[1] PONTZENA F,LIEBNER W,GRONEMANN V,et al. CO2-based methanol and DME-Efficient technologies for industrial scale production[J]. Catalysis Today,2011,171:242-250. [2] CECILIA M P,SILVA H,TANAKA D A P,et al. CuO/ZnO catalysts for methanol steam reforming:the role of the support polarity ratio and surface area[J]. Applied Catalysis B:Environmental,2015,174/175:67-76. [3] BEHRENS M,ZANDER S,KURR P,et al. Performance improvement of nanocatalysts by promoter-inducedDefects in the support material:methanol synthesis over Cu/ZnO:Al[J]. Journal of the American Chemical Society,2013,135:6061-6068. [4] ALIK A,ABDULLAHN A Z,MOHAMED A R. Recent development in catalytic technologies for methanol synthesis from renewable sources:a critical review[J]. Renewable and Sustainable Energy Reviews,2015,44:508-518. [5] CHOI J,KIM J,YOO K S,et al. Synthesis of mesoporous TiO2/γ-Al2O3 composite granules with different sol composition and calcination temperature[J]. Powder Technology,2008,181:83-88. [6] 郭长友,沈智奇,张志民. TiO2·Al2O3 复合氧化物载体研究进展[J]. 化工进展,2011,30(7):1482-1488. [7] GUO C Y,SHEN Z Q,HU Q,et al. The solvothermal synthesis,structure and properties of Al2O3·TiO2 mesoporous material[J]. Materials Chemistry and Physics,2015,151:288-294. [8] OVEISI H,BEITOLLAHI A,IMURA M,et al. Synthesis and characterization of highly ordered titania-alumina mixed oxide mesoporousfilms with high alumina content[J]. Microporous and Mesoporous Materials,2010,134:150-156. [9] MISHRA H K,STANCIULESCU M,CHARLAND J P,et al. Mesoporoustitania-alumina mixed oxide:a preliminary study on synthesis andapplication in selective catalytic reduction of NOx[J]. Applied Surface Science,2008,254:7098-7103. [10] AHMED M A,ABDELl-MESSIH M F. Structural and nano-composite features of TiO2-Al2O3 powders prepared by sol-gel method[J]. Journal of Alloys and Compounds,2011,509:2154- 2159. [11] 李惠娟,蒋晓原,郑小明. 钛铝载体的合成及负载CuO对NO催化性能研究[J]. 物理化学学报,2006,22(5):584-589. [12] XIONG G,WANG X,LU L,et al. Preparation and characterization of Al2O3-TiO2 composite oxide nanocrystals[J]. Journal of Solid State Chemistary,1998,141:70-77. [13] WANG D,YANG G H, MA Q X,et al. Facile solid-state synthesis of Cu-Zn-O catalysts for novel ethanol synthesisfrom dimethyl ether(DME)and syngas(CO+H2)[J]. Fuel,2013,109:54-60. [14] XU B,LI D,CHEN Y. Influence of CuO loading on dispersion and reduction behavior of CuO/TiO2 anatase system[J]. Journal of the Chemical Society,Faraday Transactions,1998,94(13):1905-1909. [15] WALKER G S,WILLIAMS E,BHATTACHARYA A K. Preparation and characterization of high surface area alumina-titania solid acids[J]. Journal of Material Science,1997,32:5583-5592. [16] GUTIEZ-ALEJANDRE A,RAMIREZ J,VAL I J,et al. Activity of NiW catalysts supported on TiO2-Al2O3 mixed oxides effect of Ti incorporation method on the HDS of 4,6-DMDBT[J]. Catalysis Today,2005,107/108:879-884. [17] 洪伟,刘百军,王宏宾, 等. TiO2-Al2O3的水热法合成及其负载的 NiMoP 催化剂上FCC 柴油加氢脱硫性能[J].催化化学, 2012,33:1586-1593. [18] 高志华,贾钦,黄伟,等. 完全液相法制 CuZnAl 合成二甲醚浆状催化剂的催化性能[J]. 化工学报,2011,62(1):87-91. |