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Biomass-to-liquid : an anaerobic digestion and pyrolysis coupling for methanol production

Francesco Giambalvo

Biomass-to-liquid : an anaerobic digestion and pyrolysis coupling for methanol production.

Rel. Massimo Santarelli, Lasse Røngaard Clausen, Giacomo Butera. Politecnico di Torino, Corso di laurea magistrale in Ingegneria Energetica E Nucleare, 2023

Abstract:

The imperative to mitigate climate change necessitates a reduction in carbon dioxide (CO2) emissions. To address the pressing need to mitigate climate change, a systemic and organic approach is essential, leveraging the opportunities that arise from linking different sectors and technologies. This thesis aims to describe an Integrated System consisting of an anaerobic digester, a slow pyrolysis reactor, and an electrolyser, all with the primary objective of producing syngas. The system includes the process of converting syngas into methanol. The main scheme takes its cue from an actual plant, under construction in Denmark, by Stiesdal SkyClean, a branch of the Stiesdal company. The digestate, instead of being spread on the land, is used as biomass input to the pyrolysis reactor. Biochar is produced as a by-product, considered a carbon sink when introduced in the soil, also bringing beneficial effects to the latter. Six possible configurations have been modelled, and the pros and cons of each configuration have been investigated. For each model, the first part of the plant has been done on DNA (dynamic network analysis), an open-source software developed by DTU. On the other hand, the methanol production has been modelled on Aspen Plus. Finally, an economic analysis has been conducted, to find the most profitable configuration, including a sensitivity analysis.

Relators: Massimo Santarelli, Lasse Røngaard Clausen, Giacomo Butera
Academic year: 2022/23
Publication type: Electronic
Number of Pages: 115
Additional Information: Tesi secretata. Fulltext non presente
Subjects:
Corso di laurea: Corso di laurea magistrale in Ingegneria Energetica E Nucleare
Classe di laurea: New organization > Master science > LM-30 - ENERGY AND NUCLEAR ENGINEERING
Aziende collaboratrici: Technical University of Denmark
URI: http://webthesis.biblio.polito.it/id/eprint/27381
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