160
6 Conversion of Methane to Aromatic Hydrocarbons
43. Abdelsayed V, Smoith MW, Shekhuwat D (2015) Investigation of the stability of Zn-based
HZSM-5 catalysts for methane dehydroaromatization. Appl Catal A: General 505:365–374
44. Zhang H, Lou H, Zheng X (2004) Catalytic conversion of methane at low temperature over
6% Zn/HZSM-5 zeolite. Chin J Catal 25:255–256
45. Gerceker D, Motagamwala AH, Rivera-Dones KR, Miller JB, Huber GW, Mavrikakis M,
Dumesic JA (2017) Methane conversion to ethylene and aromatics on PtSn catalysts. ASC
Catal 7:2088–2100
46. Tan PL, Au CT, Li SY (2006) Methane dehydrogenation and aromatization over 4wt%
Mn/HZSM-5 in the absence of an oxidant. Catal Lett 112:239–245
47. Burna SJ, Hargreaves JS, Pal P, Parida KM, Parija S (2006) The effect of dopants on the
activity of MoO 3 /ZSM-5 catalysts for the dehydroaromatization of methane. Catal Today
114:383–387
48. Liu S, Dong Q, Ohnishi R, Ichikawa M (1997) Remarkable non-oxidative conversion of
methane to naphthalene and benzene on Co and Fe modified Mo/HZSM-5 catalysts. Chem
Commun 1455–1456
49. Cheng X, Yan P, Zhang X, Yang F, Pai C, Li D, Ma XX (2017) Enhanced methane dehydroaromatization in the presence of CO 2 over Fe- and Mg-modified Mo/ZSM-5. J Mol Catal
437:114–120
50. Vosmerikov AV, Zaikovskii VI, Korobitsyna LL, Echevskii GV, Barbashin YE, Zhuravkov
ZP (2009) Nonoxidative conversion methane into aromatic hydrocarbons on Ni-Mo/ZSM-5
catalysts. Kinet Catal 50:725–733
51. Liu HM, Tian BL, Li YG, Bao XH, Xu YD (2003) Effect of Co additive on the formation
of coke deposits in methane dehydro-aromatization over Mo/HZSM-5 catalyst. Chin J Catal
24:123–128
52. Li S, Zhang C, Kan Q, Wang D, Wu T, Lin L (1999) The function of Cu(II) ions in the
Mo/Cu/H-ZSM-5 catalyst for methane conversion under non-oxidative condition. Appl Catal
A: General 187:199–206
53. Qi S, Yang B (2004) Methane aromatization using Mo-based catalysts prepared by microwave
heating. Catal Today 98:639–645
54. Zhang YP, Wang DJ, Fei JH, Zheng XM (2001) Methane aromatization under O 2 -free
conditions on zinc modified Mo/HZSM-5 catalyst. React Kinet Catal Lett 74:151–161
55. Liu BS, Yang Y, Sayari A (2001) Non-oxidative dehydroaromatization of methane over Gapromoted Mo/HZSM-5 based catalysts. Appl Catal A: General 214:95–102
56. Liu BS, Jiang L, Sun H, Au CT (2007) XPS, XAFS and TG/DTA characterization of
deposited carbon in methane dehydroaromatization over Ga-Mo/ZSM-5 catalyst. Appl Surf
Sci 253:5092–5100
57. Tshabalala TE, Coville NJ, Scurrell MS (2014) Dehydroaromatization of methane over doped
Pt/Mo/H-ZSM-5 zeolite catalysts: the promotion effect of tin. Appl Catal A: General 485:238–
244
58. Kojima R, Kikuchi S, Ma H, Bai J, Ichikawa M (2006) Promotion effects of Pt and Rh on
catalytic performance of Mo/HZSM-5 and Mo/HMCM-22 in selective methane-to-benzene
reaction. Catal Lett 110:15–21
59. Wang ST, Xu Y, Wang L, Liu S, Li G, Xie M, Guo X (1996) Methane and ethane activation
without adding oxygen: promotional effect of W in Mo-W/H-ZSM-5. Catal Lett 38:39–43
60. Zhang Y, Wang W, Fei J, Zheng X (2002) Effect of Cr addition on the methane aromatization
performance of the Mo/HZSM-5. Aust J Chem 55:531–534
61. Shu Y, Xu Y, Wang ST, Wang L, Guo X (1997) Promotion effect of Ru on the dehydrogenation
and aromatization of methane in the absence of oxygen over Mo/HZSM-5 catalysts. J Catal
170:11–19
62. Wang L, Xu Y, Wong ST, Cui W, Guo X (1997) Activity and stability enhancement of
Mo/HZSM-5 based catalysts for methane non-oxidative transformation to aromatics and
C 2 hydrocarbons: effect of additives and pretreatment conditions. Appl Catal A: General
152:173–182
