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 Hu Z.H., Yu H.Q. Application of rumen microorganisms for enhanced anaerobic fermentation of corn stover. Process Biochem 2005; 40: 2371–2377.
Intanoo P., Rangsanvigit P., Malakul P., Chavadej S. Optimization of separate hydrogen and methane production from cassava wastewater using two-stage upflow anaerobic sludge blanket reactor (UASB) system under thermophilic operation. Bioresour Technol 2014; 173: 256–265.
Kalyuzhnyi S., Veeken A., Hamelers B. Two-particle model of anaerobic solid state fermentation. Water Sci Technol 2000; 41: 43.
Kamada T., Nakamura H., Tezuka T., Hasegawa S., Maruta K. Study on combustion and ignition characteristics of natural gas components in a micro flow reactor with a controlled temperature profile. Combust Flame 2014; 161: 37–48.
Kangle K.M., Kore S.V, Kore V.S., Kulkarni G.S. Recent trends in anaerobic codigestion: a review. Univers J Environ Res Technol 2012; 2: 210–219.
Karakashev D., Batstone D.J., Angelidaki I. Influence of environmental conditions on methanogenic compositions in anaerobic biogas reactors. Appl Environ Microbiol 2005; 71: 331–338.
Kelleher B.P., Simpson A.J., Rogers R.E., Dearman J., Kingery W.L. Effects of natural organic matter from sediments on the growth of marine gas hydrates. Mar Chem 2007; 103: 237–249.
Kendall M.M., Boone D.R. The Prokaryotes. A Handbook on the Biology of Bacteria. Springer: New York; 2006.
Khanal S.K. Anaerobic biotechnology for bioenergy production: principles and applications. John Wiley & Sons: Iowa; 2011.
Kim M., Speece R.E. Aerobic waste activated sludge (WAS) for start-up seed of mesophilic and thermophilic anaerobic digestion. Water Res 2002; 36: 3860–3866.
Kivaisi A.K., Eliapenda S. Application of rumen microorganisms for enhanced anaerobic degradation of bagasse and maize bran. Biomass Bioenergy 1995; 8: 45–50.























































































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