158
6 Conversion of Methane to Aromatic Hydrocarbons
References
1. Guo X, Fang G, Li G, Ma H, Fan H, Yu L, Ma C, Wu X, Deng D, Wei M, Tan D, Si R, Zhang
S, Li J, Sun L, Tang Z, Pan X, Bao X (2014) Direct non oxidative conversion of methane to
ethylene, aromatics and hydrogen. Science 344:616–619
2. Bragin O, Vasina T, Isakov YI, Prebrazhenskii A, Prebrazhenskii A, Palishkina N, Minachev
KM (1982) Catalytic aromatization of methane and ethane. Russ Chem Bull 31:847
3. Shepelev SS, Inoe KG (1983) Catalytic properties of zeolite with structure and chemical
compositions in preparation of hydrocarbons from methane. React Kinet Catal Lett 23:319–
322
4. Anderson JR, Tsai P (1985) Oxidation of methane over H-ZSM-5 and other catalysts. Appl
Catal 191:141–152
5. Wang L, Tao L, Xie M, Xu G (1993) Dehydrogenation of aromatization of methane under
non-oxidative conditions. Catal Lett 21:35–41
6. Xu Y, Lin L (1999) Recent advances in methane dehydroaromatization over transition metal
ion-modified zeolite catalysts under non-oxidative conditions. Appl Catal A: General 188:53–
67
7. Ismagilov ZR, Matus EV, Tsikoza LT (2008) Direct conversion of methane on Mo/ZSM-5
catalysts to produce benzene and hydrogen: achievements and perspectives. Energy Environ
Sci 1:526–541
8. Ma S, Guo X, Zhao L, Scott S, Bao X (2013) Recent progress in methane dehydroaromatization: from laboratory curiosities to promising technology. J Energy Chem
22:1–20
9. Mamonov NA, Fadeeve EV, Grigoriev DA, Mikhailov MN, Kustov LM, Alkhimov SA (2013)
Metal/Zeolite catalysts of methane dehydroaromatization. Russ Chem Rev 82:567–585
10. Spivey JJ, Hutchings G (2014) Catalytic aromatization of methane. Chem Soc Rev 43:792–803
11. Vollmer I, Yurulina I, Kapteijn F, Gascon J (2018) Progress in developing a structure-activity
relationship for the direct aromatization of methane. ChemCatChem 10:1–15
12. Xu Y, Lu J, Wang J, Suzuki Y, Zhang ZG (2011) The catalytic stability of Mo/HZSM-5 in
methane dehydroaromatization at sever and periodic CH 4 -H 2 switch operation conditions.
Chem Eng J 168:390–402
13. Brady C, Murphy B, Xu B (2017) Enhanced methane dehydroaromatization via coupling with
chemical looping. ACS Catal 7:3924–3928
14. Cao Z, Jiang H, Luo H, Baumann S, Meulenberg WA, Assmann J, Mleczko L, Liu Y, Caro
J (2013) Natural gas to fuels and chemicals: improved methane aromatization in as oxygenpermeable membrane reactor. Angew Chem Int Ed 52:13794–13797
15. Yuste-Tirados I, Maleró-Fjeld H, Vestre PK, Coors WG, Martinez A, Norby T, Serra JM,
Kjólseth C (2016) Direct conversion of methane to aromatics in catalytic co-ionic membrane
reactor. Science 353:563–566
16. Xue J, Chen Y, Wei Y, Feldhoft A, Wang H, Caro J (2016) Gas to liquids: natural gas conversion
to aromatic fuels and chemicals in hydrogen permeable ceramic hollow fiber membrane
reactor. ASC Catal 6:2448–2451
17. Xu Y, Bao X, Lin L (2003) Direct conversion of methane under nonoxidative conditions. J
Catal 216:386–395
18. Okolie C, Lyu Y, Kovarik LV, Stavitski E, Sievers C (2018) Coupling of methane to ethane,
ethylene and aromatics over nickel on ceria-zirconia at low temperatures. ChemCatChem
10:2700–2708
19. Shu Y, Ma D, Xu L, Xu Y, Bao X (2000) Methane dehydro-aromatization over Mo/MCM-22
catalysts: a highly selective catalysts for the formation of benzene. Catal Lett 70:67–73
20. Li Y, Su L, Wang H, Li H, Shen W, Bao X, Xu Y (2003) Combined single-pass conversion
of methane via oxidative coupling and dehydroaromatization. Catal Lett 89:275–279
21. Liu S, Wang L, Ohnishi R, Ichikawa M (1999) Bifunctional catalysis of Mo/HZSM-5 in the
dehydroaromatization of methane to benzene and naphthalene XAFS/TG/DTA/MAS/FTIR
characterization and supporting effects. J Catal 181:175–188