6 Conversion of Methane to Aromatic Hydrocarbons
43. Abdelsayed V, Smoith MW, Shekhuwat D (2015) Investigation of the stability of Zn-based
HZSM-5 catalysts for methane dehydroaromatization. Appl Catal A: General 505:365–374
44. Zhang H, Lou H, Zheng X (2004) Catalytic conversion of methane at low temperature over
6% Zn/HZSM-5 zeolite. Chin J Catal 25:255–256
45. Gerceker D, Motagamwala AH, Rivera-Dones KR, Miller JB, Huber GW, Mavrikakis M,
Dumesic JA (2017) Methane conversion to ethylene and aromatics on PtSn catalysts. ASC
Catal 7:2088–2100
46. Tan PL, Au CT, Li SY (2006) Methane dehydrogenation and aromatization over 4wt%
Mn/HZSM-5 in the absence of an oxidant. Catal Lett 112:239–245
47. Burna SJ, Hargreaves JS, Pal P, Parida KM, Parija S (2006) The effect of dopants on the
activity of MoO 3 /ZSM-5 catalysts for the dehydroaromatization of methane. Catal Today
114:383–387
48. Liu S, Dong Q, Ohnishi R, Ichikawa M (1997) Remarkable non-oxidative conversion of
methane to naphthalene and benzene on Co and Fe modified Mo/HZSM-5 catalysts. Chem
Commun 1455–1456
49. Cheng X, Yan P, Zhang X, Yang F, Pai C, Li D, Ma XX (2017) Enhanced methane dehydroaromatization in the presence of CO 2 over Fe- and Mg-modified Mo/ZSM-5. J Mol Catal
437:114–120
50. Vosmerikov AV, Zaikovskii VI, Korobitsyna LL, Echevskii GV, Barbashin YE, Zhuravkov
ZP (2009) Nonoxidative conversion methane into aromatic hydrocarbons on Ni-Mo/ZSM-5
catalysts. Kinet Catal 50:725–733
51. Liu HM, Tian BL, Li YG, Bao XH, Xu YD (2003) Effect of Co additive on the formation
of coke deposits in methane dehydro-aromatization over Mo/HZSM-5 catalyst. Chin J Catal
24:123–128
52. Li S, Zhang C, Kan Q, Wang D, Wu T, Lin L (1999) The function of Cu(II) ions in the
Mo/Cu/H-ZSM-5 catalyst for methane conversion under non-oxidative condition. Appl Catal
A: General 187:199–206
53. Qi S, Yang B (2004) Methane aromatization using Mo-based catalysts prepared by microwave
heating. Catal Today 98:639–645
54. Zhang YP, Wang DJ, Fei JH, Zheng XM (2001) Methane aromatization under O 2 -free
conditions on zinc modified Mo/HZSM-5 catalyst. React Kinet Catal Lett 74:151–161
55. Liu BS, Yang Y, Sayari A (2001) Non-oxidative dehydroaromatization of methane over Gapromoted Mo/HZSM-5 based catalysts. Appl Catal A: General 214:95–102
56. Liu BS, Jiang L, Sun H, Au CT (2007) XPS, XAFS and TG/DTA characterization of
deposited carbon in methane dehydroaromatization over Ga-Mo/ZSM-5 catalyst. Appl Surf
Sci 253:5092–5100
57. Tshabalala TE, Coville NJ, Scurrell MS (2014) Dehydroaromatization of methane over doped
Pt/Mo/H-ZSM-5 zeolite catalysts: the promotion effect of tin. Appl Catal A: General 485:238–
244
58. Kojima R, Kikuchi S, Ma H, Bai J, Ichikawa M (2006) Promotion effects of Pt and Rh on
catalytic performance of Mo/HZSM-5 and Mo/HMCM-22 in selective methane-to-benzene
reaction. Catal Lett 110:15–21
59. Wang ST, Xu Y, Wang L, Liu S, Li G, Xie M, Guo X (1996) Methane and ethane activation
without adding oxygen: promotional effect of W in Mo-W/H-ZSM-5. Catal Lett 38:39–43
60. Zhang Y, Wang W, Fei J, Zheng X (2002) Effect of Cr addition on the methane aromatization
performance of the Mo/HZSM-5. Aust J Chem 55:531–534
61. Shu Y, Xu Y, Wang ST, Wang L, Guo X (1997) Promotion effect of Ru on the dehydrogenation
and aromatization of methane in the absence of oxygen over Mo/HZSM-5 catalysts. J Catal
170:11–19
62. Wang L, Xu Y, Wong ST, Cui W, Guo X (1997) Activity and stability enhancement of
Mo/HZSM-5 based catalysts for methane non-oxidative transformation to aromatics and
C 2 hydrocarbons: effect of additives and pretreatment conditions. Appl Catal A: General
152:173–182
