CIESC Journal ›› 2017, Vol. 68 ›› Issue (S1): 26-36.DOI: 10.11949/j.issn.0438-1157.20170540
Previous Articles Next Articles
LIN Zhifeng1, HU Riming2, ZHOU Xiaolong2
Received:
2017-05-02
Revised:
2017-06-09
Online:
2017-08-31
Published:
2017-08-31
Supported by:
supported by the National Natural Science Foundation of China (51574135).
林志峰1, 胡日茗2, 周晓龙2
通讯作者:
林志峰,3273175@qq.com
基金资助:
国家自然科学基金项目(51574135)。
CLC Number:
LIN Zhifeng, HU Riming, ZHOU Xiaolong. Research progress of Ni-based catalysts[J]. CIESC Journal, 2017, 68(S1): 26-36.
林志峰, 胡日茗, 周晓龙. 镍基催化剂的研究进展[J]. 化工学报, 2017, 68(S1): 26-36.
Add to citation manager EndNote|Ris|BibTeX
URL: https://hgxb.cip.com.cn/EN/10.11949/j.issn.0438-1157.20170540
[1] | 陈素秋. 镍的性质及用途[J]. 重有色冶炼,1980,10:59-62. CHEN S Q. Properties and applications of nickel[J]. Heavy Non-ferrous Smelting,1980,10:59-62. |
[2] | 石玉峰. 镍的特性及应用[J]. 氯碱工业,1995,11:31-35. SHI Y F. Characteristics and application of nickel[J]. Chlor-Alkali Industry,1995,11:31-35. |
[3] | 杨志强,王永前,高谦,等. 中国镍资源开发现状与可持续发展策略及其关键技术[J]. 矿产保护与利用,2016,(2):58-69. YANG Z Q,WANG Y Q,GAO Q,et al. Present situation and development strategy and key technologies of nickel resources sustainable development in China[J]. Conservation and Utilization of Mineral Resources,2016,(2):58-69. |
[4] | 刘思印,李国防,赵文献,等. Raney镍选择性催化氢化硝基苯制备氢化偶氮苯[J]. 应用化工,2009,38(5):629-631. LIU S Y,LI G F,ZHAO W X,et al. Preparation of hydrazobenzene from nitrobenzene by Raney-nickel selectively catalysed hydrogenation[J]. Applied Chemical Industry,2009,38(5):629-631. |
[5] | 胡涛,周伟,金叶玲,等. 不同载体上的镍催化剂的氢化性能的研究[J]. 食品与机械,2005,21(3):21-23. HU T,ZHOU W,JIN Y L,et al. Hydrogenation property of nickel catalyst on different carriers[J]. Food & Machinery,2005,21(3):21-23. |
[6] | 江志东,陈瑞芳,王金渠. Raney镍催化剂[J]. 化学工业与工程,1997,14(2):25-34. JIANG Z D,CHEN R F,WANG J Q. Raney-Ni catalyst[J]. Chemical Industry & Engineering,1997,14(2):25-34. |
[7] | 夏少武,刘红天,赵纯洁. Raney镍活性本质的探讨[J]. 工业催化,2003,11(2):36-41. XIA S W,LIU H T,ZHAO C J. A probe into the mechanism for activity of Raney-nickel catalysts[J]. Industrial Catalysis,2003,11(2):36-41. |
[8] | 陈江,沈德隆,章海燕. Raney-Ni催化剂的制备[J]. 浙江化工,2004,35(4):23-24. CHEN J,SHEN D L,ZHANG H Y. Preparation of Raney-Ni catalyst[J]. Zhejiang Chemical Industry,2004,35(4):23-24. |
[9] | 尾崎萃,等.催化剂手册[M]. 北京:化学工业出版社,1982:587-622. OZAKI A,et al. Catalyst Handbook[M]. Beijing:Chemical Industry Press,1982:587-622. |
[10] | 张政. 一种新型的还原催化剂[J]. 化学世界,1962,(9):24. ZHANG Z. A new type of reducing catalyst[J]. Chemical World,1962,(9):24. |
[11] | 刘皓,李若愚,张濛,等. 漆原镍催化剂用于硝基化合物催化加氢[J]. 催化学报,2009,30(7):606-612. LIU H,LI R Y,ZHANG M,et al. Hydrogenation of nitro compounds catalyzed by Urushibara nickel catalysts[J]. Chinese Journal of Catalysis,2009,30(7):606-612. |