6 Conversion of Methane to Aromatic Hydrocarbons
References
1. Guo X, Fang G, Li G, Ma H, Fan H, Yu L, Ma C, Wu X, Deng D, Wei M, Tan D, Si R, Zhang
S, Li J, Sun L, Tang Z, Pan X, Bao X (2014) Direct non oxidative conversion of methane to
ethylene, aromatics and hydrogen. Science 344:616–619
2. Bragin O, Vasina T, Isakov YI, Prebrazhenskii A, Prebrazhenskii A, Palishkina N, Minachev
KM (1982) Catalytic aromatization of methane and ethane. Russ Chem Bull 31:847
3. Shepelev SS, Inoe KG (1983) Catalytic properties of zeolite with structure and chemical
compositions in preparation of hydrocarbons from methane. React Kinet Catal Lett 23:319–
322
4. Anderson JR, Tsai P (1985) Oxidation of methane over H-ZSM-5 and other catalysts. Appl
Catal 191:141–152
5. Wang L, Tao L, Xie M, Xu G (1993) Dehydrogenation of aromatization of methane under
non-oxidative conditions. Catal Lett 21:35–41
6. Xu Y, Lin L (1999) Recent advances in methane dehydroaromatization over transition metal
ion-modified zeolite catalysts under non-oxidative conditions. Appl Catal A: General 188:53–
67
7. Ismagilov ZR, Matus EV, Tsikoza LT (2008) Direct conversion of methane on Mo/ZSM-5
catalysts to produce benzene and hydrogen: achievements and perspectives. Energy Environ
Sci 1:526–541
8. Ma S, Guo X, Zhao L, Scott S, Bao X (2013) Recent progress in methane dehydroaromatization: from laboratory curiosities to promising technology. J Energy Chem
22:1–20
9. Mamonov NA, Fadeeve EV, Grigoriev DA, Mikhailov MN, Kustov LM, Alkhimov SA (2013)
Metal/Zeolite catalysts of methane dehydroaromatization. Russ Chem Rev 82:567–585
10. Spivey JJ, Hutchings G (2014) Catalytic aromatization of methane. Chem Soc Rev 43:792–803
11. Vollmer I, Yurulina I, Kapteijn F, Gascon J (2018) Progress in developing a structure-activity
relationship for the direct aromatization of methane. ChemCatChem 10:1–15
12. Xu Y, Lu J, Wang J, Suzuki Y, Zhang ZG (2011) The catalytic stability of Mo/HZSM-5 in
methane dehydroaromatization at sever and periodic CH 4 -H 2 switch operation conditions.
Chem Eng J 168:390–402
13. Brady C, Murphy B, Xu B (2017) Enhanced methane dehydroaromatization via coupling with
chemical looping. ACS Catal 7:3924–3928
14. Cao Z, Jiang H, Luo H, Baumann S, Meulenberg WA, Assmann J, Mleczko L, Liu Y, Caro
J (2013) Natural gas to fuels and chemicals: improved methane aromatization in as oxygenpermeable membrane reactor. Angew Chem Int Ed 52:13794–13797
15. Yuste-Tirados I, Maleró-Fjeld H, Vestre PK, Coors WG, Martinez A, Norby T, Serra JM,
Kjólseth C (2016) Direct conversion of methane to aromatics in catalytic co-ionic membrane
reactor. Science 353:563–566
16. Xue J, Chen Y, Wei Y, Feldhoft A, Wang H, Caro J (2016) Gas to liquids: natural gas conversion
to aromatic fuels and chemicals in hydrogen permeable ceramic hollow fiber membrane
reactor. ASC Catal 6:2448–2451
17. Xu Y, Bao X, Lin L (2003) Direct conversion of methane under nonoxidative conditions. J
Catal 216:386–395
18. Okolie C, Lyu Y, Kovarik LV, Stavitski E, Sievers C (2018) Coupling of methane to ethane,
ethylene and aromatics over nickel on ceria-zirconia at low temperatures. ChemCatChem
10:2700–2708
19. Shu Y, Ma D, Xu L, Xu Y, Bao X (2000) Methane dehydro-aromatization over Mo/MCM-22
catalysts: a highly selective catalysts for the formation of benzene. Catal Lett 70:67–73
20. Li Y, Su L, Wang H, Li H, Shen W, Bao X, Xu Y (2003) Combined single-pass conversion
of methane via oxidative coupling and dehydroaromatization. Catal Lett 89:275–279
21. Liu S, Wang L, Ohnishi R, Ichikawa M (1999) Bifunctional catalysis of Mo/HZSM-5 in the
dehydroaromatization of methane to benzene and naphthalene XAFS/TG/DTA/MAS/FTIR
characterization and supporting effects. J Catal 181:175–188
