Catalytic Methanation of CO2-Lean Gas from Sorption-Enhanced Pyrolysis of Sewage Sludge

CO2-lean pyrolysis streams from processing industrial or municipal by-products, such as sewage sludge, were tested for catalytic methanation in a bench-scale laboratory plant over a temperature range of 300–450 °C and atmospheric pressure. Two home-made Ni-based catalysts supported on both cordierite and activated vegetable carbon were tested against a commercial Ni catalyst formulation, at a space velocity variable between 250 and 1000 h−1. Quantitative CO conversions were detected at 350 and 400 °C for the Ni catalysts supported on cordierite and activated carbon, despite CO2 conversion values being averagely low. Methane selectivity approached values up to 90%, accounting for a relative content up to 80 mol% in the outlet methanation mixture. Overall, the cascade integration of a pyrolysis step for processing sewage sludge into a CO2-lean gaseous stream feeding a catalytic methanation reactor was successfully demonstrated, with the whole chain representing a viable strategy to dispose of by-products and produce bio-synthetic natural gas.

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Publication Details

Journal
Fuels
Published
2026-09-24
DOI
https://doi.org/10.3390/fuels7040065
Primary Topic
Catalysts for Methane Reforming
Type
article
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article

Catalytic Methanation of CO2-Lean Gas from Sorption-Enhanced Pyrolysis of Sewage Sludge

Giacinto Cornacchia, Giacobbe Braccio, Cesare Freda, Serena Todaro et al.
Fuels
Catalysts for Methane Reforming
article

Catalytic Methanation of CO2-Lean Gas from Sorption-Enhanced Pyrolysis of Sewage Sludge

Giacinto Cornacchia, Giacobbe Braccio, Cesare Freda, Serena Todaro, Mario Samperi, Emanuele Fanelli, Catia Cannilla, Giuseppe Bonura, Alessandro Cajumi
article en

Abstract

CO2-lean pyrolysis streams from processing industrial or municipal by-products, such as sewage sludge, were tested for catalytic methanation in a bench-scale laboratory plant over a temperature range of 300–450 °C and atmospheric pressure. Two home-made Ni-based catalysts supported on both cordierite and activated vegetable carbon were tested against a commercial Ni catalyst formulation, at a space velocity variable between 250 and 1000 h−1. Quantitative CO conversions were detected at 350 and 400 °C for the Ni catalysts supported on cordierite and activated carbon, despite CO2 conversion values being averagely low. Methane selectivity approached values up to 90%, accounting for a relative content up to 80 mol% in the outlet methanation mixture. Overall, the cascade integration of a pyrolysis step for processing sewage sludge into a CO2-lean gaseous stream feeding a catalytic methanation reactor was successfully demonstrated, with the whole chain representing a viable strategy to dispose of by-products and produce bio-synthetic natural gas.

FuelsVol. 7(4)
Institute for Advanced Energy Technologies (IT), National Agency for New Technologies Energy and Sustainable Economic Development (GB)
Clean water and sanitation
Openalex Percentile: Top 32%
Catalysts for Methane Reforming
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Catalytic Methanation of CO2-Lean Gas from Sorption-Enhanced Pyrolysis of Sewage Sludge — Giacinto Cornacchia, Giacobbe Braccio, et al. · Fuels (2026) | TGRS Research Map | TGRS