[12] | 陈晓冬,叶志文. 漆原镍催化加氢制备间甲苯胺[J]. 精细石油化工,2007,24(4):18-21. CHEN X D,YE Z W. Catalytic performance of Urushibara nickel catalyst for m-toluidine synthesis[J]. Speciality Petrochemicals,2007,24(4):18-21. |
[13] | 石斌,成文文,孔庆洋. 漆原镍催化剂用于苯酚催化加氢[J]. 燃料化学学报,2015,43(10):1252-1257. SHI B,CHENG W W,KONG Q Y. Hydrogenation of phenol over Urushibara Ni catalysts reduced by zinc powder[J]. Journal of Fuel Chemistry and Technology,2015,43(10):1252-1257. |
[14] | 袁红萍. 超细镍基催化剂在无味煤油生产中的应用研究[D]. 南京:南京工业大学,2004. YUAN H P. Study on ultra-fine nickel supported catalysts applied for producing odorless kerosene[D].Nanjing:Nanjing University of Technology,2004. |
[15] | 和成刚. 条状超细镍基负载型催化剂苯加氢研究[D].常州:江苏工业学院,2007. HE C G. Study of strip molding ultra-fine nickel supported catalyst for benzene hydrogenation[D]. Changzhou:Jiangsu Polytechnic University,2007. |
[16] | 赵安民. 合成气甲烷化镍基催化剂的研究[D]. 上海:华东理工大学,2012. ZHAO A M. Study on Ni-based catalysts for syngas methanation[D]. Shanghai:East China University of Science and Technology,2012. |
[17] | 刘铮. 镍及镍基二元合金/多壁碳纳米管复合催化剂的制备及其催化性能研究[D]. 北京:北京化工大学,2012. LIU Z. Preparation of nickel and nickel-based binary alloys supported on multi-walled carbon nanotubes and their applications as catalysts[D]. Beijing:Beijing University of Chemical Technology,2012. |
[18] | 李霞,杨霞珍,唐浩东,等. 载体对合成气制甲烷镍基催化剂性能的影响[J].催化学报,2011,32(8):1400-1404. LI X,YANG X Z,TANG H D,et al. Effect of support on catalytic performance of Ni-based catalyst in methane dry reforming[J]. Chinese Journal of Catalysis,2011,32(8):1400-1404. |
[19] | FIGEN H E,BAYKARA S Z. Hydrogen production by partial oxidation of methane over Co based,Ni and Ru monolithic catalysts[J]. International Journal of Hydrogen Energy,2015,40(24):7439-7451. |
[20] | 侯朝鹏,李永丹,赵地顺. 芳烃加氢金属催化剂抗硫性研究的进展[J]. 化工进展,2003,22(4):366-371. HOU C P,LI Y D,ZHAO D S. Research on sulfur tolerance of metal catalystsin aromatics hydrogenation[J]. Chemical Industry and Engineering Progress,2003,22(4):366-371. |
[21] | 赵云莉. 甲烷重整制氢镍基催化剂制备及活性评价研究[D]. 太原:太原理工大学,2009. ZHAO Y L. Preparation and activity evaluation of nickel based catalysts for hydrogen production from methane reforming[D]. Taiyuan:Taiyuan University of Technology,2009. |
[22] | ZHENG W,MIAO B,LIN L Y,et al. Facile synthesis of NiO nanowires and their gas sensing performance[J]. Trans. Nonferrous Met. Soc. China,2012,22:100-104. |
[23] | 郭峰波. 半焦/改性半焦催化CH4-CO2重整特性及机理研究[D].太原:太原理工大学,2013. GUO F B. Study on characteristics and mechanism of catalytic reforming of CH4-CO2 with semi coke/modified semi coke[D]. Taiyuan:Taiyuan University of Technology,2013. |
