Kushkevych I, Cejnar J, Vítězová M, Vítěz T, Dordević D, Bomble YJ (2020) Occurrence of
thermophilic microorganisms in different full scale biogas plants. Int J Mol Sci 21(1):283
Labatut RA, Angenent LT, Scott NR (2014) Conventional mesophilic vs. thermophilic anaerobic
digestion: a trade-off between performance and stability? Water Res 53:249–258
Lackner N, Wagner AO, Illmer P (2020) Effect of sulfate addition on carbon flow and microbial
community composition during thermophilic digestion of cellulose. Appl Microbiol Biotechnol
104(10):4605–4615
Lahav O, Morgan BE (2004) Titration methodologies for monitoring of anaerobic digestion in
developing countries—a review. J Chem Technol Biotechnol Int Res Process Environ Clean
Technol 79(12):1331–1341
Lallai A, Mura G, Onnis N (2002) The effects of certain antibiotics on biogas production in the
anaerobic digestion of pig waste slurry. Bioresour Technol 82(2):205–208
Langeveld J, Quist-Wessel P, Croezen H (2014) 10 Oil palm biodiesel in the Far East. In: Biofuel
cropping systems: carbon, land and food. Routledge, Abingdon, p 158
Langeveld K, Stronks K, Harting J (2016) Use of a knowledge broker to establish healthy public
policies in a city district: a developmental evaluation. BMC Public Health 16(1):271
Lansing S, Víquez J, Martínez H, Botero R, Martin J (2008) Quantifying electricity generation and
waste transformations in a low-cost, plug-flow anaerobic digestion system. Ecol Eng 34(4):332–
348
Lei Y, Xie C, Wang X, Fang Z, Huang Y, Cao S, Liu B (2020) Thermophilic anaerobic digestion of
Arundo donax cv. Lvzhou No. 1 for biogas production: structure and functional analysis of
microbial communities. BioEnergy Res 13:866–877
Lettinga G, Haandel AC (1993) Anaerobic digestion for energy production and environmental
protection. In: Johansson TB et al (eds) Renewable energy: sources for fuels and electricity.
Island press, Washington, DC, pp 817–839
Li C, Champagne P, Anderson BC (2011) Evaluating and modeling biogas production from
municipal fat, oil, and grease and synthetic kitchen waste in anaerobic co-digestions. Bioresour
Technol 102(20):9471–9480
Li Y, Zhang R, Chen C, Liu G, He Y, Liu X (2013) Biogas production from co-digestion of corn
stover and chicken manure under anaerobic wet, hemisolid, and solid state conditions. Bioresour
Technol 149:406–412
Li K, Liu R, Sun C (2015) Comparison of anaerobic digestion characteristics and kinetics of four
livestock manures with different substrate concentrations. Bioresour Technol 198:133–140.
https://doi.org/10.1016/j.biortech.2015.08.151
Liew LN, Shi J, Li Y (2012) Methane production from solid-state anaerobic digestion of lignocellulosic biomass. Biomass Bioenergy 46:125–132
Lim JW, Wang JY (2013) Enhanced hydrolysis and methane yield by applying microaeration
pretreatment to the anaerobic co-digestion of brown water and food waste. Waste Manag
33:813–819
Lim EY, Tian H, Chen Y, Ni K, Zhang J, Tong YW (2020a) Methanogenic pathway and microbial
succession during start-up and stabilization of thermophilic food waste anaerobic digestion with
biochar. Bioresour Technol 314:123751
Lim JW, Wen S, Wong K, Dai Y, Tong YW (2020b) Effect of seed sludge source and start-up
strategy on the performance and microbial communities of thermophilic anaerobic digestion of
food waste. Energy 203:117922
Lindorfer H, Waltenberg R, Köller K, Braun R, Kirchmayr R (2008) New data on temperature
optimum and temperature changes in energy crop digesters. Bioresour Technol 99:7011–7019
Liu G, Zhang R, El-Mashad HM, Dong R (2009a) Effect of feed to inoculum ratios on biogas yields
of food and green wastes. Bioresour Technol 100(21):5103–5108
Liu FH, Wang SB, Zhang JS, Zhang J, Yan X, Zhou HK, Zhao GP, Zhou ZH (2009b) The structure
of the bacterial and archaeal community in a biogas digester as revealed by denaturing gradient
gel electrophoresis and 16S rDNA sequencing analysis. J Appl Microbiol 106(3):952–966
8 Bioprocess Parameters for Thermophilic and Mesophilic Biogas Production: Recent. . . 251
