Mathrani IM et al (1988) Methanohalophilus zhilinae sp. nov., an alkaliphilic, halophilic,
methylotrophic methanogen. Int J Syst Evol Micr 38(2):139–142
McCarty P (2001) The development of anaerobic treatment and its future. Water Sci Technol 44
(8):149–156
McKendry P (2002) Energy production from biomass (part 2): conversion technologies. Bioresour
Technol 83(1):47–54
McKeown RM et al (2009) Long-term (1243 days), low-temperature (4–15 C), anaerobic
biotreatment of acidified wastewaters: bioprocess performance and physiological
characteristics. Water Res 43(6):1611–1620
Mekhilef S et al (2014) Malaysia’s renewable energy policies and programs with green aspects.
Renew Sustain Energ Rev 40:497–504
Metcalf I (2003) Wastewater engineering; treatment and reuse. McGraw-Hill, New York
Meyer T, Edwards EA (2014) Anaerobic digestion of pulp and paper mill wastewater and sludge.
Water Res 65:321–349
Meyer-Aurich A et al (2012) Impact of uncertainties on greenhouse gas mitigation potential of
biogas production from agricultural resources. Renew Energ 37(1):277–284
Monavari S et al (2016) Solid waste management challenges in metropolitan areas of Karaj, IRAN
MPDR (2010) Task force final report on climate change. Ministry of planning, development and
reforms, Government of Pakistan
Nasir IM et al (2012) Anaerobic digestion technology in livestock manure treatment for biogas
production: a review. Eng Life Sci 12(3):258–269
Nizami AS et al (2009) Review of the integrated process for the production of grass biomethane.
Environ Sci Technol 43(22):8496–8508
Nzila C et al (2012) Multi criteria sustainability assessment of biogas production in Kenya. Appl
Energ 93:496–506
Onthong U, Juntarachat N (2017) Evaluation of biogas production potential from raw and processed
agricultural wastes. Energ Proc 138:205–210
Palabiyik H (2002) In: Kocasoy G, Atabarut T, Nuhoglu I (eds) The development of solid waste
management action plan in Izmir: the participatory – responsible model approach. Appropriate
environmental and solid waste management and technologies for development countries, vol I.
Istanbul
Paudel SR et al (2017) Pretreatment of agricultural biomass for anaerobic digestion: current state
and challenges. Bioresour Technol 245:1194–1205
Perera F (2018) Pollution from fossil-fuel combustion is the leading environmental threat to global
pediatric health and equity: solutions exist. Int J Environ Res Public Health 15(1):16
Pérez I et al (2014) Technical, economic and environmental assessment of household biogas
digesters for rural communities. Renew Energ 62:313–318
Raheem A et al (2016) Bioenergy from anaerobic digestion in Pakistan: potential, development and
prospects. Renew Sustain Energ Rev 59:264–275
Rahman MM, Paatero JV (2012) A methodological approach for assessing potential of sustainable
agricultural residues for electricity generation: South Asian perspective. Biomass Bioenergy
47:153–163
Rajendran K et al (2012) Household biogas digesters—a review. Energ J 5(8):2911–2942
Ramos-Suárez J et al (2019) Biogas from animal manure: a sustainable energy opportunity in the
Canary Islands. Renew Sustain Energ Rev 104:137–150
REN 21 (2005) ‘Renewable energy policy network 2005’, renewables 2005: global status report.
Worldwatch Institute, Washington DC
Saha BC (2000) α-L-Arabinofuranosidases: biochemistry, molecular biology and application in
biotechnology. Biotechnol Adv 18(5):403–423
Salminen E, Rintala J (2002) Anaerobic digestion of organic solid poultry slaughterhouse waste–a
review. Bioresour Technol 83(1):13–26
Santerre MT, Smith KR (1982) Measures of appropriateness: the resource requirements of anaerobic digestion (biogas) systems. World Dev 10(3):239–261
Sasse L et al (1991) Improved biogas unit for developing countries. GATE Publication, Eschborn
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