Chemical Industry and Engineering Progress ›› 2017, Vol. 36 ›› Issue (12): 4486-4492.DOI: 10.16085/j.issn.1000-6613.2017-0555
Previous Articles Next Articles
CHENG Lu, SUO Yanhua, ZHANG Wei, WANG Yingjun
Received:
2017-03-30
Revised:
2017-07-26
Online:
2017-12-05
Published:
2017-12-05
程璐, 所艳华, 张微, 汪颖军
通讯作者:
汪颖军,教授,研究方向为工业催化。
作者简介:
程璐(1991-),女,硕士研究生。
基金资助:
CLC Number:
CHENG Lu, SUO Yanhua, ZHANG Wei, WANG Yingjun. Recent progress in preparation and application of ternary composite oxide[J]. Chemical Industry and Engineering Progress, 2017, 36(12): 4486-4492.
程璐, 所艳华, 张微, 汪颖军. 三元复合氧化物的制备及应用研究进展[J]. 化工进展, 2017, 36(12): 4486-4492.
Add to citation manager EndNote|Ris|BibTeX
URL: https://hgjz.cip.com.cn/EN/10.16085/j.issn.1000-6613.2017-0555
[1] DHAR G M,SRINIVAS B N,RANA M S,et al.Mixed oxide supported hydrodesulfurization catalysts-a review[J].Catalysis Today,2003,86(1/2/3/4):45-60. [2] GALINDO I R,VIVEROS T,CHADWICK D.Synthesis and characterization of titania-based ternary and binary mixed oxides prepared by the sol-gel method and their activity in 2-propanol dehydration[J].Industrial & Engineering Chemistry Research,2007,46(4):1138-1147. [3] CHOI K H,LEE D H,KIM H S,et al.Reaction characteristics of precious-metal-free ternary Mn-Cu-M(M=Ce,Co,Cr,and Fe)oxide catalysts for low-temperature CO oxidation[J].Industrial & Engineering Chemistry Research,2016,55(16):4443-4450. [4] ZHANG L J,MENG M,WANG X J,et al.A series of copper-free ternary oxide catalysts ZnAlCex used for hydrogen production viadimethyl ether steam reforming[J].Journal of Power Sources,2014,268(4):331-340. [5] 张晓华,李凝,滕俊江,等.掺杂离子的种类对介孔La0.6A0.4NiO3钙钛矿催化剂的结构与催化活性的影响[J].化工进展,2016,35(11):3542-3548. ZHANG X H,LI N,TENG J J,et al.Structure and catalytic activity of mesoporous La0.6A0.4NiO3 perovskite catalyst with A-site ions replaced[J].Chemical Industry and Engineering Progress,2016,35(11):3542-3548. [6] 李静,王乐,孙维周,等.制备方法对Co-Pd/TiO2催化剂催化CH4-CO2梯阶转化的影响[J].化工进展,2015,34(3):738-744. LI J,WANG L,SUN W Z,et al.Effect of preparation method on the catalytic performance of Co-Pd/TiO2 catalysts for the step-wise conversion of CH4 and CO2[J].Chemical Industry and Engineering Progress,2015,34(3):738-744. [7] 徐平,邢焰,任成军,等. 制备方法对复合氧化物Bi2WO6-ZrO2-TiO2光催化性能的影响[J].化学研究与应用,2014,26(9):1411-1416. XU P,XING Y,REN C J,et al.Effect of preparation methods on photo-catalytic activity of composite oxides Bi2WO6-ZrO2-TiO2[J].Chemical Research and Application,2014,26(9):1411-1416. [8] 石西昌,马立文,陈白珍,等.Li-Mn-Ti复合氧化物的结构及其在酸介质中的稳定性[J].中国有色金属学报,2011,21(4):815-820. SHI X C,MA L W,CHEN B Z,et al. Structure of Li-Mn-Ti composite oxides and its stability in acid medium[J].The Chinese Journal of Nonferrous Metals,2011,21(4):815-820. [9] HAGH N M,AMATUCCI G G.A new solid-state process for synthesis of LiMn1.5Ni0.5O4−δ spinel[J].Journal of Power Sources,2010,195(15):5005-5012. [10] CABALLERO A,CRUZ-YUSTA M,MORALES J,et al.A new and fast synthesis of nanosized LiFePO4 electrode materials[J].European Journal of Inorganic Chemistry,2006,9:1758-1764. [11] WRIGHT D A.Research on the sol-gel method of preparing ternary nano SiO2-Al2O3-TiO2 materials[J].Key Engineering Materials,2014,609/610(5):281-287. [12] WU C C,ZHANG H J,WANG J,et al.Catalytic decomposition