thermophilic microorganisms in different full scale biogas plants. Int J Mol Sci 21(1):283
Labatut RA, Angenent LT, Scott NR (2014) Conventional mesophilic vs. thermophilic anaerobic
digestion: a trade-off between performance and stability? Water Res 53:249–258
Lackner N, Wagner AO, Illmer P (2020) Effect of sulfate addition on carbon flow and microbial
community composition during thermophilic digestion of cellulose. Appl Microbiol Biotechnol
104(10):4605–4615
Lahav O, Morgan BE (2004) Titration methodologies for monitoring of anaerobic digestion in
developing countries—a review. J Chem Technol Biotechnol Int Res Process Environ Clean
Technol 79(12):1331–1341
Lallai A, Mura G, Onnis N (2002) The effects of certain antibiotics on biogas production in the
anaerobic digestion of pig waste slurry. Bioresour Technol 82(2):205–208
Langeveld J, Quist-Wessel P, Croezen H (2014) 10 Oil palm biodiesel in the Far East. In: Biofuel
cropping systems: carbon, land and food. Routledge, Abingdon, p 158
Langeveld K, Stronks K, Harting J (2016) Use of a knowledge broker to establish healthy public
policies in a city district: a developmental evaluation. BMC Public Health 16(1):271
Lansing S, Víquez J, Martínez H, Botero R, Martin J (2008) Quantifying electricity generation and
waste transformations in a low-cost, plug-flow anaerobic digestion system. Ecol Eng 34(4):332–
348
Lei Y, Xie C, Wang X, Fang Z, Huang Y, Cao S, Liu B (2020) Thermophilic anaerobic digestion of
Arundo donax cv. Lvzhou No. 1 for biogas production: structure and functional analysis of
microbial communities. BioEnergy Res 13:866–877
Lettinga G, Haandel AC (1993) Anaerobic digestion for energy production and environmental
protection. In: Johansson TB et al (eds) Renewable energy: sources for fuels and electricity.
Island press, Washington, DC, pp 817–839
Li C, Champagne P, Anderson BC (2011) Evaluating and modeling biogas production from
municipal fat, oil, and grease and synthetic kitchen waste in anaerobic co-digestions. Bioresour
Technol 102(20):9471–9480
Li Y, Zhang R, Chen C, Liu G, He Y, Liu X (2013) Biogas production from co-digestion of corn
stover and chicken manure under anaerobic wet, hemisolid, and solid state conditions. Bioresour
Technol 149:406–412
Li K, Liu R, Sun C (2015) Comparison of anaerobic digestion characteristics and kinetics of four
livestock manures with different substrate concentrations. Bioresour Technol 198:133–140.
https://doi.org/10.1016/j.biortech.2015.08.151
Liew LN, Shi J, Li Y (2012) Methane production from solid-state anaerobic digestion of lignocellulosic biomass. Biomass Bioenergy 46:125–132
Lim JW, Wang JY (2013) Enhanced hydrolysis and methane yield by applying microaeration
pretreatment to the anaerobic co-digestion of brown water and food waste. Waste Manag
33:813–819
Lim EY, Tian H, Chen Y, Ni K, Zhang J, Tong YW (2020a) Methanogenic pathway and microbial
succession during start-up and stabilization of thermophilic food waste anaerobic digestion with
biochar. Bioresour Technol 314:123751
Lim JW, Wen S, Wong K, Dai Y, Tong YW (2020b) Effect of seed sludge source and start-up
strategy on the performance and microbial communities of thermophilic anaerobic digestion of
food waste. Energy 203:117922
Lindorfer H, Waltenberg R, Köller K, Braun R, Kirchmayr R (2008) New data on temperature
optimum and temperature changes in energy crop digesters. Bioresour Technol 99:7011–7019
Liu G, Zhang R, El-Mashad HM, Dong R (2009a) Effect of feed to inoculum ratios on biogas yields
of food and green wastes. Bioresour Technol 100(21):5103–5108
Liu FH, Wang SB, Zhang JS, Zhang J, Yan X, Zhou HK, Zhao GP, Zhou ZH (2009b) The structure
of the bacterial and archaeal community in a biogas digester as revealed by denaturing gradient
gel electrophoresis and 16S rDNA sequencing analysis. J Appl Microbiol 106(3):952–966
8 Bioprocess Parameters for Thermophilic and Mesophilic Biogas Production: Recent. . . 251
