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还原空速对Fe/Cu/K/SiO2催化剂浆态床F-T合成性能的影响
引用本文:郝庆兰,白亮,相宏伟,李永旺,易凡,徐斌富.还原空速对Fe/Cu/K/SiO2催化剂浆态床F-T合成性能的影响[J].化工学报,2006,57(2):324-330.
作者姓名:郝庆兰  白亮  相宏伟  李永旺  易凡  徐斌富
作者单位:中国科学院山西煤炭化学研究所煤转化国家重点实验室,山西 太原 030001;中国科学院研究生院, 北京 100039;武汉大学物理系,湖北 武汉 430072 ;
基金项目:国家重点基础研究发展计划(973计划) , 中国科学院知识创新工程项目 , 中国科学院资助项目
摘    要:在浆态床反应器中详细考察了合成气还原空速对微球状工业铁基催化剂还原和反应后的物相以及F-T合成反应性能的影响. 研究结果表明:空速能够影响铁基催化剂还原反应进程,催化剂在较高的空速下易被还原,还原后催化剂的比表面积降低,平均孔径增大. 在较低空速下还原时,还原形成的高的CO2分压对铁物相有一定的氧化作用,使得还原态催化剂中的Fe3+(spm)含量增大. 还原空速对F-T合成烃产物分布影响不明显,但对催化剂的反应活性和运行稳定性影响较大,较低和较高空速还原后的催化剂失活速率均较高,适宜的还原空速为1.0~2.0 L•(g cat)-1•h-1.

关 键 词:F-T合成  浆态床反应器  铁基催化剂  喷雾干燥  还原预处理
文章编号:0438-1157(2006)02-0324-07
收稿时间:02 2 2005 12:00AM
修稿时间:2005-02-022005-06-06

Effect of space velocity in syngas reduction on performance of Fe/Cu/K/SiO2 catalyst for slurry phase Fischer-Tropsch synthesis
HAO Qinglan,BAI Liang,XIANG Hongwei,LI Yongwang,YI Fan,XU Binfu.Effect of space velocity in syngas reduction on performance of Fe/Cu/K/SiO2 catalyst for slurry phase Fischer-Tropsch synthesis[J].Journal of Chemical Industry and Engineering(China),2006,57(2):324-330.
Authors:HAO Qinglan  BAI Liang  XIANG Hongwei  LI Yongwang  YI Fan  XU Binfu
Abstract:The effects of space velocity in syngas reduction on the reaction performance of the Fischer-Tropsch synthesis (FTS)over a spray-dried spherical Fe/Cu/K/SiO2 catalyst and on the bulk compositions of the reduced and used catalysts were investigated in a continuous stirred slurry reactor under reaction conditions of 250—280 ℃, 1.5 MPa, H2/CO=0.67 and 2.0 L•(g cat)-1•h-1. The results showed that the BET surface area of the reduced catalysts decreased with the increase of the space velocity in reduction, and the reverse trend for the average pore diameter was observed. The space velocity in syngas reduction did affect the reduction process. The catalyst was easier to be reduced at a higher space velocity. The higher partial pressure of CO2 in slurry reactor during reduction could partially oxidize the iron carbide. And the content of Fe3+(spm) was higher in the reduced catalyst. The space velocity in syngas reduction had no obvious effect on the hydrocarbon selectivity, and the effect of the space velocity in syngas reduction on the catalyst activity and stability was significant. The deactivation rate of the catalyst was higher at both lower and higher space velocity. The appropriate space velocity in syngas reduction was 1.0—2.0 L•(g cat)-1•h-1.
Keywords:Fischer-Tropsch synthesis  slurry reactor  iron-based catalyst  spray-drying technology  reduction pretreatment
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