汪俊锋, 常 杰, 阴秀丽, 付 严. 生物质气催化合成甲醇的研究[J]. 燃料化学学报(中英文), 2005, 33(01): 58-61.
引用本文: 汪俊锋, 常 杰, 阴秀丽, 付 严. 生物质气催化合成甲醇的研究[J]. 燃料化学学报(中英文), 2005, 33(01): 58-61.
WANG Jun-feng, CHANG Jie, YIN Xiu-li, FU Yan. 生物质气催化合成甲醇的研究[J]. Journal of Fuel Chemistry and Technology, 2005, 33(01): 58-61.
Citation: WANG Jun-feng, CHANG Jie, YIN Xiu-li, FU Yan. 生物质气催化合成甲醇的研究[J]. Journal of Fuel Chemistry and Technology, 2005, 33(01): 58-61.

生物质气催化合成甲醇的研究

生物质气催化合成甲醇的研究

  • 摘要: 在高压微型反应装置上进行了生物质气合成甲醇的研究。利用组成为H2/CO/CO2/N2(体积比)=52.5/21.5/22.8/3.2 的富CO2原料气考察了不同温度、压力和空速条件时甲醇的时空产率和质量分数。结果表明,在所考察的范围内,甲醇的产率和质量分数在260 ℃达到最大。产率和质量分数随反应压力升高而增大,空速增加使产率增大,甲醇的质量分数降低。当p=4 MPa,t=260 ℃,WHSV=5 280 h-1时, 甲醇的时空产率为0.79 g·(mL·h)-1,质量分数为96.2%,与工业合成气相比,分别下降25.8%和1.64%。

     

    Abstract: The synthesis of methanol from CO2- rich syngas derived from biomass was carried out in a high pressure micro-reactor system. The effect of temperature, pressure and space velocity on space time yield (STY) and concentration of methanol was studied using a feed gas with H2 (52.5%), CO (21.5%), CO2 (22.8%) and N2 (3.2%). The results show that both STY and concentration of methanol increase with temperature and reaches maximum at 260 ℃, and then decreases. Higher pressure results in higher STY and concentration of methanol. STY increases and methanol concentration decreases under higher space velocity. The STY is 0.79 g·mL-1h-1 and methanol concentration is 96.2% under the conditions of 4 MPa, 260 ℃ and 5 280 h-1. Compared with the results of methanol synthesis using CO-rich industrial syngas, the STY and concentration of methanol decreases by 25.8% and 1.64% respectively. In order to improve efficiency of the whole system, off-gas can be used to produce electricity.

     

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