A new practical approach is presented that can be used in the selection procedure of a proper biomass material for gasification purposes.First using numerical simulation of the gasification process for a wide variety of biomass materials, a series of contours for syngas characteristics are produced. Contours are plotted with respect to the biomass oxygen content and C:H ratio for syngas HHV, CGE, CCE, and temperature. While CGE, CCE, and temperature are mainly affected by biomass oxygen content, the HHV changes mostly under the effect of C:H ratio. Instead of using a trial and error approach to select a biomass material for gasification purposes, the presented plots in this paper can be utilized to more easily and more accurately choose a feedstock while being sure that its gasification under given operating conditions
results in a syngas with the desired gasification characteristics
A new practical approach is presented that can be used in the selection procedure of a proper biomass material for gasification purposes.First using numerical simulation of the gasification process for a wide variety of biomass materials, a series of contours for syngas characteristics are produced. Contours are plotted with respect to the biomass oxygen content and C:H ratio for syngas HHV, CGE, CCE, and temperature. While CGE, CCE, and temperature are mainly affected by biomass oxygen content, the HHV changes mostly under the effect of C:H ratio. Instead of using a trial and error approach to select a biomass material for gasification purposes, the presented plots in this paper can be utilized to more easily and more accurately choose a feedstock while being sure that its gasification under given operating conditionsresults in a syngas with the desired gasification characteristics
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