020 — Grant: ANR-11-EQPX-0019
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Horizon 2020 — Grant: 637020
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Agence Nationale de la Recherche — Grant: ANR-11-EQPX-0019
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Agence Nationale de la Recherche — Grant: 637020
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Horizon 2020 — Grant: ANR-11-EQPX-0019
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Horizon 2020 — Grant: 637020
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Jarvinen . Experimentally determined storage and handling properties of fuel pel...
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