[1] 王超, 王定博, 戴伟.催化裂化汽油降烯烃研究进展[J].化工进展, 2005, 24(9):971-975.[2] 洪定一.2012年我国石油化工行业进展及展望[J].化工进展, 2013, 32(3):481-500.[3] 王晓, 霍东亮, 余济伟, 等.催化裂化汽油芳构化降烯烃催化剂的改进研究[J].石油炼制与化工, 2013, 44(10):66-70.[4] 颖钱, 马好文, 王宗宝, 等.FCC 汽油加氢改质催化剂及改质工艺[J].化工进展, 2011, 30(10):2200-2204.[5] Li D, Li M, Chu Y, et al.Skeletal isomerization of light FCC naphtha[J].Catalysis Today, 2003, 81:65-73.[6] Shi G, Fang D, Shen J.Hydroisomerization of model FCC naphtha over sulfided Co(Ni)-Mo(W)/MCM-41 catalysts[J].Microporous and Mesoporous Materials, 2009, 120:339-345.[7] 于海卫, 刘盛林, 刘伟成, 等.汽油中烯烃异构和芳构化偶合热力学分析[J].石油学报:石油加工, 2007, 23(2):51-56.[8] 宋业恒.干气芳构化技术通过鉴定[J].炼油技术与工程, 2012, 42(4):40.[9] 徐清华, 曾蓬.液化气芳构化生产芳烃技术及工业应用进展[J].当代化工, 2012, 41(6):629-631.[10] Brouwer D M.HF-Sb5 catalysed isomerization of n-butane-1-13C[J].Recueil des Travaux Chimiques des Pays-Bas, 1968, 87:1435-1444.[11] Cheng Z X, Ponec V.On the problems of the mechanism of the skeletal isomerization of n-butene[J].Catalysis Letters, 1994, 27:113-117.[12] Cheng Z, Ponec V.Selective isomerization of butene to isobutene[J].Catalysis Letters, 1994, 25:337-349.[13] Hou?Vi?Ka J, Ponec V.Skeletal isomerization of n-butene[J].Catalysis Reviews:Science and Engineering, 1997, 39(4):319-344.[14] Karabatsos G J, Vane F M.Bimolecular reactions in carbonium ion rearrangements[J].Journal of the American Chemical Society, 1961, 83(20):4297-4298.[15] Guisnet M, Andy P, Gnep N S, et al.Selective skeletal butene isomerization through a bimolecular mechanism[J].Oil & Gas Science and Technology, 1999, 54(1):23-28.[16] Rutenbeck D, Pappa H, Ernst H, et al.Investigations on the reaction mechanism of the skeletal isomerization of n-butenes to isobutene Part II.Reaction mechanism on ferrierites[J].Applied Catalysis A:General, 2001, 208:153-161.[17] Xu W, Yin Y, Suib S L, et al.Coke formation and its effects on shape selective adsorptive and catalytic properties of ferrierite[J].The Journal of Physical Chemistry, 1995, 99(2):758-765.[18] Guisnet M, Andy P, Gnep N S, et al.Origin of the positive effect of coke deposits on the skeletal isomerization of n-butenes over a H-FER zeolite[J].Journal of the Chemical Society, Chemical Communications, 1995, 16:1685-1686.[19] Andy P, Gnep N S, Guisnet M, et al.Skeletal isomerization of n-butenes Ⅱ.Composition, mode of formation, and influence of coke deposits on the reaction mechanism[J].Journal of Catalysis, 1998, 173:322-332.[20] Ménorval B, Ayrault P, Gnep N S, et al.Mechanism of n-butene skeletal isomerization over HFER zeolites:A new proposal[J].Journal of Catalysis, 2005, 230:38-51.[21] Asensi M A, Corma A, Martinez A.Skeletal isomerization of 1-butene on MCM-22 zeolite catalyst[J].Journal of Catalysis, 1996, 158:561-569.[22] Asensi M A, Martínez A.Selective isomerization of n-butenes to isobutene on high Si/Al ratio ferrierite in the absence of coke deposits:Implications on the reaction mechanism[J].Applied Catalysis A:General, 1999, 183(1):155-165.[23] ?ejka J, WichterlováB, Sarv P.Extent of monomolecular and bimolecular mechanism in n-butene skeletal isomerization to isobutene over molecular sieves[J].Applied Catalysis A:General, 1999, 179(1-2):217-222.[24] Houzvicka J, Ponec V.Skeletal isomerization of butene:On the role of the bimolecular mechanism[J].Industrial and Engineering Chemistry Research, 1997, 36:1424-1430.[25] Hou?vi?ka J, Klik R, KubelkováL, et al.The role of the density of active sites in skeletal isomerisation of n-butene[J].Applied Catalysis A:General, 1997, 150(1):101-114.[26] Simon M W, Suib S L, Oyoung C L.Synthesis and characterization of ZSM-22 zeolites and their catalytic behavior in 1-butene isomerization reactions[J].Journal of Catalysis, 1994, 147(2):484-493.[27] Klerk A.Isomerization of 1-butene to isobutene at low temperature[J].Industrial and Engineering Chemistry Research, 2004, 43:6235-6330.[28] Klerk A D, Hadebe S W, Govender J R, et al.Linear α-olefins from linear internal olefins by a boron-based continuous double-bond isomerization process[J].Industrial and Engineering Chemistry Research, 2007, 46:400-410.