[1] Brown A,Hargreaves J. Methane combustion in the presence of zirconia-based catalysts[J]. Topics in Catalysis,2009,52(5):458-463.[2] 马千里,所艳华,孟凡龙,等. SO42-/MxOy型固体超强酸催化剂改性及应用研究进展[J]. 工业催化,2014,22(2):85-91.[3] Arata K,Matsuhashi H,Hino M,et al. Synthesis of solid superacids and their activities for reactions of alkanes[J]. Catalysis Today,2003,81(1):17-30.[4] Jin Tuo,Yamaguchi Tsutomu,Tanabe Kozo. Mechanism of acidity generation on sulfur-promoted metal oxides[J]. J. Phys. Chem.,1986,90(20):4794-4796.[5] Ward David A,Ko Edmond I. One-step synthesis and characterization of zirconia-sulfate aerogels as solid superacids[J]. Journal of Catalysis,1994,150(1):18-33.[6] Saur O,Bensitel M,Saad A B Mohammed,et al. The structure and stability of sulfated alumina and titania[J]. Journal of Catalysis,1986,99(1):104-110.[7] Morterra C,Cerrato G,Pinna F,et al. Brösted acidity of a superacid sulfate-doped ZrO2 system[J]. The Journal of Chemical Physics,1994,98(47):12373-12381.[8] Laizet J B,Søiland A K,Leglise J,et al. Influence of sulfation and structure of zirconia on catalytic isomerization of n-hexane[J]. Topics in Catalysis,2000,10(1-2):89-97.[9] Rosenberg Daniel J,Anderson James A. On determination of acid site densities on sulfated oxides[J]. Catalysis Letters,2002,83(1-2):59-63.[10] Kustov L M,Kazansky V B,Figueras F,et al. Investigation of the acidic properties of ZrO2 modified by SO42- anions[J]. Journal of Catalysis,1994,150(1):143-149.[11] Riemer Thomas,Spielbauer Dieter,Hunger Michael,et al. Superacid properties of sulfated zirconia as measured by Raman and 1H MAS NMR spectroscopy[J]. Journal of the Chemical Society,Chemical Communications,1994,10:1181-1182.[12] Babou F,Bigot B,Coudurier G,et al. Sulfated zirconia for n-butane isomerhation experimental and theoretical approaches[J]. Studies in Surface Science and Catalysis,1994,90:519-529.[13] White R L,Sikabwe E C,Coelho M A,et al. Potential role of penta-coordinated sulfur in the acid site structure of sulfate zirconia[J]. Journal of Catalysis,1995,157(2):755-758.[14] 宋华,宋华林,崔雪涵,等. Pd含量对SO42-/ZrO2-WO3固体超强酸催化剂其异构化性能的影响[J]. 燃料化学学报,2012,40(11):1346-1352.[15] Triwahyono Sugeng,Jalil Aishah Abdul,Musthofa Malik. Generation of protonic acid sites from pentane on the surfaces of Pt/SO42--ZrO2 and Zn/H-ZSM5 evidenced by IR study of adsorbed pyridine[J]. Applied Catalysis A:General,2010,372(1):90-93.[16] Hino M,Arata K. Solid catalyst treated with anion.1.Catalytic activity of iron oxide treated with sulfate ion for dehydration of 2-propanol and ethanol and polymerization of isobutyl vinyl ether[J]. Chem. Lett.,1979,8(5):477-480.[17] Katada Naonobu,Endo Jun-ichi,Notsu Kei-ichi. Superacidity and catalytic activity of sulfated zirconia[J]. J. Phys. Chem. B,2000,104(44):10321-10328.[18] Volkova G G,Reshetnikov S I,Shkuratova L N. n-Hexane skeletal isomerization over sulfated zirconia catalysts with different Lewis acidity[J]. Chemical Engineering Journal,2007,134(1-3):106-110.[19] Yu G X,Lin D L,Hu Y,et al. RE2O3-promoted Pt-SO42-/ZrO2-Al2O3 catalyst in n-hexane hydroisomerization[J]. Catalysis Today,2011,166(1):84-90.