Parametric Gasification of Oak and Pine Feedstocks Using the TCPDU and Slipstream Water-Gas Shift Catalysis | |
Hrdlicka, J. ; Feik, C. ; Carpenter, D. ; Pomeroy, M. | |
关键词: BIOMASS; CATALYSIS; GASIFICATION; HYDROGEN; HYDROGEN PRODUCTION; LIQUID FUELS; PROCESS DEVELOPMENT UNITS; TESTING; WATER GAS OAK FEEDSTOCK; PINE FEEDSTOCK; PARAMETRIC GASIFICATION; THERMOCHEMICAL PROCESS DEVELOPMENT UNIT; TCPDU; SLIPSTREAM; WATER-GAS SHIFT CATALYSIS; GASIFICATION OF BIOMASS TO HYDROGEN; FULL STREAM REFORMER; FSR; STEAM-TO-BIOMASS RATIO; THERMAL CRACKER TEMPERATURE; HYDROGEN CONCENTRATION; BIOMASS; THERMOCHEMICAL CONVERSION; LIQUID FUELS; Bioenergy; | |
DOI : 10.2172/944893 RP-ID : NREL/TP-510-44557 PID : OSTI ID: 944893 Others : TRN: US200902%%1149 |
|
美国|英语 | |
来源: SciTech Connect | |
【 摘 要 】
With oak and pine feedstocks, the Gasification of Biomass to Hydrogen project maximizes hydrogen production using the Full Stream Reformer during water-gas shift fixed-bed reactor testing. Results indicate that higher steam-to-biomass ratio and higher thermal cracker temperature yield higher hydrogen concentration. NREL's techno-economic models and analyses indicate hydrogen production from biomass may be viable at an estimated cost of $1.77/kg (current) and $1.47/kg (advanced in 2015). To verify these estimates, NREL used the Thermochemical Process Development Unit (TCPDU), an integrated system of unit operations that investigates biomass thermochemical conversion to gaseous and liquid fuels and chemicals.
【 预 览 】
Files | Size | Format | View |
---|---|---|---|
RO201705180000243LZ | 1397KB | download |