[29] Abbot J, Wojciechowski B W.The mechanism of catalytic cracking of n-alkenes on ZSM-5 zeolite[J].The Canadian Journal of Chemical Engineering, 1985, 63(3):462-469.[30] Mäurer T, Czarnetzki B K.Thermodynamic and kinetic reaction regimes in the isomerization of 1-pentene over ZSM-5 catalysts[J].Journal of Catalysis, 1999, 187(1):202-208.[31] Höchtl M, Jentys A, Vinek H.Isomerization of 1-pentene over SAPO, CoAPO(AEL, AFI) molecular sieves and HZSM-5[J].Applied Catalysis A:General, 2001, 207:397-405.[32] Vahteristo K, Sahala K M, Laari A, et al.Skeletal isomerization kinetics of 1-pentene over an HZSM-22 catalyst[J].Chemical Engineering Science, 2010, 65(16):4640-4651.[33] Föttinger K, Kinger G, Vinek H.1-Pentene isomerization over FER and BEA[J].Applied Catalysis A:General, 2003, 249(2):205-212.[34] Abbot J, Corma A, Wojciechowski B W.The catalytic isomerization of 1-hexene on H-ZSM-5 zeolite:The effects of a shape-selective catalyst[J].Journal of Catalysis, 1985, 92:398-408.[35] Abbot J, Wojciechowski B W.Catalytic reactions of n-hexenes on amorphous silica-alumina[J].The Canadian Journal of Chemical Engineering, 1985, 63(5):818-825.[36] Abbot J, Wojciechowski B W.Catalytic cracking and skeletal isomerization of n-hexene on ZSM-5 zeolite[J].The Canadian Journal of Chemical Engineering, 1985, 63(3):451-461.[37] Abbot J, Wojciechowski B W.Kinetics and selectivity of reactions of 1-alkenes on HY zeolite:The influence of chain length[J].The Canadian Journal of Chemical Engineering, 1988, 66:817-824.[38] Li Z, Zhang J, Yang C, et al.Studies on chemical mechanism of 1-heptene acid-catalyzed reactions[J].Preprint Papers:American Chemical Society, Division of Fuel Chemistry, 2003, 48(2):627-629.[39] 李正, 叶天旭, 袁裕霞, 等.烯烃固体酸催化反应CTS机理的验证[C]//第九届全国化学工艺学术年会论文集, 北京, 2005:1126-1133.[40] 李正, 袁裕霞, 杨朝合, 等.烯烃固体酸催化反应CTS机理的提出[C]//第九届全国化学工艺学术年会论文集, 北京, 2005:1117-1125.[41] Isaguliantsa G V, Gitisa K M, Kondratjeva D A, et al.On the formation of hydrocarbon chains in the aromatization of aliphatic olefins and dienes over high-silica zeolites[J].Studies in Surface Science and Catalysis, 1984, 18:225-232.[42] Vedrine J C, Dejaifvea P, Garbowskib E D, et al.Aromatics formation from methanol and light olefins conversions on H-ZSM-5 zeolite:Mechanism and intermediate species[J].Studies in Surface Science and Catalysis, 1980, 5:29-37.[43] Dejaifve P, Vrine J C, Bole V, et al.Reaction pathways for the conversion of methanol and olefins on H-ZSM-5 zeolite[J].Journal of Catalysis, 1980, 63:331-345.[44] Lukyanov D B, Gnep N S, Guisnet M R.Kinetic modeling of ethene and propene aromatization over HZSM-5 and GaHZSM-5[J].Industrial & Engineering Chemistry Research, 1994, 33(2):223-234.[45] Lukyanov D B.Application of a kinetic model for investigation of aromatization reactions of light paraffins and olefins over HZSM-5[J].Studies in Surface Science and Catalysis, 1997, 105:1301-1308.[46] Song Y, Zhu X, Xu L.Study on the process of transformation of olefin into aromatics over HZSM-5[J].Catalysis Communications, 2006, 7:218-223.[47] Song Y, Zhu X, Xie S, et al.The effect of acidity on olefin aromatization over potassium modified ZSM-5 catalysts[J].Catalysis Letters, 2004, 97(1-2):31-36.[48] Shibata M, Tagawa H K, Sendoda Y, et al.Transformation of propene into aromatic hydrocarbons over ZSM-5 zeolites[J].Studies in Surface Science and Catalysis, 1986, 28:717-724.[49] Ono Y, Kitagawa H, Sendoda Y.Transformation of 1-butene into aromatic hydrocarbons over ZSM-5 zeolites[J].Journal of the Chemical Society, Faraday Transactions, 1987, 83(9):2913-2923.[50] 赵晨曦, 宋春敏, 阎子峰.NiO改性HZSM-5分子筛催化剂催化1-丁烯芳构化反应[J].石油化工, 2005, 34(10):917-921.[51] 刘维桥, 雷卫宁, 尚通明, 等.Ga 改性的HZSM-5分子筛甲醇芳构化催化反应性能[J].化工进展, 2011, 30(12):2637-2641.[52] Choudhary V R, Panjala D, Banerjee S.Aromatization of propene and n-butene over H-galloaluminosilicate(ZSM-5 type) zeolite[J].Applied Catalysis A:General, 2002, 231:243-251.[53] 王恒强, 张成华, 吴宝山, 等.Ga、Zn改性方法对HZSM-5催化剂丙烯芳构化性能的影响[J].燃料化学学报, 2010, 38(5):576-581.[54] 刘多强, 都长飞, 高崇峰.戊烯芳构化反应的研究[J].石化技术与应用, 2007, 25(4):305-309. |