[24] | 惠贺龙. 炭材料-Ni催化剂上焦炉气二氧化碳催化重整制合成气[D]. 北京:中国矿业大学,2014. HUI H L. Catalytic reforming of coke oven gas with carbon dioxide as catalyst for-Ni synthesis of syngas[D]. Beijing:China University of Mining and Technology,2014. |
[25] | 于铭珏. 甲烷-二氧化碳干气重整反应中镍基表面合金催化剂的抗积炭性能研究[D]. 上海:华东理工大学,2014. YU M Y. Study on the anti-coking performance of Ni based alloy catalysts for reforming of methane to carbon dioxide in dry gas[D]. Shanghai:East China University of Science and Technology,2014. |
[26] | BESWICK O,LAMEY D,MURISET F,et al. Ni-based structured catalyst for selective 3-phase hydrogenation of nitroaromatics[J]. Catalysis Today,2016,273:244-251. |
[27] | ABATE S,MEBRAHTU C,GIGLIO E,et al. Catalytic performance of gamma-Al2O3-ZrO2-TiO2-CeO2 composite oxide supported Ni-based catalysts for CO2 methanation[J]. Industrial & Engineering Chemistry Research,2016,55(16):4451-4460. |
[28] | 张容俊,夏国富,李明丰,等. 载体类型对Ni基催化剂甲烷干重整反应性能的影响[J]. 燃料化学学报,2015,43(11):1359-1365. ZHANG R J,XIA G F,LI M F,et al. Effect of support on catalytic performance of Ni-based catalyst in methane dry reforming[J]. Journal of Fuel Chemistry and Technology,2015,43(11):1359-1365. |
[29] | 钟玉洁,戴洪斌,王平,等. 水合肼制氢Ni-Pt/La2O3催化剂研制及其反应动力学研究[J]. 金属学报,2016,52(4):505-512. ZHONG Y J,DAI H B,WANG P,et al. Preparation of Ni-Pt/La2O3 catalyst and its kinetics study of hydrous hydrazine for hydrogen generation[J]. Acta Metallurgica Sinca,2016,52(4):505-512. |
[30] | 申志兵,柯明,张君涛,等. Mo-Ni/Al2O3催化剂对FCC汽油硫醚化反应的催化性能[J]. 石油化工(石油加工),2015,31(6):1269-1274. SHEN Z B,KE M,ZHANG J T, et al. Catalytic performance of Mo-Ni/Al2O3 for thioetherification of FCC gasoline[J]. Acta Petrolei Sinica(Petroleum Processing Section),2015,31(6):1269-1274. |
[31] | 陈国帅,毕亚东,尹晓红,等. 载体对镍基催化剂在苯酚加氢反应中影响[J]. 天津理工大学学报,2016,32(3):33-37. CHEN G S,BI Y D,YIN X H,et al. Effect of support on nickel-based catalyst over phenol hydrogenation reaction[J]. Journal of Tianjin University of Technology,2016,32(3):33-37. |
[32] | HENGNE A M,MALAWADKAR A V,BIRADAR N S,et al. Surface synergism of an Ag-Ni/ZrO2 nanocomposite for the catalytic transfer hydrogenation of bio-derived platform molecules[J]. RES Adv.,2014,4(19):9730-9736. |
[33] | KOO K Y,LEE J H,JUNG U H,et al. Combined H2O and CO2 reforming of coke oven gas over Ca-promoted Ni/MgAl2O4 catalyst for direct reduced iron producion[J]. Fuel,2015,153:303-309. |
[34] | 魏作君,侯雅欣,刘迎新,等. 疏水活性炭负载的镍基加氢催化剂的抗酸性能[J]. 高校化学工程学报,2016,30(2):391-397. WEI Z J,HOU Y X,LIU Y X,et al. Acid-resistant performance of Ni-based hydrogenation catalysts supported by hydrophobic acticated carbon[J]. Journal of Chemical Engineering of Chinese Universities,2016,30(2):391-397. |
