Energy Analysis and Heat Integration in the Joint Process of Biomass Fast Pyrolysis and In Line Sorption Enhanced Steam Reforming
Pablo Comendador,
Laura Santamaria,
Maider Amutio
et al.
Abstract:Biomass Fast Pyrolysis and in line Steam Reforming (PY-SR) is promising alternative for H 2 production. However, there are potential strategies for intensifying the process, such as capturing the CO 2 in situ in the reforming step, which is so-called Sorption Enhanced Steam Reforming (SESR). Both PY-SR and PY-SESR were simulated using a thermodynamic approach and empirical correlations, and they were compared based on the energy requirements, H 2 production, and H 2 purity at different temperatures (500−800 °C… Show more
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