This work focuses on the experimental investigation of the entrained flow gasification of biocoal from hydrothermal carbonization using air as the gasification agent. Pyrolysis and gasification experiments are performed under entrained flow conditions with varying operating parameters and influences on the conversion behavior of the fuels, the syngas composition and the generation of tars are investigated. Furthermore, the reaction kinetics of pyrolysis chars are analyzed in more detail and 1D simulations models of the autothermal gasification are validated.
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This work focuses on the experimental investigation of the entrained flow gasification of biocoal from hydrothermal carbonization using air as the gasification agent. Pyrolysis and gasification experiments are performed under entrained flow conditions with varying operating parameters and influences on the conversion behavior of the fuels, the syngas composition and the generation of tars are investigated. Furthermore, the reaction kinetics of pyrolysis chars are analyzed in more detail and 1D s...
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