of N2O over MnxCo2.5-xAl0.5O4 ternary spinel oxides[J].Journal of Molecular Catalysis(China),2016,30(2):131-139. [13] KIM S J,KIM W C,SHIM I B,et al. Structural and magnetic properties of CoAl0.1Fe1.9O4 thin films prepared by a sol-gel method[J]. Physica Status Solidi,2015,189(3):883-887. [14] JUNG K Y,PARK S B,IHM S K.Local structure and photocatalytic activity of B2O3-SiO2/TiO2 ternary mixed oxides prepared by sol-gel method[J].Applied Catalysis B:Environmental,2004,51(4):239-245. [15] 张丹,朱宝余,孙成勋.中低温Fe2O3-MnO2-CeO2/TiO2脱硝催化剂的合成、表征及催化活性[J].分子科学学报,2016,32(2):172-176. ZHANG D,ZHU B Y,SUN C X.Synthesis,characterization and catalytic activity of medium low temperature Fe2O3-MnO2-CeO2/TiO2 catalyst[J].Journal of Molecular Science,2016,32(2):172-176. [16] 卢晗锋,黄金星,周瑛,等.沉淀剂对Cu-Mn-Ce复合氧化物催化剂结构和性能的影响[J].化工学报,2015,66(6):2105-2111. LU H F,HUANG J X,ZHOU Y,et al.Effect of precipitants on structure and performance of Cu-Mn-Ce mixed oxide catalysts[J].CIESC Journal,2015,66(6):2105-2111. [17] MARBAN G,FUERTES A B.Highly active and selective CuOx/CeO2 catalyst prepared by a single-step citrate method for preferential oxidation of carbon monoxide[J]. Applied Catalysis B-Environmental,2005,57(1):43-53. [18] 李红梅,兰丽,陈山虎,等.复合沉淀剂制备的CeO2-ZrO2-Al2O3材料及其负载的单Pd三效催化剂[J].物理化学学报,2016,32(7):1734-1746. LI H M,LAN L,CHEN S H,et al.Preparation of CeO2-ZrO2-Al2O3 with a composite precipitant and its supported Pd-only three-way catalyst[J].Acta Phys.-Chim.Sin.,2016,32(7):1734-1746. [19] 李冰,靳福全.Ca-Mg-Zn-O催化剂的制备、表征及其蓖麻油醇解的催化活性评价[J].中国粮油学报,2016,31(8):100-104. LI B,JIN F Q.Preparation and characterization of the Ca-Mg-Zn-O catalyst,and its catalytic activity evaluation for castor oil alcoholysis[J]. Journal of the Chinese Cereals and Oils Association,2016,31(8):100-104. [20] 蔡林森,王兴权,刘宏,等.Mg-Fe-Al复合氧化物的制备及其对二甲酚橙吸附性能研究[J].科学技术与工程,2016,16(31):118-123. CAI L S,WANG X Q,LIU H,et al.Synthesis and characterization of Mg-Fe-Al composite oxide as an adsorbent for xylenol orange removal[J].Science Technology and Engineering,2016,16(31):118-123. [21] 滕昭玉,刘春丽,彭廷兰,等.钙钛矿型La0.9Sr0.1NiO3催化剂的合成条件及其可见光催化活性的研究[J].材料导报,2016,30(6):19-23. TENG Z Y,LIU C L,PENG T L,et al.Synthesis conditions and visible light photocatalytic activity of perovskite catalyst La0.9Sr0.1NiO3[J].Materials Review,2016,30(6):19-23. [22] 滕昭玉,黄俊川,刘林,等.钙钛矿型氧化物La1-xMxNiO3的制备及其可见光催化性能[J].广东化工,2014,41(20):7-8. TENG Z Y,HUANG J C,LIU L,et al.Prepartion and visible light photocatalytic property of perovskite-type oxides La1-xMxNiO3[J].Guangdong Chemical Industry,2014,41(20):7-8. [23] YAO X J,LI L L,ZOU W X,et al.Preparation,characterization,and catalytic performance of high efficient CeO2-MnOx-Al2O3 catalysts for NO elimination[J].Chinese Journal of Catalysis,2016,37(8):1369-1380. [24] 郭威阳,闵捷,宫殿清,等.热处理温度和pH值对CuCoMnOx复合氧化物结构与性能的影响[J].武汉理工大学学报,2016,38(3):1-7. GUO W Y,MIN J,GONG D Q,et al.Effect of annealing and pH value on structure and optical properties of CuCoMnOx composite oxide[J].Journal of Wuhan University of Technology,2016,38(3):1-7. [25] 徐黎明,高玉兰,曹凤兰,等.共沉淀法制备Zr/Si-Al复合氧化物载体的研究[J].工业催化,2007,15(7):66-69. XU L M,GAO Y L,CAO F L,et al.Preparation of Zr/Si-Al composite oxide support via co-precipitation[J].Industrial Catalysis,2007,15(7):66-69. [26] 李友凤,王存,刘国清,等.