414
B. Bej et al.
Kim W, Mohaideen KK, Seo DJ, Yoon WL (2017) Methanol-steam reforming reaction over Cu-Albased catalysts derived from layered double hydroxides. Int J Hydrogen Energy 42:2081–2087
Lei Y, Luo Y, Li X, Lu J, Mei Z, Chen WPR, Chen K, Chen D, He D (2018) The role of samarium
on Cu/Al 2 O 3 catalyst in the methanol steam reforming for hydrogen production. Catal Today
307:162–168
Lu J, Li X, He S, Han C, Wan G, Lei Y, Chen R, Liu P, Chen K, Zhang L, Luo Y (2017) Hydrogen
production via methanol steam reforming over Ni-based catalysts: influences of Lanthanum (La)
addition and supports. Int J Hydrogen Energy 42:3647–3657
Patel S, Pant KK (2006) Influence of preparation method on performance of Cu(Zn)(Zr)-alumina
catalysts for the hydrogen production via steam reforming of methanol. J Porous Mater 13:373–
378
Pedrero CM, Queiros S, Concepcion P, Mendes A (2017) Innovative ZrO 2 -supported CuPd catalysts
for the selective production of hydrogen from methanol steam reforming. Appl Catal B Environ
203:400–407
Qi C, Amphlett JC, Peppley BA (2009) H 2 Production via the steam reforming of methanol over
NiAl-layered double hydroxide derived catalysts. Catal Surv Asia 13:16–21
Shetty K, Zhaoa S, Caoa W, Siriwardane U, Seetala NV, Kuila D (2007) Synthesis and characterization of non-noble nano-catalysts for hydrogen production in micro-reactors. J Power Sources
163:630–636
Tahay P, Khani Y, Jabari M, Bahadoran F, Safari N (2018) Highly porous monolith/TiO 2 supported
Cu, Cu-Ni, Ru, and Pt catalysts in methanol steam reforming process for H 2 generation. Appl
Catal A 554:44–53
Tian J, Ke Y, Kong G, Tan M, Wang Y, Lin J, Zhou W, Wan S (2017) A novel structured PdZnAl/Cu
fiber catalyst for methanol steam reforming in microreactor. Renew Energy 113:30–42
B. Bej et al.
Kim W, Mohaideen KK, Seo DJ, Yoon WL (2017) Methanol-steam reforming reaction over Cu-Albased catalysts derived from layered double hydroxides. Int J Hydrogen Energy 42:2081–2087
Lei Y, Luo Y, Li X, Lu J, Mei Z, Chen WPR, Chen K, Chen D, He D (2018) The role of samarium
on Cu/Al 2 O 3 catalyst in the methanol steam reforming for hydrogen production. Catal Today
307:162–168
Lu J, Li X, He S, Han C, Wan G, Lei Y, Chen R, Liu P, Chen K, Zhang L, Luo Y (2017) Hydrogen
production via methanol steam reforming over Ni-based catalysts: influences of Lanthanum (La)
addition and supports. Int J Hydrogen Energy 42:3647–3657
Patel S, Pant KK (2006) Influence of preparation method on performance of Cu(Zn)(Zr)-alumina
catalysts for the hydrogen production via steam reforming of methanol. J Porous Mater 13:373–
378
Pedrero CM, Queiros S, Concepcion P, Mendes A (2017) Innovative ZrO 2 -supported CuPd catalysts
for the selective production of hydrogen from methanol steam reforming. Appl Catal B Environ
203:400–407
Qi C, Amphlett JC, Peppley BA (2009) H 2 Production via the steam reforming of methanol over
NiAl-layered double hydroxide derived catalysts. Catal Surv Asia 13:16–21
Shetty K, Zhaoa S, Caoa W, Siriwardane U, Seetala NV, Kuila D (2007) Synthesis and characterization of non-noble nano-catalysts for hydrogen production in micro-reactors. J Power Sources
163:630–636
Tahay P, Khani Y, Jabari M, Bahadoran F, Safari N (2018) Highly porous monolith/TiO 2 supported
Cu, Cu-Ni, Ru, and Pt catalysts in methanol steam reforming process for H 2 generation. Appl
Catal A 554:44–53
Tian J, Ke Y, Kong G, Tan M, Wang Y, Lin J, Zhou W, Wan S (2017) A novel structured PdZnAl/Cu
fiber catalyst for methanol steam reforming in microreactor. Renew Energy 113:30–42
