2022
DOI: 10.1007/s10668-022-02279-6
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Recent approaches on the optimization of biomass gasification process parameters for product H2 and syngas ratio: a review

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Cited by 7 publications
(2 citation statements)
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“…Several factors influence the gasification process, including biomass composition, particle size, gasification temperature, residence time, and gasification agent [240,241]. To optimize gasification performance, research efforts have focused on improving reactor design, developing efficient catalysts, and exploring novel biomass pretreatment techniques [242][243][244]. Integration of gasification with other processes, such as gas cleaning and syngas upgrading, further enhances the overall efficiency and environmental sustainability of the biomass conversion process [245,246].…”
Section: Gasification and Pyrolysismentioning
confidence: 99%
“…Several factors influence the gasification process, including biomass composition, particle size, gasification temperature, residence time, and gasification agent [240,241]. To optimize gasification performance, research efforts have focused on improving reactor design, developing efficient catalysts, and exploring novel biomass pretreatment techniques [242][243][244]. Integration of gasification with other processes, such as gas cleaning and syngas upgrading, further enhances the overall efficiency and environmental sustainability of the biomass conversion process [245,246].…”
Section: Gasification and Pyrolysismentioning
confidence: 99%
“…Biomass composition and slurry concentration (also known as biomass-to-water ratio) are other potential parameters affecting the yield, quality, heating value of the produced gas, and carbon/hydrogen gasification efficiency [89]. However, the significance of these parameters is less compared to reaction temperature and pressure [38].…”
Section: Biomass Composition and Slurry Concentrationmentioning
confidence: 99%