[35] | ARBAG H,YASYERLI S,YASYERLI N,et al. Enhancement of catalytic performance of Ni based mesoporous alumina by Co incorporation in conversion of biogas to synthesis gas[J]. Applied Catalysis B-Environmental,2016,198:254-265. |
[36] | 王冰,郭聪秀,王英勇,等. Ni-Smx/SiC催化剂甲烷二氧化碳重整性能研究[J]. 燃料化学学报,2016,44(5):587-596. WANG B,GUO C X,WANG Y Y,et al. Performance of Ni-Smx/SiC catalysts for CO2 reforming of CH4[J]. Journal of Fuel Chemistry and Technology,2016,44(5):587-596. |
[37] | 曾志伟,邹俊,杨海平,等. 碱金属钾对Ni基催化剂纤维素水蒸气气化活性的影响[J]. 燃料化学学报,2015,43(12):1433-1438. ZENG Z W,ZOU J,YANG H P,et al. Influence of potassium on the performance of nickel-based catalyst in the steam gasification of cellulose[J]. Journal of Fuel Chemistry and Technology,2015,43(12):1433-1438. |
[38] | 白文君,李文怀,高蕊蕊,等. 助剂对Ni基催化剂上丙酮高压气相加氢制异丙醇的影响[J]. 能源化工,2016,37(3):6-10. BAI W J,LI W H,GAO R R,et al. Effect of promoter on performance of Ni-based catalyst in preparation of isopropyl alcohol by gaseous phase hydrogenation of acetone under pressure[J]. Energy Chemical Industry,2016,37(3):6-10. |
[39] | 张旭,王子宗,陈建峰,等. 助剂对煤基合成气甲烷化反应用镍基催化剂的促进作用[J]. 化工进展,2015,34(2):389-396. ZHANG X,WANG Z Z,CHEN J F,et al. Effect of promoter on supported nickel-based syngas methanation catalysts[J]. Chemical Industry and Engineering Progress,2015,34(2):389-396. |
[40] | 李晓峰,王晶,张磊,等. 铈和镨改性Ni/Al2O3催化剂对甲醇水蒸气重整制氢的影响[J]. 中国稀土学报,2016,34(4):403-410. LI X F,WANG J,ZHANG L,et al. Effect of cerium and praseodymium addition on Ni/Al2O3 catalyst to produce H2 from methanol steam reforming[J]. Journal of the Chinese Society of Rare Earths,2016,34(4):403-410. |
[41] | BACARIZA M C,GRACA I,WESTERMANN A,et al. CO2 hydrogenation over Ni-based zeolites:effect of catalysts preparation and pre-reduction conditions on methanation performance[J]. Topics in Catalysis,2016,59(2):314-325. |
[42] | 沈也婷,张海涛,房鼎业,等. ZrO2/Al2O3复合载体镍基催化剂CO甲烷化反应本征动力学[J]. 华东理工大学学报,2016,42(4):446-453. SHEN Y T,ZHANG H T,FANG D Y,et al. Intrinsic kinetics of CO methanation over ZrO2/Al2O3 supported Ni-based catalyst[J]. Journal of China University of Science and Technology(Natural Science Edition),2016,42(4):446-453. |
[43] | 文博,朱明远,代斌,等. Ca2+、Mg2+在MCM-41离子交换制备镍基催化剂对合成气甲烷化的性能分析[J].石河子大学学报,2016,34(3):360-366. WEN B,ZHU M Y,DAI B,et al. Preparation of nickel-based catalysts by Ca2+,Mg2+ exchange in MCM-41 for methanntion of synthesis gas properties exportion[J]. Journal of Shihezi University(Natural Science),2016,34(3):360-366. |
[44] | 崔琳. 三氧化二铝负载镍基催化剂的CO选择甲烷化反应性能[D]. 北京:北京理工大学,2016. CUI L. Performance of Al2O3 supported Ni-based catalyst for selective methanation of CO[D]. Beijing:Beijing Institute of Technology,2016. |
