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现代化工  2020, Vol. 40 Issue (9): 56-60,65    DOI: 10.16606/j.cnki.issn0253-4320.2020.09.012
  技术进展 本期目录 | 过刊浏览 | 高级检索 |
费托合成钴基催化剂助剂研究进展
黄礼春1,2, 王缠和2, 周建强2, 索海云3, 燕来1,3
1. 鄂尔多斯大路煤化工研究所, 内蒙古 鄂尔多斯 010321;
2. 中科合成油内蒙古有限公司, 内蒙古 鄂尔多斯 010321;
3. 中科合成油技术有限公司, 北京 101407
Research progress in promoters of cobalt-based catalysts for Fischer-Tropsch synthesis
HUANG Li-chun1,2, WANG Chan-he2, ZHOU Jian-qiang2, SUO Hai-yun3, YAN Lai1,3
1. Ordos Dalu Institute of Coal Chemical Industry, Ordos 010321, China;
2. Synfuels China Inner Mongolia Co., Ltd., Ordos 010321, China;
3. Synfuels China Technology Co., Ltd., Beijing 101407, China
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摘要 针对助剂对钴基催化剂的促进作用,介绍了近年来钴基催化剂助剂的研究进展。综述了助剂添加方式、助剂功能和助剂作用、详细分析了助剂对钴基催化剂的还原度、分散度、稳定性和费托反应性能的影响、重点讨论了助剂的结构作用、电子作用和协同作用,并对今后催化剂的研究提出了一些建议。
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黄礼春
王缠和
周建强
索海云
燕来
关键词:  助剂  钴基催化剂  费托合成    
Abstract: Focus on the promotive effect of promotors to cobalt-based catalysts,the research progress in promoters of cobalt-based catalysts for Fischer-Tropsch synthesis is reviewed.The adding mode of promoters,promotion functions and promotion effects are summarized.Influences of different promoters on cobalt-based catalysts' reducibility,dispersion,stability and catalytic performance in Fischer-Tropsch synthesis are analyzed.Discussion is emphasized on the structural effects,electronic effects,and synergistic effects of promoters.Some suggestions are proposed for future research of catalysts.
Key words:  promoters    cobalt-based catalyst    Fischer-Tropsch synthesis
收稿日期:  2019-11-28      修回日期:  2020-06-28          
ZTFLH:  TQ138.11  
基金资助: 鄂尔多斯市科技计划
通讯作者:  燕来(1977-),男,博士,高级工程师,研究方向为煤化工,通讯联系人,0477-4853747,yanlai@synfuelschina.com.cn。    E-mail:  yanlai@synfuelschina.com.cn
作者简介:  黄礼春(1983-),男,博士,高级工程师,研究方向为煤化工,0477-4853747,huanglichunno1@163.com
引用本文:    
黄礼春, 王缠和, 周建强, 索海云, 燕来. 费托合成钴基催化剂助剂研究进展[J]. 现代化工, 2020, 40(9): 56-60,65.
HUANG Li-chun, WANG Chan-he, ZHOU Jian-qiang, SUO Hai-yun, YAN Lai. Research progress in promoters of cobalt-based catalysts for Fischer-Tropsch synthesis. Modern Chemical Industry, 2020, 40(9): 56-60,65.
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https://www.xdhg.com.cn/CN/10.16606/j.cnki.issn0253-4320.2020.09.012  或          https://www.xdhg.com.cn/CN/Y2020/V40/I9/56
[1] 张碧江.煤基合成液体燃料[M].太原:山西科学技术出版社,1995:84-85.
[2] Fischer F,Tropsch H.The preparation of synthetic oil mixtures (synthol) from carbon monoxide and hydrogen[J].Brennstoff Chem,1923,4:276-285.
[3] Morales F,Weckhuysen B M.Promotion effects in Co-based Fischer-Tropsch catalysis[M].RSC Publishing,2006:1-40.
[4] Cook K M,Perez H D,Bartholomew C H,et al.Effect of promoter deposition order on platinum-,ruthenium-,or rhenium-promoted cobalt Fischer-Tropsch catalysts[J].Appl Catal A,2014,482:275-286.
[5] Zhao Z,Lu W,Feng C H,et al.Increasing the activity and selectivity of Co-based FTS catalysts supported by carbon materials for direct synthesis of clean fuels by the addition of chromium[J].J Catal,2019,370:251-264.
[6] Miyazawa T,Hanaoka T,Shimura K,et al.Mn and Zr modified Co/SiO2 catalysts development in slurry-phase Fischer-Tropsch synthesis[J].Appl Catal A,2013,467:47-54.
[7] De La Osa A R,De Lucas A,Valverde J L,et al.Influence of alkali promoters on synthetic diesel production over Co catalyst[J].Catal Today,2011,167:96-106.
[8] Ishida T,Yanagihara T,Liu X H,et al.Synthesis of higher alcohols by Fischer-Tropsch synthesis over alkali metal-modified cobalt catalysts[J].Appl Catal A,2013,458:145-154.
