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- W4310985426 abstract "The dual-stage ignition biomass downdraft gasifier is an enormous tar reduction technology as against a single-stage ignition biomass gasification. Exergetic analysis of the system guides toward a possible performance enhancement. In dual-stage gasification, around 67.76% of input exergy is destructed in the several components, while 9.16% is obtained as a useful exergy output and 24.34% is found to be as a useful energy output there. The entire unit was assessed with a progressively rising electric load from 15.24 kW to 38.86 kW. The enhanced producer gas quality comes from 57% combustible gas with a higher heating value of 6.524 MJ/Nm3 and tar content of 7 mg/Nm3 after the paper filter, whereas the biomass consumption rate is 58 kg/h at the greatest load with the grate temperature of 1310–1370 °C. The samples of exhaust gas emissions are obtained environmentally favorable. The results even described that the dual-stage ignition biomass downdraft gasifier has significantly greater energetic and exergetic efficiency as compared to the single-stage gasifier." @default.
- W4310985426 created "2022-12-22" @default.
- W4310985426 creator A5054299571 @default.
- W4310985426 date "2023-03-01" @default.
- W4310985426 modified "2023-09-26" @default.
- W4310985426 title "First and second law thermodynamic analysis of a single and dual-stage ignition biomass downdraft gasifier" @default.
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- W4310985426 doi "https://doi.org/10.1016/j.ijhydene.2022.11.194" @default.
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