Page 75 - 067
P. 75

61






                       Hung, C.H., Chang, Y.T., and Chang, Y.J. 2011. Roles of microorganisms other than
                              Clostridium  and  Enterobacter  in  anaerobic  fermentative  biohydrogen
                              production systems–a review. Bioresource Technology. 102 (18), 8437-8444.
                       Jariyaboon, R., Sompong, O., and Kongjan, P. 2015. Bio-hydrogen and bio-methane

                              potentials  of  skim  latex  serum  in  batch  thermophilic  two-stage  anaerobic
                              digestion. Bioresource Technology. 198, 198-206.
                       Kengen, S., Goorissen, H., Verhaart, M., Stams, A., van., Niel, E. and Claassen, P. 2009.
                              Biological  hydrogen  production  by  anaerobic  microorganisms.Biofuels.  197–

                              221.
                       Khemkhao,  M.,  Nuntakumjorn,  B., Techkarnjanaruk,  S. and  Phalakornkule,  C.  2012.
                              UASB  performance  and  microbial  adaptation  during  a  transition  from
                              mesophilic to thermophilic treatment of palm  oil mill effluent. Journal of

                              Environmental and Management. 103, 74-82.
                       Kongjan, P., Min, B. andAngelidaki, I. 2009. Biohydrogen production from xylose at
                              extreme  thermophilic  temperatures  (70°C)  by  mixed  culture  fermentation.

                              Water Research. 43 (2), 1414-1424.
                       Kongjan,  P.,  O-Thong,  S.  and  Angelidaki,  I.  2011.  Performance  and  microbial
                              community analysis of two-stage process with extreme thermophilic hydrogen
                              and  thermophilic  methane  production  from  hydrolysate  in  UASB  reactors.
                              Bioresource Technology. 102 (5), 4028-4035.

                       Koyama,  M.,  Yamamoto,  S.,  Ishikawa,  K.,  Ban,  S.  and  Toda,  T.  2014.  Anaerobic
                              digestion of submerged macrophytes: Chemical composition and anaerobic
                              digestibility. Ecological Engineering. 69, 304-309.

                       Koyama,  M.,  Yamamoto,  S.,  Ishikawa,  K.,  Ban,  S.  and  Toda,  T.  2015.  Enhancing
                              anaerobic  digestibility  of  lignin-rich  submerged  macrophyte  using
                              thermochemical pre-treatment. Biochemical Engineering Journal, 99, 124-130.
                       Kufel, L. and Kufel, I. 2002. Chara beds acting as nutrient sinks in shallow lakes - a

                              review. Aquatic Botany. 72 (3), 249-260.
                       Kvesitadze,  G.,  Sadunishvili,  T.,  Dudauri,  T.,  Zakariashvili,  N.,  Partskhaladze,  G.,
                              Ugrekhelidze, V. and Jobava, M. 2012. Two-stage anaerobic process for bio-
                              hydrogen and bio-methane combined production from biodegradable solid

                              wastes. Energy. 37 (1), 94-102.
                       Lahijani,  P.,  Zainal,  Z.A,  Mohamed,  A.R.  and  Mohammadi,  M.  2013.  Ash  of  palm
                              empty fruit bunch as a natural catalyst  for promoting the CO   gasification
                                                                                             2
                              reactivity of biomass char. Bioresource Technology. 132, 351–355.
   70   71   72   73   74   75   76   77   78   79   80