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129:457–472
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fraction of municipal “grey waste” under thermophilic and hyperthermophilic conditions. Water
Sci Technol 41(3):83–91
Schnürer A, Jarvis Å (2018) Microbiology of the biogas process. ISBN 978–91–576-9546-8
Schnürer A et al (2016) Protocol for start-up and operation of CSTR biogas processes. In:
Hydrocarbon and lipid microbiology protocols. Springer, pp 171–200
Shafie SM et al (2011) Current energy usage and sustainable energy in Malaysia: a review. Renew
Sustain Energ Rev 15(9):4370–4377
Shen Y et al (2015) An overview of biogas production and utilization at full-scale wastewater
treatment plants (WWTPs) in the United States: challenges and opportunities towards energyneutral WWTPs. Renew Sustain Energ Rev 50:346–362
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Singh KJ, Sooch SS (2004) Comparative study of economics of different models of family size
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(OFMSW): progress and challenges. Renew Sustain Energ Rev 93:380–399
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mesophilic anaerobic digestion of putrescible waste. Antonie Van Leeuwenhoek 94(4):593–605
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Wang Q, Zhou Y (2020) Evolution and drivers of production-based carbon emissions in China and
India: differences and similarities. J Clean Prod 277:123958
Whitman WB et al (2006) The methanogenic bacteria. The prokaryotes: volume 3: archaea.
Bacteria: firmicutes, actinomycetes. Springer, New York, pp 165–207
Yentekakis IV, Goula G (2017) Biogas management: advanced utilization for production of
renewable energy and added-value chemicals. Front Environ Sci 5:7
Yu Q et al (2019) A review of crop straw pretreatment methods for biogas production by anaerobic
digestion in China. Renew Sustain Energ Rev 107:51–58
Zavodska A (2003) A study on residential solid waste composition and management in a selected
developing country – Guyana. J Solid Waste Technol Manag 29(1):1–7
Zhang Q et al (2016) Biogas from anaerobic digestion processes: research updates. Renew Energ
98:108–119
64
M. N. Anwar et al.
anaerobic digester. Int J Syst Evol Microbiol 52(4):1081–1087
Scarlat N et al (2018) Biogas: developments and perspectives in Europe. Renew Energ
129:457–472
Scherer P et al (2000) Development of a methanogenic process to degrade exhaustively the organic
fraction of municipal “grey waste” under thermophilic and hyperthermophilic conditions. Water
Sci Technol 41(3):83–91
Schnürer A, Jarvis Å (2018) Microbiology of the biogas process. ISBN 978–91–576-9546-8
Schnürer A et al (2016) Protocol for start-up and operation of CSTR biogas processes. In:
Hydrocarbon and lipid microbiology protocols. Springer, pp 171–200
Shafie SM et al (2011) Current energy usage and sustainable energy in Malaysia: a review. Renew
Sustain Energ Rev 15(9):4370–4377
Shen Y et al (2015) An overview of biogas production and utilization at full-scale wastewater
treatment plants (WWTPs) in the United States: challenges and opportunities towards energyneutral WWTPs. Renew Sustain Energ Rev 50:346–362
Simon C, Daniel R (2009) Achievements and new knowledge unraveled by metagenomic
approaches. Appl Microbiol Biotechnol 85(2):265–276
Singh KJ, Sooch SS (2004) Comparative study of economics of different models of family size
biogas plants for state of Punjab, India. Energ Convers Manag 45(9-10):1329–1341
Singh SP et al (1997) Problems with biogas plants in Himachal Pradesh. Bioresour Technol 59
(1):69–71
Surendra K et al (2014) Biogas as a sustainable energy source for developing countries:
opportunities and challenges. Renew Sustain Energ Rev 31:846–859
Task Force Final Report on Climate Change (2010) Government of Pakistan, Ministry of Planning,
Development and Reforms
Theuerl S et al (2019) The future agricultural biogas plant in Germany: a vision. Energ J 12(3):396
Tietjen C (1975) From biodung to biogas—historical review of European experience. In: Jewell WJ
(ed) Energy, agriculture and waste management. Ann Arbor Science Publishers, Inc, Ann Arbor,
pp 247–259
Torry-Smith M et al (2003) Purification of bioethanol effluent in an UASB reactor system with
simultaneous biogas formation. Biotechnol Bioeng 84(1):7–12
Tyagi VK et al (2018) Anaerobic co-digestion of organic fraction of municipal solid waste
(OFMSW): progress and challenges. Renew Sustain Energ Rev 93:380–399
Uchiyama T, Miyazaki K (2009) Functional metagenomics for enzyme discovery: challenges to
efficient screening. Curr Opin Biotechnol 20(6):616–622
Van Soest PJ et al (1991) Methods for dietary fiber, neutral detergent fiber, and nonstarch
polysaccharides in relation to animal nutrition. Int J Dairy Sci 74(10):3583–3597
Vavilin VA et al (2008) Methanosarcina as the dominant aceticlastic methanogens during
mesophilic anaerobic digestion of putrescible waste. Antonie Van Leeuwenhoek 94(4):593–605
Veen M et al (2009) Estudio de Factibilidad para un Programa Nacional de biogas domestico en
Perú
Wang Q, Zhou Y (2020) Evolution and drivers of production-based carbon emissions in China and
India: differences and similarities. J Clean Prod 277:123958
Whitman WB et al (2006) The methanogenic bacteria. The prokaryotes: volume 3: archaea.
Bacteria: firmicutes, actinomycetes. Springer, New York, pp 165–207
Yentekakis IV, Goula G (2017) Biogas management: advanced utilization for production of
renewable energy and added-value chemicals. Front Environ Sci 5:7
Yu Q et al (2019) A review of crop straw pretreatment methods for biogas production by anaerobic
digestion in China. Renew Sustain Energ Rev 107:51–58
Zavodska A (2003) A study on residential solid waste composition and management in a selected
developing country – Guyana. J Solid Waste Technol Manag 29(1):1–7
Zhang Q et al (2016) Biogas from anaerobic digestion processes: research updates. Renew Energ
98:108–119
64
M. N. Anwar et al.
