Unravelling the significance of catalyst reduction stage for high tar reforming activity in the presence of syngas impurities
Author:
Publisher
Elsevier BV
Subject
Process Chemistry and Technology,Catalysis
Reference74 articles.
1. A hot syngas purification system integrated with downdraft gasification of municipal solid waste
2. Tar formation and evolution during biomass gasification: An experimental and theoretical study
3. Tar reduction in biomass producer gas via mechanical, catalytic and thermal methods: A review
4. Recent progresses in catalytic tar elimination during biomass gasification or pyrolysis—A review
5. Reforming of tar from biomass gasification in a hybrid catalysis-plasma system: A review
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2. Evaluation of a novel nickel ceramic filter prepared by urea precipitation method for removal of tars from biomass syngas using naphthalene as tar model compound;Journal of the Energy Institute;2024-06
3. Tar Formation in Gasification Systems: A Holistic Review of Remediation Approaches and Removal Methods;ACS Omega;2024-01-04
4. Catalytic Activity and Coke Resistance of Gasification Slag-Supported Ni Catalysts during Steam Reforming of Plastic Pyrolysis Gas;ACS Sustainable Chemistry & Engineering;2022-12-14
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