Pfeifer J, Obernberger I (2007) Technology evaluation of an agricultural biogas CHP plant as well
as definition of guiding values for the improved design and operation. In: 15th European
biomass conference & exhibition, 7–11 May 2007, Berlin, Germany, pp 1864–1868
Pourmovahed A, Opperman T, Lemke B (2011) Performance and efficiency of a biogas CHP
system utilizing a stirling engine. In: Proceedings of international conference on renewable
energies and power quality, Las Palmas de Gran Canaria, Spain (Vol. 1315)
Prakash O, Anil K, Pandey A, Kumara A, Laguria V (2015) A review on biogas plant. Int J New
Technol Sci Eng 2(4). ISSN:2349-0780
Pruthviraj NB (2016) Introduction to biogas & applications. Int J Adv Res Mech Eng Technol
(IJARMET) 2(4)
Reddy SN, Satyanarayana SV, Sudha G (2017) Bio gas generation from biodegradable kitchen
waste. Int J Environ Agric Biotechnol 2(2):0689–0694
Rutz D, Mergner R, Janssen R (2015) Sustainable heat use of biogas plants. A handbook, biogas
heat. WIP Renewable Energies, Munich
Salminen E, Einola J, Rintala J (2003) The methane production of poultry slaughtering residues and
effects of pre-treatments on the methane production of poultry feather. Environ Technol
24:1079–1086
Samah E (2016) Measuring small-scale biogas capacity and production. International Renewable
Energy Agency (IRENA), Abu Dhabi. ISBN:978-92-95111-12-7
Samer M (2012). Chapter 17: Biogas plant constructions, biogas. In: Kumar S (ed). ISBN:978-95351-0204-5. InTech
Sasse L (1988) Biogas Plants by A Publication of the Deutsches Zentrum für
Entwicklungstechnologien – GATE in: Deutsche Gesellschaft für Technische Zusammenarbeit
(GTZ) GmbH
Sasse L, Kellner C, Kimaro A (1991) Improved biogas unit for developing countries. Vieweg and
Sohn, Eschborn
Schievano A, Scaglia B, D’Imporzano G, Malagutti L, Gozzi A, Adani F (2009) Prediction of
biogas potentials using quick laboratory analyses: upgrading previous models for application to
heterogeneous organic matrices. Bioresour Technol 100(23):5777–5782
Sharma KR (2008) In: Khanal SK (ed) Kinetics and modeling in anaerobic processes in anaerobic
technology for bioenergy production: principles and applications. Wiley-Blackwell, Ames
Sharma N, Giuseppe P (1991) Anaerobic biotechnology and developing countries – technical
status. Energy Conversion 32:447–469
Sibiya NT, Muzenda E, Mbohwa C (2017) Evaluation of potential substrates for biogas production
via anaerobic digestion: a review. In: Proceedings of the world congress on engineering and
computer science WCECS 2017, vol II, October 25–27, San Francisco, USA
Singh TS, Sankarlal P (2015) Production of biogas from kitchen waste using cow manure as
co-substrate. In: Proceedings of the conference on “Energy conversion and conservation”,
27/03/2015
Singh JB, Myles R, Dhussa A (1987) Manual on Deenbandhu biogas plant. Tata McGraw Hill
Publishing Company Limited, New Delhi
Speece RE (1996) Anaerobic biotechnology for industrial wastewaters. Archae Press, Nashville
Stalin N (2007) Performance evaluation of partial mixing anaerobic digester. ARPN J Appl Sci
2:1–6
Stefan M (2004) Biogas fuel for internal combustion engines. Annals of the Faculty of Engineering
Hunedoara – 2004 Tome II. Fascicole 3
Surendra KC, Takara D, Hashimoto AG, Khanal SK (2014) Biogas as a sustainable energy source
for developing countries: opportunities and challenges. Renew Sust Energ Rev 31:846–859
Syamsuri S, Yustia WM (2015) Performance analysis of biogas stoves with variations of flame
burner for the capacity of biogas 1 m
3
/day. ARPN J Eng Appl Sci 10:22
Takeno T, Sato K (1979) An excess enthalpy theory. Combust Sci Technol 23:73–84
Tucker MF (2008) Farm digesters for small dairies in Vermont. Bio Cycle 49:44
