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Experimental Study of Sawdust Syngas Gasification in Bench-Scale Gasifier and Three-Dimensional Numerical Analysis for Syngas Cocombustion in a 600 MW Coal-Fired Boiler Furnace. | LitMetric

AI Article Synopsis

  • The study investigates syngas cocombustion technology through bench-scale gasification experiments and 3D simulations of a coal-fired boiler, focusing on biomass gasification using sawdust with various oxidants.* -
  • The optimal conditions for gasification produced syngas with a maximum heating value of 12.3 MJ/m, influenced by specific equivalence and steam-to-biomass ratios.* -
  • Results indicate that syngas cocombustion leads to a more efficient combustion environment, lowering temperature peaks and reducing NO emissions by 25-40 mg/m compared to pure coal combustion.*

Article Abstract

To comprehensively explore syngas cocombustion technology, gasification experiments in a bench-scale circulating fluidized bed (CFB) and three-dimensional (3D) numerical simulations of a coal-fired boiler furnace have been conducted. In the amplification experiment of biomass gasification, sawdust has been gasified using air, oxygen-enriched air, and steam. The highest heating value of the syngas products reaches 12.3 MJ/m when the equivalence and steam/biomass ratios are adjusted in the ranges of 0.21-0.31 and 0.1-0.5, respectively. Subsequently, 3D numerical simulation has been performed with several kinds of syngas product to analyze the cocombustion characteristics of the boiler furnace. Results demonstrate that the velocity field of the boiler furnace exhibits a well-formed tangential velocity circle and full degree of streamlines. Syngas cocombustion in the coal-fired furnace reduces the temperature extremum in the combustion zone. Radiant heat flux accounts for >88% of the total heat flux in the furnace. The outlet NO concentration in the case of syngas cocombustion is less than that of pure coal combustion, and it is reduced approximately 25 and 40 mg/m at cocombustion ratios of 0.1 and 0.15, respectively.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11656383PMC
http://dx.doi.org/10.1021/acsomega.4c06787DOI Listing

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