[20] Pérez M,Armendáriz H,Toledo J A,et al. Preparation of Ni/ZrO2-SO42- catalysts by incipient wetness method:Effect of nickel on the isomerization of n-butane[J]. Journal of Molecular Catalysis A:Chemical,1999,149:169-178.[2[1]] Yu Feng,Guo Min,Wang Xu,et al. Synthesis of well-ordered SO42-/ZrO2-SiO2 materials in bi-acid system[J]. J. Fuel Chem. Technol.,2013,41(4):456-462.[22] Arata Kazushi. Organic syntheses catalyzed by superacidic metal oxides:Sulfated zirconia and related compounds[J]. Green Chemistry,2009,11:1719-1728.[23] Testa Maria Luisa,Parola Valeria La,Liotta Leonarda F,et al. Screening of different solid acid catalysts for glycerol acetylation[J]. Journal of Molecular Catalysis A:Chemical,2013,367:69-76.[24] Kuwahara Yasutaka,Kaburagi Wako,Nemoto Koji,et al. Esterification of levulinic acid with ethanol over sulfated Si-doped ZrO2 solid acid catalyst:Study of the structure-activity relationships[J]. Applied Catalysis A:General,2014,476(22):186-196.[25] 李三喜,徐妍如,王松. SO42-/TiO2-HZSM-5固体超强酸催化剂的制备及酯化性能[J]. 化工进展,2015,34(3):745-750.[26] Kinnunen Niko M,Hirvi Janne T,Venalainen Tapani,et al. Procedure to tailor activity of methane combustion catalyst:Relation between Pd/PdOx active sites and methane oxidation activity[J]. Applied Catalysis A:General,2011,397(1-2):54-61.[27] Gao Yilong,Wu Jianxiang,Zhang Wei,et al. SO42-/SnO2 as a new electrode for electrochemical[J]. Ceramics International,2014,40(6):8925-8929.[28] Iannaci Alessandro,Mecheri Barbara,D'Epifanio Alessandra,et al. Sulfated zirconium oxide as electrode and electrolyte additive for direct methanol fuel cell applications[J]. International Journal of Hydrogen Energy,2014,39(21):11241-11249.[29] Alhassan Fatah H,Rashid Umer,Taufiq-Yap Y H. Synthesis of waste cooking oil-based biodiesel via effectual recyclable bi-functional Fe2O3-MnO-SO42-/ZrO2 nanoparticle solid catalyst[J]. Fuel,2015,142(15):38-45.[30] Li Xuebing,Nagaoka Katsutoshi,Lercher Johannes A. Labile sulfates as key components in active sulfated zirconia for n-butane isomerization at low temperatures[J]. Journal of Catalysis,2004,227:130-137.[3[1]] Wang Jung-Hui,Mou Chung-Yuan. Alumina-promoted mesoporous sulfated zirconia:A catalyst for n-butane isomerization[J]. Applied Catalysis A:General,2005,286:128-136.[32] Song Hua,Wang Na,Song Hualin,et al. La-Ni modified S2O82-/ZrO2-Al2O3 catalyst in n-pentane hydroisomerization[J]. Catalysis Communications,2015,59:61-64.[33] Yang Ying-Chieh,Weng Hung-Shan. Al-promoted Pt/SO42-/ZrO2 with low sulfate content for n-heptane isomerization[J]. Applied Catalysis A:General,2010,384(1-2):94-100.[34] Xu Xin,Liu Tian,Xie Pengfei. Enhanced catalytic performance over Fe2O3-doped Pt/SO42-/ZrO2 in n-heptane hydroisomerization[J]. Catalysis Communications,2014,54:77-80.[35] 宋华,董鹏飞,石洋.Pt含量及活化温度对固体超强酸催化剂异构化性能的影响[J].高等学校化学学报,2011,32(2):355-360.[36] Hwang Chi-Chau,Mou Chung-Yuan. Comparison of the promotion effects on sulfated mesoporous zirconia catalysts achieved by alumina and gallium[J]. Applied Catalysis A:General,2009,365(2):173-179.[37] Watanabe Katsuya,Oshio Nobuyasu,Kawakami Takahito,et al. Isomerization reactions with sulfur-containing pentane over Metal/SO42-/ZrO2 catalysts[J]. Applied Catalysis A:General,2004,272(1-2):281-287.