添加剂对CeO2-ZrO2-Al2O3复合氧化物结构及性能的影响[J].中国有色金属学报,2016,26(6):1255-1263. LI Y F,WANG C,LIU G Q,et al.Influence of additives on structure and performance of CeO2-ZrO2-Al2O3 composite oxide CeO2-ZrO2-Al2O3[J].The Chinese Journal of Nonferrous Metals,2016,26(6):1255-1263. [27] 张海杰,王建,窦喆,等.Cu-Co-Al复合氧化物在N2O分解反应中的催化活性[J].石油化工,2015,44(2):235-240. ZHANG H J,WANG J,DOU Z,et al.Catalytic activity of composite Cu-Co-Al oxides in N2O decomposition[J]. Petrochemical Technology,2015,44(2):235-240. [28] ZENG Y,MA H F,ZHANG H T,et al.Ni-Ce-Al composite oxide catalysts synthesized by solution combustion method:enhanced catalytic activity for CO methanation[J].Fuel,2015,162:16-22. [29] 武海鹏,冯鸣,徐秀峰.K改性Ni-Co-Al三元复合氧化物催化分解N2O[J].燃料化学学报,2012,40(7):872-877. WU H P,FENG M,XU X F.Catalytic decomposition of N2O over potassium promoted Ni-Co-Al ternary mixed oxides[J].Journal of Fuel Chemistry & Technology,2012,40(7):872-877. [30] 丁林,曹雨来,宋永吉,等.Co-Cu-M(M=Fe,Mn,Ni,Zn,Ce)催化剂催化分解N2O性能[J].化工进展,2016,35(11):3519-3523. DING L,CAO Y L,SONG Y J,et al.The study of catalytic decomposition of N2O over Cu-Co-M(M=Fe,Mn,Ni,Zn,Ce)[J].Chemical Industry and Engineering Progress,2016,35(11):3519-3523. [31] ZHANG J L,WU S,HU H,et al.N2O decomposition over K-Ce promoted Co-M-Al mixed oxide catalysts prepared from hydrotalcite-like precursors[J]. Chinese Journal of Chemical Physics,2014,27(2):233-239. [32] 黄海凤,唐伟.CuMn复合氧化物及稀土助剂对VOCs催化燃烧性能的研究[J].浙江工业大学学报,2004,32(4):407-410. HUANG H F,TANG W.Catalytic combustion of volatile organic compounds on CuMn complex oxide catalysts added rare earth[J].Journal of Zhejiang University of Technology,2004,32(4):407-410. [33] 余鸿敏,卢晗锋,陈银飞.Pt掺杂对Cu-Mn-Ce复合氧化物催化燃烧性能的影响[J].化工学报,2011,62(4):947-952. YU H M,LU H F,CHEN Y F.Influence of doped Pt on catalytic combustion performance of Cu-Mn-Ce oxide catalysts[J].CIESC Journal,2011,62(4):947-952. [34] WANG Y,YU K,YIN H H,et al.Facile synthesis,enhanced field emission and photocatalytic activities of Cu2O-TiO2-ZnO ternary hetero-nanostructures[J].Journal of Physics D:Applied Physics,2013,46(17):175303. [35] 仝建波,蔺阳,刘淑玲,等.加氢脱硫催化剂载体的研究进展[J].化工进展,2014,33(5):1170-1179. TONG J B,LIN Y,LIU S L,et al.Recent progress in the support of hydrodesulfurization catalysts[J].Chemical Industry and Engineering Progress,2014,33(5):1170-1179. [36] KAPTEIJN F,RODRIGUEZ-MIRASOL J,MOULIJN J A. Heterogeneous catalytic decomposition of nitrous oxide[J].Applied Catalysis B:Environmental,1996,9(1/2/3/4):25-64. [37] SHENG Y Q,ZHOU Y,LU H F,et al.Soot combustion performance and H2-TPR study on ceria-based mixed oxides[J].Chinese Journal of Catalysis,2013,34(3):567-577. [38] LU H F,ZHOU Y,HAN W F,et al.High thermal stability of ceria-based mixed oxide catalysts supported on ZrO2for toluene combustion[J].Catalysis Science & Technology,2013,3(6):1480-1484. [39] LU H F,ZHOU Y,HUANG H,et al.In-situ synthesis of monolithic Cu-Mn-Ce/cordierite catalysts towards VOCs combustion[J].Journal of Rare Earths,2011,29(9):855-860. [40] RANGASWAMY A,SUDARSANAM P,REDDY B M.Rare earth metal doped CeO2-based catalytic materials for diesel soot oxidation at lower temperatures[J]. Journal of Rare Earths,2015,33(11):1162-1169. [41] 邬红龙,郭军,张旺,等.RxCe0.8-xZr0.2O2催化剂的制备及催化碳烟燃烧性能研究[J].