Shie Je-Lueng, Tsou Feng-Ju, Lin Kae-Long, Chang Ching-Yuan
Department of Environmental Engineering, National I-Lan University, No. 1, Sec. 1, Shen-Lung Road, I-Lan 260, Taiwan.
Bioresour Technol. 2010 Jan;101(2):761-8. doi: 10.1016/j.biortech.2009.08.072. Epub 2009 Sep 18.
The aim of this work was to study the feasibility and operation performance of plasma torch pyrolysis of biomass wastes, taking rice straw as the target material. This novel method has several advantages including high heating rate, short heating time, no viscous tar and low residual char (7.45-13.78 wt.%) or lava. The productions of CO and H(2) are the major components (91.85-94.14 vol.%) in the gas products with relatively high reaction rates. The maximum concentrations of gaseous products occurring times are all below 1 min. Almost 90% of gaseous products were appeared in 4 min reaction time. The yield of H(2) increases with the increase of input power or temperature. With the increase of moisture (5-55 wt.%), the mass yields of H(2) and CO(2) also increase from the H(2)O decomposition. However, due to the CO(2) production, the accumulated volume fraction of syngas decreases with the increase of moisture.
这项工作的目的是以稻草为目标材料,研究生物质废弃物等离子体炬热解的可行性和运行性能。这种新方法具有几个优点,包括加热速率高、加热时间短、无粘性焦油且残余焦炭(7.45 - 13.78 wt.%)或熔渣含量低。CO和H₂是气体产物中的主要成分(91.85 - 94.14 vol.%),反应速率相对较高。气态产物出现时间的最大浓度均低于1分钟。几乎90%的气态产物在4分钟的反应时间内出现。H₂的产率随输入功率或温度的升高而增加。随着水分含量(5 - 55 wt.%)的增加,H₂O分解产生的H₂和CO₂的质量产率也增加。然而,由于CO₂的产生,合成气的累积体积分数随水分的增加而降低。