[45] | FENG J,WANG Q,FAN D L,et al. Nickel-based xerogel catalysts:synthesis via fast sol-gel method and application in catalytic hydrogenation of p-nitrophenol to p-aminophenol[J]. Applied Surface Science,2016,382:135-143. |
[46] | 白文君. Ni基催化剂上丙酮加氢制备异丙醇的工艺研究[D]. 太原:太原理工大学,2016. BAI W J. Study on the preparation of isopropyl alcohol by the hydrogenation of acetone over Ni based catalysts[D]. Taiyuan:Taiyuan University of Technology,2016. |
[47] | 王耀堂,顾晋文. 负载型镍催化剂用于间二硝基苯催化剂加氢研究[J]. 精细石油化工进展,2016,17(4):41-43. WANG Y T,GU J W. Application of supported nickel catalyst in m-dinitrobenzene catalytic hydrogenation[J]. Advances in Fine Petrochemicals,2016,17(4):41-43. |
[48] | 张郸宁. 新型镍基催化剂的制备及其对苯酚的加氢应用[D]. 郑州:郑州大学,2016. ZHANG D N. Preparation and application of novel Ni based catalysts in hydrogenation of phenol[D]. Zhengzhou:Zhengzhou University,2016. |
[49] | AMIN R,LIU B S,ZHAO Y C, et al. Hydrogen production by corncob/CO2 dry reforming over CeO2 modified Ni-based MCM-22 catalysis[J]. International Journal of Hydrogen Energy,2016,41:12869-12879. |
[50] | ZHAO X X,LU G X. Improving catalytic activity and stability by in-situ regeneration of Ni-based catalyst for hydrogen production from ethanol steam reforming via controlling of active species dispersion[J]. International Journal of Hydrogen Energy,2016,41(32):13993-14002. |
[51] | 纪婷婷,杨晓萱,王亚晶,等. 不同方法制备的介孔Ni/MgO催化剂上水蒸气重整苯酚制氢[J]. 燃料化学学报,2016,44(9):1131-1137. JI T T,YANG X X,WANG Y J,et al. Steam reforming of phenol for producing hydrogen over nickel support on MgO prepared by different methods[J]. Journal of Fuel Chemistry and Technology,2016,44(9):1131-1137. |
[52] | 张川,豆斌林,蒋博,等. 蒙脱石负载纳米镍甘油水蒸气重整制氢[J]. 大连理工大学学报,2016,56(5):454-456. ZHANG C,DOU B L,JIANG B,et al. Montmorillonite supported nickel nanoparticles for hydrogen production from glycerol steam reforming[J]. Journal of Dalian University of Technology,2016,56(5):454-456. |
[53] | 丁传敏. 功能型镍基催化剂用于甲烷部分氧化制合成气抗积碳、抗烧结研究[D]. 太原:太原理工大学,2016. DING C M. Study on anti-sintering and coking of functional Ni-based catalysts for partial oxidation of methane[D]. Taiyuan:Taiyuan University of Technology,2016. |
[54] | SHARIFNIA S,KARAMI Z. A novel catalyst preparation technique to improve performance of Ni/gamma-Al2O3 catalysts in partial oxidation of methane[J]. International Journal of Chemical Reactor Engineering,2015,13(1):1-7. |
[55] | BOUKHA Z,JIMENEZ-GONZALEZ C,GIL-CALVO M. MgO/NiAl2O4 as a new formulation of reforming catalysts:tuning the surface properties for the enhanced partial oxidation of methane[J]. Applied Catalysis B-Environmental,2016,199:372-383. |
