Published February 1, 2023 | Version v1

Data_ Integrating torrefaction of pulp industry sludge with anaerobic digestion to produce bioenergy and biochemicals: Techno-economic and environmental feasibility analysis

  • 1. Chair of Biosystems Engineering, Institute of Forestry and Engineering, Estonian University of Life Sciences

Description

In order to improve the economic competitiveness of bioenergy carriers and biochemicals, they must be produced
from low-cost or no-cost feedstock and at a reduced operational expenses. In that regard, this study
focused on understanding the techno-economic feasibility of using pulp sludge as a low-cost alternative feedstock
to forestry biomass in torrefaction. Economic feasibility of further integrating pulp sludge torrefaction with
anaerobic digestion to produce energy, biomethane and volatile fatty acids (VFA) was also studied. The operational
expenses were around 8.2 and 2.04 M€ and the minimum selling price of torrefied pellets was 407 and
189 €/t for forestry biomass torrefaction and pulp sludge torrefaction respectively. In case of integrated approaches,
VFA production showed higher economic feasibility with a torrefied pellets selling price of 163 €/t
compared with biomethane production (213 €/t). The biomethane and VFA selling price can be reduced by 90
and 64% compared with current market price at torrefied pellets selling price of 260 €/t. Sensitivity analysis
revealed that, moisture content of the sludge is the main influencing parameter on the overall economic feasibility
of the pulp sludge torrefaction. The environmental analysis showed that pulp sludge torrefaction has higher
emissions compared with forestry biomass torrefaction.

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Additional details

Related works

References
Journal article: 10.1016/j.ceja.2023.100463 (DOI)

Funding

European Commission
TOPIS-BioCirc - Integrating torrefaction of pulp and paper industry sludge with microbial conversion: A new approach to produce bioenergy carriers and biochemicals in a view of bio and circular economy. 843723