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生物质制氢和合成气的高效生产:纤维素气化低温催化工艺的开发。

Energy efficient production of hydrogen and syngas from biomass: development of low-temperature catalytic process for cellulose gasification.

作者信息

Asadullah Mohammad, Ito Shin-ichi, Kunimori Kimio, Yamada Muneyoshi, Tomishige Keiichi

机构信息

Institute of Materials Science, University of Tsukuba, Ibaraki, Japan.

出版信息

Environ Sci Technol. 2002 Oct 15;36(20):4476-81. doi: 10.1021/es020575r.

Abstract

The Rh/CeO2/M (M = SiO2, Al2O3, and ZrO2) type catalysts with various compositions have been prepared and investigated in the gasification of cellulose, a model compound of biomass, in a fluidized bed reactor at 500-700 degrees C. The conventional nickel and dolomite catalysts have also been investigated. Among the catalysts, Rh/CeO2/SiO2 with 35% CeO2 has been found to be the best catalyst with respect to the carbon conversion to gas and product distribution. The steam addition contributed to the complete conversion of cellulose to gas even at 600 degrees C. Lower steam supply gave the syngas and higher steam supply gave the hydrogen as the major product. Hydrogen and syngas from cellulose or cellulosic biomass gasification are environmentally super clean gaseous fuels for power generation. Moreover, the syngas derived liquid fuels such as methanol, dimethyl ether, and synthetic diesels are also super clean transportation fuels. However, the use of cellulose or cellulosic biomass for energy source through the gasification is challenging because of the formation of tar and char during the gasification process. It is interesting that no tar or char was finally formed in the effluent gas at as low as 500-600 degrees C using Rh/CeO2/SiO2(35) catalyst in this process.

摘要

制备了具有不同组成的Rh/CeO2/M(M = SiO2、Al2O3和ZrO2)型催化剂,并在500 - 700℃的流化床反应器中对生物质的模型化合物纤维素的气化过程进行了研究。还研究了传统的镍和白云石催化剂。在这些催化剂中,发现含35% CeO2的Rh/CeO2/SiO2是在碳转化为气体和产物分布方面表现最佳的催化剂。添加蒸汽有助于即使在600℃时纤维素也能完全转化为气体。较低的蒸汽供应量产生合成气,而较高的蒸汽供应量则以氢气作为主要产物。纤维素或纤维素生物质气化产生的氢气和合成气是用于发电的环境超清洁气体燃料。此外,由合成气衍生的液体燃料,如甲醇、二甲醚和合成柴油,也是超清洁的运输燃料。然而,由于在气化过程中会形成焦油和焦炭,通过气化将纤维素或纤维素生物质用作能源具有挑战性。有趣的是,在此过程中使用Rh/CeO2/SiO2(35)催化剂,即使在低至500 - 600℃的情况下,最终废气中也不会形成焦油或焦炭。

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