Skip to main content
Top

2016 | OriginalPaper | Chapter

8. Steam Reforming

Authors : Yusuke Shiratori, Quang-Tuyen Tran, Teppei Ogura, Osamu Higashi, Stephen M. Lyth, Masaki Tajima

Published in: Hydrogen Energy Engineering

Publisher: Springer Japan

Activate our intelligent search to find suitable subject content or patents.

search-config
loading …

Abstract

This chapter introduces steam reforming, still the major method of large-scale hydrogen gas production. First, steam reforming of natural gas and its implementation as an industrial process is introduced. The combination of steam reforming with carbon capture is briefly discussed in order to make the process carbon-neutral. Finally, steam reforming of biofuels is considered.

Dont have a licence yet? Then find out more about our products and how to get one now:

Springer Professional "Wirtschaft+Technik"

Online-Abonnement

Mit Springer Professional "Wirtschaft+Technik" erhalten Sie Zugriff auf:

  • über 102.000 Bücher
  • über 537 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Maschinenbau + Werkstoffe
  • Versicherung + Risiko

Jetzt Wissensvorsprung sichern!

Springer Professional "Technik"

Online-Abonnement

Mit Springer Professional "Technik" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 390 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Maschinenbau + Werkstoffe




 

Jetzt Wissensvorsprung sichern!

