A novel waste-to-energy system based on sludge hydrothermal treatment and medical waste plasma gasification and integrated with the waste heat recovery of a …

S Li, H Chen, Y Gao, L Fan, P Pan, G Xu - Energy, 2024 - Elsevier
A hybrid design solution is proposed to improve the waste-to-energy process by
hydrothermal treatment of sludge and plasma gasification of medical waste and combining it …

[HTML][HTML] A techno-economic analysis of future hydrogen reconversion technologies

P Freitag, D Stolle, F Kullmann, J Linssen… - International Journal of …, 2024 - Elsevier
The transformation of fossil fuel-based power generation systems towards greenhouse gas-
neutral ones based on renewable energy sources is one of the key challenges facing …

[HTML][HTML] Life Cycle Assessment of a Wood Biomass Gasification Plant and Implications for Syngas and Biochar Utilization

F Arfelli, C Tosi, L Ciacci, F Passarini - Energies, 2024 - mdpi.com
The growing attention regarding the environmental challenges in the energy sectors pushes
the industrial system toward the investigation of more sustainable and renewable energy …

[HTML][HTML] Conversion of Waste Synthesis Gas to Desalination Catalyst at Ambient Temperatures

DDJ Antia - Waste, 2023 - mdpi.com
In this study, a continuous flow of a synthetic, dry, and acidic waste synthesis gas
(WSG)(containing N2, H2, CO, CH4, and CO2) at ambient temperatures was first passed …

[PDF][PDF] REFORMIERUNG VON INDUSTRIEABGASEN ALS BASIS FÜR E-FUELS ZUR ERREICHUNG DER CO2-NEUTRALITÄT

D REINER, M ORLIĆ, C HOCHENAUER, V SUBOTIĆ - tugraz.at
Die Reformierung, insbesondere die Bi-Reformierung, bietet großes Potential bei der
zukünftigen Emissionsreduktion durch die Verwendung von unvermeidbaren …

[引用][C] Bi-reforming of waste gases as a sustainable preliminary stage in E-fuel production paths