[9] Xie J X,Paalanen P P,van Deelen T W,et al.Promoted cobalt metal catalysts suitable for the production of lower olefins from natural gas[J].Nat Commun,2019,10:1-10.
[10] Zeng S H,Du Y,Su H Q,et al.Promotion effect of single or mixed rare earths on cobalt-based catalysts for Fischer-Tropsch synthesis[J].Catal Commun,2011,13:6-9.
[11] He L L,Teng B T,Zhang Y L,et al.Development of composited rare-earth promoted cobalt-based Fischer-Tropsch synthesis catalysts with high activity and selectivity[J].Appl Catal A,2015,505:276-283.
[12] Gnanamani M K,Jacobs G,Graham U M,et al.Effect of sequence of P and Co addition over silica for Fischer-Tropsch synthesis[J].Appl Catal A,2017,538:190-198.
[13] Woo M H,Cho J M,Jun K W,et al.Thermally stabilized cobalt-based Fischer-Tropsch catalysts by phosphorous modification of Al2O3:Effect of calcination temperatures on catalyst stability[J].Chem Cat Chem,2015,7:1460-1469.
[14] Xu D,Li W,Duan H,et al.Reaction performance and characterization of Co/Al2O3 Fischer-Tropsch catalysts promoted with Pt,Pd and Ru[J].Catal Lett,2005,102:229-235.
[15] Tsubaki N,Sun S,Fujimoto K.Different functions of the noble metals added to cobalt catalysts for Fischer-Tropsch synthesis[J].J Catal,2001,199:236-246.
[16] 师海波,沈师孔.用脉冲D2反应研究CeO2在Co-CeO2/SiO2费托合成催化剂中的促进作用机理[J].催化学报,2006,27(12):1096-1100.
[17] 代小平,余长春,李然家,等.Co/SiO2催化剂催化费托合成中CeO2助剂的作用[J].催化学报,2006,27(10):904-910.
[18] Jacobs G,Patterson P M,Zhang Y Q,et al.Fischer-Tropsch synthesis:Deactivation of noble metal-promoted Co/Al2O3 catalysts[J].Appl Catal A,2002,233:215-226.
[19] 周玮,房克功,陈建刚,等.ZrO2助剂对Co/SiO2催化剂在Fischer-Tropsch合成反应中稳定性的影响[J].燃料化学学报,2006,34(4):461-465.
[20] Cornaro U,Rossini S,Montanari T,et al.K-doping of Co/Al2O3 low temperature Fischer-Tropsch catalysts[J].Catal Today,2012,197:101-108.
[21] Escalona N,Medina C,García R,et al.Fischer Tropsch reaction from a mixture similar to biosyngas.Influence of promoters on surface and catalytic properties of Co/SiO2 catalysts[J].Catal Today,2009,143:76-79.
[22] Cheng Q P,Zhao N,Lyu S S,et al.Tuning interaction between cobalt catalysts and nitrogen dopants in carbon nanospheres to promote Fischer-Tropsch synthesis[J].Appl Catal B,2019,248:73-83.
[23] Jongsomjit B,Panpranot J,Goodwin Jr J G.Effect of zirconia-modified alumina on the properties of Co/γ-Al2O3 catalysts[J].J Catal,2003,215:66-77.
[24] Jermwongratanachai T,Jacobs G,Ma W P,et al.Fischer-Tropsch synthesis:Comparisons between Pt and Ag promoted Co/Al2O3 catalysts for reducibility,local atomic structure,catalytic activity,and oxidation-reduction (OR) cycles[J].Catal Today,2013,464/465:165-180.
[25] Bezemer G L,Radstake P B,Falke U,et al.Investigation of promoter effects of manganese oxide on carbon nanofiber-supported cobalt catalysts for Fischer-Tropsch synthesis[J].J Catal,2006,237:152-161.
[26] Zhao Z A,Lu W,Feng C H,et al.Increasing the activity and selectivity of Co-based FTS catalysts supported by carbon materials for direct synthesis of clean fuels by the addition of chromium[J].J Catal,2019,270:251-264.
[27] Cook K M,Poudyal S,Miller J T,et al.Reducibility of alumina-supported cobalt Fischer-Tropsch catalysts:Effects of noble metal type,distribution,retention,chemical state,bonding,and influence on cobalt crystallite size[J].Appl Catal A,2012,449:69-80.
[28] Morales F,de Smit E,de Groot F M F,et al.Effects of manganese oxide promoter on the CO and H2 adsorption properties of titania-supported cobalt Fischer-Tropsch catalysts[J].J Catal,2007,246:91-99.
[29] Nabaho D,Niemantsverdriet J W,Claeys M,et al.Hydrogen spillover in the Fischer-Tropsch synthesis:An analysis of platinum as a promoter for cobalt-alumina catalysts[J].Catal Today,2016,261:17-27.
[30] Madikizela N N,Coville N J.A study of Co/Zn/TiO2 catalysts in the Fischer-Tropsch reaction[J].J Mol Catal A,2002,181:129-136.
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