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Sun Y., Cheng J. Hydrolysis of lignocellulosic materials for ethanol production: A review. Bioresour Technol 2002; 83: 1–11
Walter A., Probst M., Hinterberger S., Müller H., Insam H. Biotic and abiotic dynamics of a high solid-state aaerobic digestion box-type container system. Waste Manage 2016; 49: 26–35.
Ward A., Hobbs P., Holliman P., Jones D. Optimisation of the anaerobic digestion of agricultural resources. Bioresour Technol 2008; 99: 7928–7940.
Weiland P. Biomass Digestion in Agriculture: A Successful Pathway for the Energy Production and Waste Treatment in Germany. Eng Life Sci 2006; 6: 302–309.
Wellinger A., Murphy J., Baxter D. The biogas handbook science, production and application. Woodhead Publishing Limited: United States of America; 2013.
Whiting A., Azapagic A. Life cycle environmental impacts of generating electricity and heat from biogas produced by anaerobic digestion. Energy 2014; 70: 181–193. Wieczorek N., Kucuker M., Kuchta K. Fermentative hydrogen and methane production
from microalgal biomass (Chlorella vulgaris) in a two-stage combined process.
Appl Energy 2014; 132: 108–117.
Yang Z., Wang W., He Y., Zhang R., Liu G. Effect of ammonia on methane production,
methanogenesis pathway, microbial community and reactor performance under
mesophilic and thermophilic conditions. Renew Energy 2018; 125: 915–925. Zhang C., Su H., Baeyens J., Tan T. Reviewing the anaerobic digestion of food waste for
biogas production. Renew Sustain Energy Rev 2014; 38: 383–392.
Zheng X.J., Yu H.Q. Inhibitory effects of butyrate on biological hydrogen production with
mixed anaerobic cultures. J Environ Manage 2005; 74: 65–70.
Zhu H., Parker W., Conidi D., Basnar R., Seto P. Eliminating methanogenic activity in
hydrogen reactor to improve biogas production in a two-stage anaerobic digestion process co-digesting municipal food waste and sewage sludge. Bioresour Technol 2011; 102: 7086–7092.