References
123
67. Ismagilov IZ, Matus EV, Kuznetsov VV, Kerzhentsev MA, Yashnik SA, Larina TV, Prosvirin
IP, Navarro RM, Fierro JLG, Gerritsen G, Abbennuis HCL, Ismagilov ZR (2016) Effect
of preparation mode on the properties of Mn-Na-W/SiO 2 catalyst for oxidative coupling of
methane: conventional methods vs. post nanotechnology. Eurasian Chem-Technol J 18(2):93–
110
68. Shubin A, Zilberberg I, Ismagilov I, Matus E, Kerzhentsev M, Ismagilov Z (2018) Hydrogen
abstraction from methane on cristobalite supported W and Mn oxo complexes: a DFT study.
J Mol Catal 445:307–315
69. Ekstrom A, Lapszewicz JA, Campbell I (1989) Origin of the low limits in the higher
hydrocarbons yields in the oxidative coupling reaction methane. Appl Catal 56:L29–L34
70. Korf SJ, Roos JA, Derksen JWHC, Vreeman JA, Van Ommen JG, Ross JRH (1990) Oxidative
coupling of methane over Ba/CaO catalysts. A comparison with Li/MgO. Appl Catal 59:291–
309
71. Otsuka K, Jinno K, Morikawa A (1986) Active and selective catalysts for synthesis of C 2 H 6
and C 2 H 4 via oxidative coupling of methane. J Catal 100:353–359
72. Shi C, Rosynek MP, Lunsford JH (1994) Origin of carbon oxides during the oxidative coupling
of methane. J Phys Chem 98:8371–8376
73. Nelson PF, Cant NW (1990) Oxidation of C 2 hydrocarbon products during the oxidative
coupling of methane over a Li/MgO catalyst. J Phys Chem 94:3756–3761
74. Yaghobi N, Ghoreisky MHR (2008) Oxidative coupling of methane in a fixed bed reactor over
perovskite catalysts: a simulation study using experimental kinetic model. J Nat Gas Chem
17:8–16
75. Hiyoshi N, Ikeda T (2015) Oxidative coupling of methane over alkali chloride-MnNa 2 WO 4 /SiO 2 catalysts: promoting effect of molten alkali chloride. Fuel Proc Technol
133:29–34
76. Chua YT, Mohamed AR, Bhatia S (2008) Oxidative coupling of methane for production of
ethylene over sodium-tungsten-manganese-supported-silica catalyst. Appl Catal A: General
343:142–148
77. Hiyoshi N, Sato K (2016) Oxidative coupling of methane over Mn-Na 2 WO 4 /SiO 2 . Fuel Proc
Technol 151:148–154
78. Yaghobi N, Ghoreisky MHR (2008) Comparative study on the kinetic modeling if the oxidative
coupling of methane in laboratory and bench scales. Chem Prod Proc Model 3:16/1–16/26.
https://doi.org/10.2202/1934-2659.1133
79. Hamidzadeh M, Sahebdelfar S, Jafari N, Mohammad R (2010) Method for preparing
ceramic catalyst for converting methane to higher hydrocarbons by oxidative condensation
(or coupling) of methane, Brit. UK Pat Appl (2010) GB 2469877A
80. Dedov AG, Nipan GD, Loktev AS, Tyunyaev AA, Ketsko AV, Pakhomenko KV, Miseev II
(2011) Oxidative coupling of methane: influence of the phase composition of silica-based
catalysts. App Catal A: General 406:1–21
81. Fallah B, Falamaki C (2010) A new nano-(2Li2O/MgO) catalyst/porous α-alumina composite
for the oxidative coupling of methane reaction. AIChE J 56:717–728
82. Albrecht M, Rodemerck U, Kondratenko E (2014) Higher hydrocarbon production through
oxidative coupling of methane combined with hydrogenation of carbon oxide. Chem Ind Tech
86:1894–1900
83. Nipan GD, Artukh VA, Yusupov VS, Loktev AS, Spesivtsev NA, Dedov AG, Moiseev II (2014)
Pressure effect on the formation of active components of a catalyst for methane oxidative
coupling. Doklady Phys Chem 455:60–63
84. Wu J, Zghang M, Feng J, Ke L, Zhao Q, Xue W (2014) Preparation and application of
supported catalysts for methane oxidation coupling for preparing lower olefins, Patent CN
103657640 A 20140326
85. Zheng W, Cheng D, Chen F, Zhan X (2010) Characterization and catalytic behavior of NaW-Mn-Zr-S-Na 2 WO 4 /SiO 2 prepared by different methods in oxidative coupling of methane.
J Nat Gas Chem 19:515–521
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