3 Biogas: An Effective and Common Energy Tool – Part I
103
as definition of guiding values for the improved design and operation. In: 15th European
biomass conference & exhibition, 7–11 May 2007, Berlin, Germany, pp 1864–1868
Pourmovahed A, Opperman T, Lemke B (2011) Performance and efficiency of a biogas CHP
system utilizing a stirling engine. In: Proceedings of international conference on renewable
energies and power quality, Las Palmas de Gran Canaria, Spain (Vol. 1315)
Prakash O, Anil K, Pandey A, Kumara A, Laguria V (2015) A review on biogas plant. Int J New
Technol Sci Eng 2(4). ISSN:2349-0780
Pruthviraj NB (2016) Introduction to biogas & applications. Int J Adv Res Mech Eng Technol
(IJARMET) 2(4)
Reddy SN, Satyanarayana SV, Sudha G (2017) Bio gas generation from biodegradable kitchen
waste. Int J Environ Agric Biotechnol 2(2):0689–0694
Rutz D, Mergner R, Janssen R (2015) Sustainable heat use of biogas plants. A handbook, biogas
heat. WIP Renewable Energies, Munich
Salminen E, Einola J, Rintala J (2003) The methane production of poultry slaughtering residues and
effects of pre-treatments on the methane production of poultry feather. Environ Technol
24:1079–1086
Samah E (2016) Measuring small-scale biogas capacity and production. International Renewable
Energy Agency (IRENA), Abu Dhabi. ISBN:978-92-95111-12-7
Samer M (2012). Chapter 17: Biogas plant constructions, biogas. In: Kumar S (ed). ISBN:978-95351-0204-5. InTech
Sasse L (1988) Biogas Plants by A Publication of the Deutsches Zentrum für
Entwicklungstechnologien – GATE in: Deutsche Gesellschaft für Technische Zusammenarbeit
(GTZ) GmbH
Sasse L, Kellner C, Kimaro A (1991) Improved biogas unit for developing countries. Vieweg and
Sohn, Eschborn
Schievano A, Scaglia B, D’Imporzano G, Malagutti L, Gozzi A, Adani F (2009) Prediction of
biogas potentials using quick laboratory analyses: upgrading previous models for application to
heterogeneous organic matrices. Bioresour Technol 100(23):5777–5782
Sharma KR (2008) In: Khanal SK (ed) Kinetics and modeling in anaerobic processes in anaerobic
technology for bioenergy production: principles and applications. Wiley-Blackwell, Ames
Sharma N, Giuseppe P (1991) Anaerobic biotechnology and developing countries – technical
status. Energy Conversion 32:447–469
Sibiya NT, Muzenda E, Mbohwa C (2017) Evaluation of potential substrates for biogas production
via anaerobic digestion: a review. In: Proceedings of the world congress on engineering and
computer science WCECS 2017, vol II, October 25–27, San Francisco, USA
Singh TS, Sankarlal P (2015) Production of biogas from kitchen waste using cow manure as
co-substrate. In: Proceedings of the conference on “Energy conversion and conservation”,
27/03/2015
Singh JB, Myles R, Dhussa A (1987) Manual on Deenbandhu biogas plant. Tata McGraw Hill
Publishing Company Limited, New Delhi
Speece RE (1996) Anaerobic biotechnology for industrial wastewaters. Archae Press, Nashville
Stalin N (2007) Performance evaluation of partial mixing anaerobic digester. ARPN J Appl Sci
2:1–6
Stefan M (2004) Biogas fuel for internal combustion engines. Annals of the Faculty of Engineering
Hunedoara – 2004 Tome II. Fascicole 3
Surendra KC, Takara D, Hashimoto AG, Khanal SK (2014) Biogas as a sustainable energy source
for developing countries: opportunities and challenges. Renew Sust Energ Rev 31:846–859
Syamsuri S, Yustia WM (2015) Performance analysis of biogas stoves with variations of flame
burner for the capacity of biogas 1 m
3
/day. ARPN J Eng Appl Sci 10:22
Takeno T, Sato K (1979) An excess enthalpy theory. Combust Sci Technol 23:73–84
Tucker MF (2008) Farm digesters for small dairies in Vermont. Bio Cycle 49:44
3 Biogas: An Effective and Common Energy Tool – Part I
103