材料导报,2016,30(2):66-70. WU H L,GUO J,ZHANG W,et al.Preparation of RxCe0.8-xZr0.2O2catalysts and their catalytic performance for diesel soot oxidation[J].Materials Review,2016,30(2):66-70. [42] 顾卫荣,周明吉,马薇,等.选择性催化还原脱硝催化剂的研究进展[J].化工进展,2012,31(7):1493-1500. GU W R,ZHOU M J,MA W,et al.Research progress on selective catalytic reduction De-NOx catalysts[J].Chemical Industry and Engineering Progress,2012,31(7):1493-1500. [43] 高岩,栾涛,彭吉伟,等.四元SCR催化剂V2O5-WO3-MoO3/TiO2脱硝性能[J].功能材料,2013,44(14):2092-2096. GAO Y,LUAN T,PENG J W,et al.DeNOx performance of quaternary SCR V2O5-WO3-MoO3/TiO2catalyst[J]. Journal of Functional Materials,2013,44(14):2092-2096. [44] 刘海弟,李伟曼,李文辉,等.过渡金属、Zr、Ce三元SCR催化剂的制备和性能[J].材料研究学报,2016,30(2):123-130. LIU H D,LI W M,LI W H,et al.Preparation and characterization of ternary SCR catalysts consisted of transition metal oxide,zirconia and ceira[J].Chinese Journal of Materials Research,2016,30(2):123-130. [45] 甄德帅,李金龙,邓启刚,等.Zn2+-SiO2-TiO2三元复合催化剂的制备及其光催化降解性能[J].印染助剂,2012,29(10):6-9. ZHEN D S,LI J L,DENG Q G,et al.Preparation and photocatalytic activity of ternary composite catalyst:Zn2+-SiO2-TiO2[J].Textile Auxiliaries,2012,29(10):6-9. [46] KNOTHE G.Biodiesel:current trends and properties[J].Topics in Catalysis,2010,53(11):714-720. [47] 邓欣,方真,胡远飞,等.微水相超声波协同纳米Ca-Mg-Al固体碱催化制备生物柴油[J].石油化工,2009,38(10):1071-1075. DENG X,FANG Z,HU Y F,et al.Preparation of biodiesel on nano Ca-Mg-Al solid base catalyst under ultrasonic radiation in microaqueous media[J].Petrochemical Technology,2009,38(10):1071-1075. [48] KIM M,DIMAGGIO C,SALLEY S O,et al.A new generation of zirconia supported metal oxide catalysts for converting low grade renewable feedstocks to biodiesel[J].Bioresource Technology,2012,118:37-42. [49] 李冰,靳福全.Ca-Mg-Zn-O催化剂的制备、表征及其蓖麻油醇解的催化活性评价[J].中国粮油学报,2016,31(8):100-104. LI B,JIN F Q.Preparation and characterization of the Ca-Mg-Zn-O catalyst,and its catalytic activity evaluation for castor oil alcoholysis[J]. Journal of the Chinese Cereals and Oils Association,2016,31(8):100-104. [50] WANG G P,ZHANG L,ZHANG J J.A review of electrode materials for electrochemical supercapacitors[J].Chemical Society Reviews,2012,43(18):797-828. [51] GOUDARZI M,GHORBANI M.A study on ternary mixed oxide coatings containing Ti,Ru,Ir by sol-gel method on titanium[J]. Journal of Sol-Gel Science and Technology,2015,73(2):332-340. [52] RAJKUMAR D,KIM J G.Oxidation of various reactive dyes with in situelectro-generated active chlorine for textile dyeing industry wastewater treatment[J].Journal of Hazardous Materials,2006,136(2):203-212. [53] 伊昭宇,贺冲,朱君秋,等.Ti/Ru0.4Sn(0.6-x)MnxO2氧化物电极的电容特性[J].中国有色金属学报,2016,26(4):821-828. YIN Z Y,HE C,ZHU J Q,et al.Capacitive properties of Ti/Ru0.4Sn(0.6-x)MnxO2 electrodes[J]. The Chinese Journal of Nonferrous Metals,2016,26(4):821-828. |
[1] | ZHANG Mingyan, LIU Yan, ZHANG Xueting, LIU Yake, LI Congju, ZHANG Xiuling. Research progress of non-noble metal bifunctional catalysts in zinc-air batteries [J]. Chemical Industry and Engineering Progress, 2023, 42(S1): 276-286. |
[2] | ZHENG Qian, GUAN Xiushuai, JIN Shanbiao, ZHANG Changming, ZHANG Xiaochao. Photothermal catalysis synthesis of DMC from CO2 and methanol over Ce0.25Zr0.75O2 solid solution [J]. Chemical Industry and Engineering Progress, 2023, 42(S1): 319-327. |