[38] Funamoto Takako,Nakagawa Takamasa,Segawa Kohichi. Isomerization of n-butane over sulfated zirconia catalyst under supercritical conditions[J].Applied Catalysis A:General,2005,286(1):79-84.[39] Hammache Sonia,Jr James G Goodwin. Characteristics of the active sites on sulfated zirconia for n-butane isomerization[J]. Journal of Catalysis,2003,218(2):258-266.[40] Blomsma E,Martens J A,Jacobs P A. Mechanisms of heptane isomerization on bifunctional Pd/H-beta zeolites[J]. Journal of Catalysis,1996,159(2):323-331.[41] López Carmen M,Sazo Virginia,Pérez Pedro,et al. n-Pentane hydroisomerization on Pt-promoted acid zeolites[J]. Applied Catalysis A:General,2010,372(1):108-113.[42] 贺鹤勇,邹艳,马卓娜,等. 低碳烷烃催化反应机理的固体核磁共振研究[J]. 物理化学学报,2004,20(专刊):1204-1031.[43] Aboul-Gheit A K,Gad F K,Abdel-Aleem G M. Pt,Re and Pt-Re incorporation in sulfated zirconia as catalysts for n-pentane isomerization[J]. Egyptian Journal of Petroleum,2014,23(3). DOI:10.1016/j.ejpe.2014.08.006.[44] Urzhuntsev G A,Ovchinnikova E V,Chumachenko V A. Isomerization of n-butane over Pd-SO42-/ZrO2 catalyst:Prospects for commercial application[J]. Chemical Engineering Journal,2014,238:148-156.[45] 宋华,孙恩浩,李锋,等.焙烧温度对微乳液法负载铂制备的Pt-S2O82-/ZrO2-Al2O3催化剂异构化性能的影响[J]. 燃料化学学报,2013,41(6):715-721.[46] Nie Yingying,Shang Shuning,Xu Xin,et al. In2O3-doped Pt/WO3/ZrO2 as a novel efficient catalyst for hydroisomerization of n-heptane[J]. Applied Catalysis A:General,2012,433/434:69-74.[47] Ahmed M A. Surface characterization and catalytic activity of sulfated-hafnia promoted zirconia catalysts for n-butane isomerization[J]. Fuel Processing Technology,2011,92(5):1121-1128.[48] Adeeva V,Dehaan J W,Janchen J,et al. Acid sites in sulfated and metal-promoted zirconium dioxide catalysts[J]. Journal of Catalysis,1995,151(2):364-372.[49] Zarkalis A S,Hsu C Y,Gates B C. Solid superacid catalysis-kinetics of butane isomerization catalyzed by a sulfated oxide containing iron,manganese,and zirconium[J]. Catalysis Letters,1994,29(1/2):235-239.[50] Li Xuebing,Nagaoka Katsutoshi,Simon Laurent J,et al. Mechanism of butane skeletal isomerization on sulfated zirconia[J]. Journal of Catalysis,2005,232(2):456-466.[51] Essayem N,Taârit Y Ben,Feche C,et al. Comparative study of n-pentane isomerization over solid acid catalysts,heteropolyacid,sulfated zirconia,and mordenite:Dependence on hydrogen and platinum addition[J]. Journal of Catalysis,2003,219(1):97-106.[52] Garin F,Seyfried L,Girard P,et al. A skeletal rearrangement study of labeled butanes on a solid superacid catalyst :Sulfuric-acid treated zirconium-oxide[J]. Journal of Catalysis,1995,151(1):26-32.[53] Nattaporn Lohitharn,Edgar Lotero,James G Goodwin Jr,et al. A comprehensive mechanistic pathway for n-butane isomerization on sulfated zirconia[J]. Journal of Catalysis,2006,241(2):328-341.[54] Echizen Tsuneo,Suzuk Tetsuo,Kamiy Yuichi,et al. Mechanistic study on skeletal isomerization of n-butane using 1,4-13C2-n-butane on typical solid acids and their Pt-promoted bifunctional catalysts[J]. Journal of Molecular Catalysis A:Chemical,2004,209:145-153.[55] 张丽. 原位固体核磁共振技术研究催化剂酸碱性质及正丁烷异构化反应[D]. 上海:复旦大学,2011. |