[56] | 王润平,毛树红,段秀琴,等. 不同载体Ni负载型催化剂对甲烷部分氧化制合成气催化行为研究[J]. 燃料化学学报,2015,43(2):228-234. WANG R P,MAO S H,DUAN X Q,et al. Catalytic performance of nickel-based catalysts with different supports in partial oxidation of metahne to synthesis gas[J]. Journal of Fuel Chemistry and Technology,2015,43(2):228-234. |
[57] | 魏弢. 镍基裂解石油加氢催化剂的开发及工业应用[D]. 沈阳:东北大学,2016. WEI T. The development and application of nickel base catalyst hydtogenation for pyrolysis gasoline[D].Shenyang:Northeast Petroleum University,2016. |
[58] | 柴忠义,王伟,马维玲,等. YN-1型催化剂在裂解汽油C9+选择加氢装置的工业应用[J]. 工业催化,2015,23(7):549-551. CHAI Z Y,WANG W,MA W L,et al. Commercial application of YN-1 catalyst in selective hydrogenation unit of pyrolysis gasaline C9+ cut[J]. Industrial Catalysis,2015,23(7):549-551. |
[59] | ARDIYANTI A R,BYKOVA M V,KHROMOVA S A,et al. Ni-based catalysts for the hydrotreatment of fast pyrolysis oil[J]. Energy & Fuels,2016,30(3):1544-1554. |
[60] | ZHU H B,DONG H L,LAVEILLE P,et al. Metal oxides modified NiO catalysts for oxidative dehydrogenation of ethane to ethylene[J]. Catalysis Taday,2014,228:58-64. |
[61] | 张馨月,张静,张永丽,等. 不同载体镍基催化剂激活过硫酸盐降解酸性橙7的实验研究[J]. 水资源与工程学报,2016,27(3):18-22. ZHANG X Y,ZHANG J,ZHANG Y L,et al. Nickel-based catalyst with different supports activating persulfate in degradation of acid orange 7[J]. Journal of Water Resources & Water Engineering,2016,27(3):18-22. |
[62] | 何立模,胡松,汪一,等. 改性体镍基催化剂催化甲苯重整与积碳特性研究[J]. 工程热物理学报,2016,37(5):1093-1099. HE L M,HU S,WANG Y,et al. Catalytic performance and coke characterzation over modified Ni-based catalysts for steam reforming of toluene[J]. Journal of Engineering Thermophysics,2016,37(5):1093-1099. |
[63] | 公维光,徐元元,郑柏存,等. 镍基双金属催化剂/活性炭催化聚丙烯成炭及燃烧性能研究[J]. 化学工业与工程,2015,32(5):98-102. GONG W G,XU Y Y,ZHENG B C,et al. Catalytic carbonization and combustible properties of polypropylene catalyzed by Ni-based bimetal with activated carbom[J]. Chemical Industry and Engineering,2015,32(5):98-102. |
[64] | 李振花,王海涛,田树勋. 甲烷部分氧化制合成气中助剂对Ni基催化剂性能的影响[J]. 天然气化工,2004,29(1):15-19. LI Z H,WANG H T,TIAN S X. Effect of additives on the performance of Ni based catalysts for partial oxidation of methane to syngas[J]. Natural Gas Chemical Industry,2004,29(1):15-19. |
[65] | 胡全红. 钛酸钡基载体及其负载镍催化剂的研究[D].南昌:南昌大学,2012. HU Q H. Barium titanate based support and its supported nickel catalyst[D]. Nanchang:Nanchang University,2012. |
[66] | 张因,赵丽丽,张鸿喜,等. 载体对镍基催化剂顺酐液相加氢性能的影响[J]. 化工学报,2015,66(7):2505-2512. ZHANG Y,ZHAO L L,ZHANG H X,et al. Effect of support on catalytic performance of nickel-based catalysts used for liquid phase hydrogenation of maleic anhydride[J]. CIESC Journal,2015,66(7):2505-2512. |
