Combining Biomass Gasification and Solid Oxid Fuel Cell for Heat and Power Generation: An Early-Stage Life Cycle Assessment

Publication date

2020

Authors

Moretti, C.ORCID 0000-0001-5682-287XISNI 000000049291479X
Corona, BlancaORCID 0000-0003-1257-3319ISNI 0000000492848796
Ruhlin, Viola
Götz, Thomas
Junginger, H.M.ORCID 0000-0002-5010-2051ISNI 0000000389848632
Brunner, T.
Obernberger, Ingwald
Shen, LiORCID 0000-0001-9378-7372ISNI 0000000419419098

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Abstract

Biomass-fueled combined heat and power systems (CHPs) can potentially offer environmental benefits compared to conventional separate production technologies. This study presents the first environmental life cycle assessment (LCA) of a novel high-efficiency bio-based power (HBP) technology, which combines biomass gasification with a 199 kW solid oxide fuel cell (SOFC) to produce heat and electricity. The aim is to identify the main sources of environmental impacts and to assess the potential environmental performance compared to benchmark technologies. The use of various biomass fuels and alternative allocation methods were scrutinized. The LCA results reveal that most of the environmental impacts of the energy supplied with the HBP technology are caused by the production of the biomass fuel. This contribution is higher for pelletized than for chipped biomass. Overall, HBP technology shows better environmental performance than heat from natural gas and electricity from the German/European grid. When comparing the HBP technology with the biomass-fueled ORC technology, the former offers significant benefits in terms of particulate matter (about 22 times lower), photochemical ozone formation (11 times lower), acidification (8 times lower) and terrestrial eutrophication (about 26 times lower). The environmental performance was not affected by the allocation parameter (exergy or economic) used. However, the tested substitution approaches showed to be inadequate to model multiple environmental impacts of CHP plants under the investigated context and goal.

Keywords

CHP, biomass, LCA, gasification, SOFC, allocation, multifunctionality, SDG 7 - Affordable and Clean Energy, SDG 12 - Responsible Consumption and Production

Citation

Moretti, C, Corona, B, Ruhlin, V, Götz, T, Junginger, H M, Brunner, T, Obernberger, I & Shen, L 2020, 'Combining Biomass Gasification and Solid Oxid Fuel Cell for Heat and Power Generation : An Early-Stage Life Cycle Assessment', Energies, vol. 13, no. 11, 2773. https://doi.org/10.3390/en13112773