Literature
1.
go back to reference Asia biomass handbook (2008) The Japan Institute of Energy, Japan (in Japanese) Asia biomass handbook (2008) The Japan Institute of Energy, Japan (in Japanese)
2.
go back to reference Surendra KC, Takara D, Hashimoto AG, Khanal SK (2014) Biogas as a sustainable energy source for developing countries: opportunities and challenges. Renew Sustain Energy Rev 31:846–859CrossRef Surendra KC, Takara D, Hashimoto AG, Khanal SK (2014) Biogas as a sustainable energy source for developing countries: opportunities and challenges. Renew Sustain Energy Rev 31:846–859CrossRef
3.
go back to reference Li YY (2005) Methane fermentation technology and its application and prospects. JEFMA No. 53, pp 4–18 (in Japanese) Li YY (2005) Methane fermentation technology and its application and prospects. JEFMA No. 53, pp 4–18 (in Japanese)
4.
go back to reference Weiland P (2010) Biogas production: current state and perspectives. Appl Microbiol Biotechnol 85:849–860CrossRef Weiland P (2010) Biogas production: current state and perspectives. Appl Microbiol Biotechnol 85:849–860CrossRef
5.
go back to reference Nakamura K, Kamagata Y (2006) Recent topics on methanogenic syntrophs. J Environ Biotechnol 5:81–89 (in Japanese) Nakamura K, Kamagata Y (2006) Recent topics on methanogenic syntrophs. J Environ Biotechnol 5:81–89 (in Japanese)
6.
go back to reference Adelekan BA (2012) Chapter 1. Potentials of selected tropical crops and manure as sources of biofuels. In: Kumar S (ed) Biogas. INTECH, pp 1–34 Adelekan BA (2012) Chapter 1. Potentials of selected tropical crops and manure as sources of biofuels. In: Kumar S (ed) Biogas. INTECH, pp 1–34
8.
go back to reference Benjamin KS (2013) Confronting energy poverty behind the bamboo curtain: A review of challenges and solutions for Myanmar (Burma). Energy Sustain Dev 17:305–314CrossRef Benjamin KS (2013) Confronting energy poverty behind the bamboo curtain: A review of challenges and solutions for Myanmar (Burma). Energy Sustain Dev 17:305–314CrossRef
9.
go back to reference Fernandes SD, Trautmann NM, Streets DG, Roden CA, Bond TC (2007) Global biofuel use, 1850–2000. Glob Biogeochem Cycles 21(2) Fernandes SD, Trautmann NM, Streets DG, Roden CA, Bond TC (2007) Global biofuel use, 1850–2000. Glob Biogeochem Cycles 21(2)
10.
go back to reference Dasgupta S, Deichmann U, Meisner C, Wheeler D (2005) Where is the poverty-environment nexus? Evidence from Cambodia, Lao PDR, and Vietnam. World Dev 33(4):617–638CrossRef Dasgupta S, Deichmann U, Meisner C, Wheeler D (2005) Where is the poverty-environment nexus? Evidence from Cambodia, Lao PDR, and Vietnam. World Dev 33(4):617–638CrossRef
11.
go back to reference Wertz-Kanounnikoff S, Kongphan-apirak M (2008) Reducing forest emissions in Southeast Asia, A review of drivers of land-use change and how payments for environmental services (PES) schemes can affect them. CIFOR Working paper No.41 Wertz-Kanounnikoff S, Kongphan-apirak M (2008) Reducing forest emissions in Southeast Asia, A review of drivers of land-use change and how payments for environmental services (PES) schemes can affect them. CIFOR Working paper No.41
12.
go back to reference Ministry of Forestry Myanmar (2005) National Action Program of Myanmar to Combat Desertification in the Context of UNCCD Ministry of Forestry Myanmar (2005) National Action Program of Myanmar to Combat Desertification in the Context of UNCCD
13.
go back to reference Prakash CG (2013) SNV supported domestic biogas programmes in Asia and Africa. Renew Energy 49:90–94CrossRef Prakash CG (2013) SNV supported domestic biogas programmes in Asia and Africa. Renew Energy 49:90–94CrossRef
14.
go back to reference Bond T, Templeton MR (2011) History and future of domestic biogas plants in the developing world. Energy Sustain Dev 15:347–354CrossRef Bond T, Templeton MR (2011) History and future of domestic biogas plants in the developing world. Energy Sustain Dev 15:347–354CrossRef
15.
go back to reference Gosens J, Lu Y, He G, Bluemling B, Beckers TAM (2013) Sustainability effects of household-scale biogas in rural China. Energy Policy 54:273–287CrossRef Gosens J, Lu Y, He G, Bluemling B, Beckers TAM (2013) Sustainability effects of household-scale biogas in rural China. Energy Policy 54:273–287CrossRef
16.
go back to reference Keovilay P (2012) Household biogas technology to improve rural livelihoods in Laos. J Dev Sustain Agric 7:158–163 Keovilay P (2012) Household biogas technology to improve rural livelihoods in Laos. J Dev Sustain Agric 7:158–163
17.
go back to reference Thu CTT, Cuong PH, Hang LH, Chao NV, Anh LX, Trach NX, Sommer SG (2012) Manure management practices on biogas and non-biogas pig farms in developing countries—using livestock farms in Vietnam as an example. J Cleaner Prod 27:64–71CrossRef Thu CTT, Cuong PH, Hang LH, Chao NV, Anh LX, Trach NX, Sommer SG (2012) Manure management practices on biogas and non-biogas pig farms in developing countries—using livestock farms in Vietnam as an example. J Cleaner Prod 27:64–71CrossRef
19.