[67] | 黎先财,陈娟荣,赖志华,等. 不同载体对镍基催化剂的XPS影响[J]. 稀土,2006,27(1):8-9. LI X C,CHEN J R,LAI Z H,et al. XPS effect of different supports on Ni-based catalyst[J]. Chinese Rare Earths,2006,27(1):8-9. |
[68] | ZHANG H,DONG Y Y,FANG W P,et al. Effects of composite oxide supports on catalytic performance of Ni-based catalysts for CO methanation[J]. Chinese Journal of Catalysis,2013,34:330-335. |
[69] | 丁传敏,孔祥鹏,张林香,等. 载体和助剂对镍基苯加氢催化剂活性的影响[J]. 天然气化工,2013,38(1):11-14. DING C M,KONG X P,ZHANG L X,et al. Effects of supports and promoters on the activity of nickel based catalysts for benzene hydrogenation[J]. Natural Gas Chemical Industry,2013,38(1):11-14. |
[70] | 王东旭,肖显斌,高静,等. 助剂钾对镍基催化剂性能影响研究进展[J]. 化工进展,2014,33(3):668-672. WANG D X,XIAO X B,GAO J,et al. Effect of potassium on the performance of Ni based catalysts[J]. Advances in Chemical Engineering,2014,33(3):668-672. |
[71] | 赵磊,张敬,王文美,等. 己二腈选择加氢镍基催化剂的失活和再生[J]. 化学反应工程与工艺,2010,26(03):229-234. ZHAO L,ZHANG J,WANG W M,et al. Deactivation and regeneration of Ni/KzO-La2O3-Al2O3 catalyst in selective hydrogenation of adiponitrile to aminocapronitrile[J]. Chemical Reaction Engineering and Technology,2010,26(3):229-234. |
[72] | 郑进保,赵愉生,伊晓东,等. 镍基芳烃加氢催化剂硫中毒的失活动力学[J]. 化工学报,2012,63(10):3131-3137. ZHENG J B,ZHAO Y S,YI X D,et al. Deactivation kinetics of sulfur poisoning of nickel catalyst during ethylbenzene hydrogenation[J]. CIESC Journal,2012,63(10):3131-3137. |
[73] | 张旭,王子宗,陈建峰. 煤基合成气甲烷化用镍基催化剂失活热力学和抗失活预测[J]. 化工进展,2016,35(11):3511-3518. ZHANG X,WANG Z Z,CHEN J F. Thermodynamic analysis of coal-based syngas methanation deactivation and anti-inactivation on nickel-based catalyst[J]. Chemical Industry and Engineering Progress,2016,35(11):3511-3518. |
[74] | 赵永祥,秦晓琴,侯希才,等. 镍基催化剂的制备、表征及选择加氢性能[J]. 物理化学学报,2003,19(5):450-454. ZHAO Y X,QIN X Q,HOU X C, et al. Preparation,characterization and properties of selective hydrogenation on Ni-based catalysts[J]. Acta Physico-Chimica Sinica,2003,19(5):450-454. |
[1] | Weiqi JIN, Yuerong WU, Xia WANG, Li LI, Su QIU, Pan YUAN, Minghe WANG. Progress in infrared imaging detection technology and domestic equipment for industrial gas leakage in chemical industry parks [J]. CIESC Journal, 2023, 74(S1): 32-44. |
[2] | Yitong LI, Hang GUO, Hao CHEN, Fang YE. Study on operating conditions of proton exchange membrane fuel cells with non-uniform catalyst distributions [J]. CIESC Journal, 2023, 74(9): 3831-3840. |
[3] | Xuejin YANG, Jintao YANG, Ping NING, Fang WANG, Xiaoshuang SONG, Lijuan JIA, Jiayu FENG. Research progress in dry purification technology of highly toxic gas PH3 [J]. CIESC Journal, 2023, 74(9): 3742-3755. |