[3] | HU Xi, WANG Mingshan, LI Enzhi, HUANG Siming, CHEN Junchen, GUO Bingshu, YU Bo, MA Zhiyuan, LI Xing. Research progress on preparation and sodium storage properties of tungsten disulfide composites [J]. Chemical Industry and Engineering Progress, 2023, 42(S1): 344-355. |
[4] | WANG Zhengkun, LI Sifang. Green synthesis of gemini surfactant decyne diol [J]. Chemical Industry and Engineering Progress, 2023, 42(S1): 400-410. |
[5] | DENG Liping, SHI Haoyu, LIU Xiaolong, CHEN Yaoji, YAN Jingying. Non-noble metal modified vanadium titanium-based catalyst for NH3-SCR denitrification simultaneous control VOCs [J]. Chemical Industry and Engineering Progress, 2023, 42(S1): 542-548. |
[6] | GENG Yuanze, ZHOU Junhu, ZHANG Tianyou, ZHU Xiaoyu, YANG Weijuan. Homogeneous/heterogeneous coupled combustion of heptane in a partially packed bed burner [J]. Chemical Industry and Engineering Progress, 2023, 42(9): 4514-4521. |
[7] | GAO Yanjing. Analysis of international research trend of single-atom catalysis technology [J]. Chemical Industry and Engineering Progress, 2023, 42(9): 4667-4676. |
[8] | CHEN Xiangyu, BIAN Chunlin, XIAO Benyi. Research progress on temperature phased anaerobic digestion technology [J]. Chemical Industry and Engineering Progress, 2023, 42(9): 4872-4881. |
[9] | LI Dongze, ZHANG Xiang, TIAN Jian, HU Pan, YAO Jie, ZHU Lin, BU Changsheng, WANG Xinye. Research progress of NO x reduction by carbonaceous substances for denitration in cement kiln [J]. Chemical Industry and Engineering Progress, 2023, 42(9): 4882-4893. |
[10] | WANG Chen, BAI Haoliang, KANG Xue. Performance study of high power UV-LED heat dissipation and nano-TiO2 photocatalytic acid red 26 coupling system [J]. Chemical Industry and Engineering Progress, 2023, 42(9): 4905-4916. |
[11] | HUANG Yufei, LI Ziyi, HUANG Yangqiang, JIN Bo, LUO Xiao, LIANG Zhiwu. Research progress on catalysts for photocatalytic CO2 and CH4 reforming [J]. Chemical Industry and Engineering Progress, 2023, 42(8): 4247-4263. |
[12] | LI Runlei, WANG Ziyan, WANG Zhimiao, LI Fang, XUE Wei, ZHAO Xinqiang, WANG Yanji. Efficient catalytic performance of CuO-CeO2/TiO2 for CO oxidation at low-temperature [J]. Chemical Industry and Engineering Progress, 2023, 42(8): 4264-4274. |
[13] | TANG Lei, ZENG Desen, LING Ziye, ZHANG Zhengguo, FANG Xiaoming. Research progress of phase change materials and their application systems for cool storage [J]. Chemical Industry and Engineering Progress, 2023, 42(8): 4322-4339. |
[14] | WU Haibo, WANG Xilun, FANG Yanxiong, JI Hongbing. Progress of the development and application of 3D printing catalyst [J]. Chemical Industry and Engineering Progress, 2023, 42(8): 3956-3964. |
[15] | YU Junnan, YU Jianfeng, CHENG Yang, QI Yibo, HUA Chunjian, JIANG Yi. Performance prediction of variable-width microfluidic concentration gradient chips by deep learning [J]. Chemical Industry and Engineering Progress, 2023, 42(7): 3383-3393. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||
京ICP备12046843号-2;京公网安备 11010102001994号 Copyright © Chemical Industry and Engineering Progress, All Rights Reserved. E-mail: hgjz@cip.com.cn Powered by Beijing Magtech Co. Ltd |