go back to reference San V, Ly D, Check NI, Check NI (2013) Assessment of sustainable energy potential of non-plantation biomass resources in Sameakki Meanchey District in Kampong Chhnang Province, Cambodia. Int J Environ Rural Dev 4–2:173–178 San V, Ly D, Check NI, Check NI (2013) Assessment of sustainable energy potential of non-plantation biomass resources in Sameakki Meanchey District in Kampong Chhnang Province, Cambodia. Int J Environ Rural Dev 4–2:173–178
20.
go back to reference Sajjakulnukit B, Yingyuad R, Maneekhao V, Pongnarintasut V, Bhattacharya SC, Salam PA (2005) Assessment of sustainable energy potential of non-plantation biomass resources in Thailand. Biomass Bioenergy 29(3):214–224CrossRef Sajjakulnukit B, Yingyuad R, Maneekhao V, Pongnarintasut V, Bhattacharya SC, Salam PA (2005) Assessment of sustainable energy potential of non-plantation biomass resources in Thailand. Biomass Bioenergy 29(3):214–224CrossRef
21.
go back to reference Hosomi M (2014) Development of low environmental impact-systems to attain co-benefits piggery wastewater treatment and forage rice production. Final report of “Environmental research and technology development fund (1B-1103)” Hosomi M (2014) Development of low environmental impact-systems to attain co-benefits piggery wastewater treatment and forage rice production. Final report of “Environmental research and technology development fund (1B-1103)”
22.
go back to reference Silvestre G, Gómez MP, Pascual A, Ruiz B (2013) Anaerobic co-digestion of cattle manure with rice straw: economic and energy feasibility. Water Sci Technol 67(4):745–755CrossRef Silvestre G, Gómez MP, Pascual A, Ruiz B (2013) Anaerobic co-digestion of cattle manure with rice straw: economic and energy feasibility. Water Sci Technol 67(4):745–755CrossRef
23.
go back to reference Diep NQ, Fujimoto S, Minowa T, Sakanishi K, Nakagoshi N (2012) Estimation of the potential of rice straw for ethanol production and the optimum facility size for different regions in Vietnam. Appl Energy 93:205–211CrossRef Diep NQ, Fujimoto S, Minowa T, Sakanishi K, Nakagoshi N (2012) Estimation of the potential of rice straw for ethanol production and the optimum facility size for different regions in Vietnam. Appl Energy 93:205–211CrossRef
24.
go back to reference ACE Europe (2013) Mid-term Evaluation SNV programme 2007–2015, In-depth study of the Vietnamese Biogas Programme ACE Europe (2013) Mid-term Evaluation SNV programme 2007–2015, In-depth study of the Vietnamese Biogas Programme
25.
go back to reference Buysman E, Mol APJ (2013) Market-based biogas sector development in least developed countries—The case of Cambodia. Energy Policy 63:44–51CrossRef Buysman E, Mol APJ (2013) Market-based biogas sector development in least developed countries—The case of Cambodia. Energy Policy 63:44–51CrossRef
27.
go back to reference Shiratori Y, Ijichi T, Oshima T, Sasaki K (2010) Internal reforming SOFC running on biogas. Int J Hydrogen Energy 35:7905–7912CrossRef Shiratori Y, Ijichi T, Oshima T, Sasaki K (2010) Internal reforming SOFC running on biogas. Int J Hydrogen Energy 35:7905–7912CrossRef
28.
go back to reference Shiratori Y, Tuyen TQ, Kitaoka T, Higashi O, Chien DM, Huong DTT, Cong HT (2014) Sustainable development of rural area by effective utilization of bio-wastes with highly efficient fuel cell technology. In: The 23rd symposium on solid oxide fuel cells in Japan, Tokyo, 17 Dec 2014 (in Japanese) Shiratori Y, Tuyen TQ, Kitaoka T, Higashi O, Chien DM, Huong DTT, Cong HT (2014) Sustainable development of rural area by effective utilization of bio-wastes with highly efficient fuel cell technology. In: The 23rd symposium on solid oxide fuel cells in Japan, Tokyo, 17 Dec 2014 (in Japanese)
29.
go back to reference Kimura S, Honda K, Kitamura K, Taniguchi I, Shitashima K, Tsujia T, Fujikawa S (2014) Preliminary feasibility study for on-site hydrogen station with distributed CO2 capture and storage system. Energy Procedia 63:4575–4584CrossRef Kimura S, Honda K, Kitamura K, Taniguchi I, Shitashima K, Tsujia T, Fujikawa S (2014) Preliminary feasibility study for on-site hydrogen station with distributed CO2 capture and storage system. Energy Procedia 63:4575–4584CrossRef
30.
go back to reference Kitamura K, Jiang F, Valocchi AJ, Chiyonobu S, Tsuji T, Christensen KT (2014) The study of heterogeneous two-phase flow around small-scale heterogeneity in porous sandstone by measured elastic wave velocities and lattice Boltzmann method simulation. J Geophys Res Solid Earth 119(10):7564–7577CrossRef Kitamura K, Jiang F, Valocchi AJ, Chiyonobu S, Tsuji T, Christensen KT (2014) The study of heterogeneous two-phase flow around small-scale heterogeneity in porous sandstone by measured elastic wave velocities and lattice Boltzmann method simulation. J Geophys Res Solid Earth 119(10):7564–7577CrossRef
Metadata
Title
Steam Reforming
Authors
Yusuke Shiratori
Quang-Tuyen Tran
Teppei Ogura
Osamu Higashi
Stephen M. Lyth
Masaki Tajima
Copyright Year
2016
Publisher
Springer Japan
DOI
https://doi.org/10.1007/978-4-431-56042-5_8