[4] | Jie CHEN, Yongsheng LIN, Kai XIAO, Chen YANG, Ting QIU. Study on catalytic synthesis of sec-butanol by tunable choline-based basic ionic liquids [J]. CIESC Journal, 2023, 74(9): 3716-3730. |
[5] | Feifei YANG, Shixi ZHAO, Wei ZHOU, Zhonghai NI. Sn doped In2O3 catalyst for selective hydrogenation of CO2 to methanol [J]. CIESC Journal, 2023, 74(8): 3366-3374. |
[6] | Kaixuan LI, Wei TAN, Manyu ZHANG, Zhihao XU, Xuyu WANG, Hongbing JI. Design of cobalt-nitrogen-carbon/activated carbon rich in zero valent cobalt active site and application of catalytic oxidation of formaldehyde [J]. CIESC Journal, 2023, 74(8): 3342-3352. |
[7] | Xin YANG, Xiao PENG, Kairu XUE, Mengwei SU, Yan WU. Preparation of molecularly imprinted-TiO2 and its properties of photoelectrocatalytic degradation of solubilized PHE [J]. CIESC Journal, 2023, 74(8): 3564-3571. |
[8] | Yajie YU, Jingru LI, Shufeng ZHOU, Qingbiao LI, Guowu ZHAN. Construction of nanomaterial and integrated catalyst based on biological template: a review [J]. CIESC Journal, 2023, 74(7): 2735-2752. |
[9] | Pan LI, Junyang MA, Zhihao CHEN, Li WANG, Yun GUO. Effect of the morphology of Ru/α-MnO2 on NH3-SCO performance [J]. CIESC Journal, 2023, 74(7): 2908-2918. |
[10] | Yuming TU, Gaoyan SHAO, Jianjie CHEN, Feng LIU, Shichao TIAN, Zhiyong ZHOU, Zhongqi REN. Advances in the design, synthesis and application of calcium-based catalysts [J]. CIESC Journal, 2023, 74(7): 2717-2734. |
[11] | Qiyu ZHANG, Lijun GAO, Yuhang SU, Xiaobo MA, Yicheng WANG, Yating ZHANG, Chao HU. Recent advances in carbon-based catalysts for electrochemical reduction of carbon dioxide [J]. CIESC Journal, 2023, 74(7): 2753-2772. |
[12] | Maolin DONG, Lidong CHEN, Liulian HUANG, Weibing WU, Hongqi DAI, Huiyang BIAN. Research progress in preparation of lignonanocellulose by acid hydrotropes and their functional applications [J]. CIESC Journal, 2023, 74(6): 2281-2295. |
[13] | Xiqing ZHANG, Yanting WANG, Yanhong XU, Shuling CHANG, Tingting SUN, Ding XUE, Lihong ZHANG. Effect of Mg content on isobutane dehydrogenation properties over nanosheets supported Pt-In catalysts [J]. CIESC Journal, 2023, 74(6): 2427-2435. |
[14] | Jipeng ZHOU, Wenjun HE, Tao LI. Reaction engineering calculation of deactivation kinetics for ethylene catalytic oxidation over irregular-shaped catalysts [J]. CIESC Journal, 2023, 74(6): 2416-2426. |
[15] | Tan ZHANG, Guang LIU, Jinping LI, Yuhan SUN. Performance regulation strategies of Ru-based nitrogen reduction electrocatalysts [J]. CIESC Journal, 2023, 74(6): 2264-2280. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||