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1还原工艺对费托合成铁基催化剂反应性能的影响显示文摘为获得还原参数对铁基费托合成反应性能的影响规律,利用铁基催化剂,在固定床反应器中考察还原氢碳比、温度、空速和压力对催化剂物理性能以及费托合成反应性能的影响。结果表明,在不同的还原工艺下,还原后的铁基催化剂比表面积下降,平均孔径增大;还原氢碳比和还原压力的升高抑制了催化剂的活性,CH_4和CO_2的选择性及C_2~C_4含量升高,C_(5+)含量下降,烃分布向轻质烃分布;还原温度和还原空速的增加有利于提高催化剂活性,还原温度的提高促使烃分布向轻质烃分布,还原空速的提高对产品分布影响不大。朱加清 程萌 常海 林泉 张魁 武鹏 2016洁净煤技术2016,22,5:5
2Effect of mass transfer limitations on catalyst performance during reduction and carburization of iron based Fischer-Tropsch synthesis catalysts显示文摘Existence of intraparticle mass transfer limitations under typical Fischer-Tropsch synthesis has been reported previously,but there is no suitable study on the existence of intraparticle diffusion limitations under pretreatment steps (reduction and activation) and their effect on catalytic performance for iron based catalysts.In this study,Fe-Cu-La-SiO2 catalysts were prepared by co-precipitation method.To investigate the intraparticle mass transfer limitation under reduction,activation and reaction steps,and its effect on catalytic performance,catalyst pellets with different sizes of 6,3,1 and 0.5 mm have been prepared.All catalysts were calcined,pretreated and tested under similar conditions.The catalysts were activated in hydrogen (5%H2in N2) at 450℃ for 3 h and exposed to syngas (H2/CO=1) at 270℃ and atmospheric pressure for 40 h.Afterwards,FTS reaction tests were performed for approximately 120 h to reach steady state conditions at 290℃,17 bar and a feed flow (syngas H2/CO=1) rate of 3 L/h (STP).Using small pellets resulted in higher CO conversion,FT reaction rate and C5+ productivity as compared with larger pellets.The small pellets reached steady state conditions just 20 h after starting the reaction.Whereas for larger pellets,CO conversion,FT reaction rate and C5+ productivity increased gradually,and reached steady state and maximum values after 120 h of operation.The results illustrate that mass transfer limitations exist not only for FTS reaction but also for the reduction and carburization steps which lead to various phase formation through catalyst activation.Also the results indicate that some effects of mass transfer limitations in activation step,can be compensated in the reaction step.The results can be used for better design of iron based catalyst to improve the process economy.Akbar Zamaniyan Yadollah Mortazavi Abbas Ali Khodadadi Ali Nakhaei Pour 2013Journal of Energy Chemistry2013,22,5:1
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