Daiana Gotardo Martinez, Lígia Gomes Oliveira, Matheus Henrique Zanardini, Matheus Ribeiro de Jesus Cerqueira, João Pedro Jenson de Oliveira, Fabio Coutinho Antunes, Gustavo Doubek, Hudson Zanin, Julian David Hunt
High Resolution Image Download MS PowerPoint Slide This paper provides a brief review of biogas contaminants, examining the impact of hydrogen sulfide (H 2 S), nitrogen (N 2 ), and ammonia (NH 3 ) on catalytic reforming processes and Solid Oxide Fuel Cells (SOFCs) electricity generation. Biogas, produced through anaerobic digestion (AD), is a promising renewable energy source that can be upgraded into biomethane and reformed into H 2 -rich syngas for SOFCs. Despite this, contaminants like H 2 S found in biogas and biomethane cause critical issues such as catalyst poisoning, decreased electrochemical performance, and higher maintenance costs, while NH 3, potentially formed from N 2 during reforming, can lead to catalyst degradation and reduced SOFC performance, representing an underexplored contamination pathway. This review highlights the negative impacts of H 2 S, N 2, and NH 3 on catalytic reforming and SOFCs, causing catalyst deactivation and performance loss, thus reinforcing the importance of developing advanced purification methods and sulfur-tolerant materials to improve renewable hydrogen (H 2 ) production and fuel cell durability.