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Angelidaki I., Sanders W. Assessment of the anaerobic biodegradability of macropollutants. Rev Environ Sci Bio 2004; 3: 117–129.
Buswell A.M., Mueller H.F. Mechanism of methane fermentation. Ind Eng Chem 1952; 44: 550–552.
Khanal S.K., Chen W.-H., Li L., Sung S. Biological hydrogen production: Effects of pH and intermediate products. Int J Hydrogen Energy 2004; 29: 1123–1131.
Nualsri C., Reungsang A., Plangklang P. Biochemical hydrogen and methane potential of sugarcane syrup using a two-stage anaerobic fermentation process. Ind Crop Prod 2016; 82: 88–99.
Reungsang A., Pattra S., Sittijunda S. Optimization of key factors affecting methane production from acidic effluent coming from the sugarcane juice hydrogen fermentation process. Energies 2012; 5: 4746–4757.
Sialve B., Bernet N., Bernard O. Anaerobic digestion of microalgae as a necessary step to make microalgal biodiesel sustainable. Biotechnol Adv 2009; 27: 409–416.
Sittijunda S., Reungsang A. Media optimization for biohydrogen production from waste glycerol by anaerobic thermophilic mixed cultures. Int J Hydrogen Energy 2012; 37: 15473–15482.


























































































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