References

437

28 Zupanˇciˇc, G.D. and Jemec, A. (2010). Anaerobic digestion of tannery waste:

semi-continuous and anaerobic sequencing batch reactor processes. Bioresource

Technology 101 (1): 26–33.

29 Han, W., Yan, Y., Gu, J. et al. (2016). Techno-economic analysis of a novel

bioprocess combining solid state fermentation and dark fermentation for H2

production from food waste. International Journal of Hydrogen Energy 41 (48):

22619–22625.

30 Tengerdy, R.P. and Szakacs, G. (2003). Bioconversion of lignocellulose in solid

substrate fermentation. Biochemical Engineering Journal 13 (2): 169–179.

31 Qureshi, N., Liu, S., Hughes, S. et al. (2016). Cellulosic butanol (ABE) biofuel

production from sweet sorghum bagasse (SSB): impact of hot water pretreatment

and solid loadings on fermentation employing Clostridium beijerinckii P260.

Bioenergy Research 9 (4): 1167–1179.

32 Dahiya, S., Kumar, A.N., Shanthi Sravan, J. et al. (2018). Food waste biorefinery:

sustainable strategy for circular bioeconomy. Bioresource Technology 248: 2–12.

33 Abbasi, T. and Abbasi, S.A. (2011). ‘Renewable’ hydrogen: prospects and chal-

lenges. Renewable and Sustainable Energy Reviews 15 (6): 3034–3040.

34 Tawfik, A., Salem, A., and El-Qelish, M. (2011). Two stage anaerobic baffled

reactors for bio-hydrogen production from municipal food waste. Bioresource

Technology 102 (18): 8723–8726.

35 Han, W., Wang, B., Zhou, Y. et al. (2012). Fermentative hydrogen production

from molasses wastewater in a continuous mixed immobilized sludge reactor.

Bioresource Technology 110: 219–223.

36 Jarunglumlert, T., Prommuak, C., Putmai, N., and Pavasant, P. (2018). Scaling-up

bio-hydrogen production from food waste: feasibilities and challenges. Interna-

tional Journal of Hydrogen Energy 43 (2): 634–648.

37 Han, W., Liu, D.N., Shi, Y.W. et al. (2015). Biohydrogen production from food

waste hydrolysate using continuous mixed immobilized sludge reactors. Biore-

source Technology 180: 54–58.

38 De Gioannis, G., Muntoni, A., Polettini, A., and Pomi, R. (2013). A review of

dark fermentative hydrogen production from biodegradable municipal waste

fractions. Waste Management 33 (6): 1345–1361.

39 Uçkun Kiran, E., Trzcinski, A.P., Ng, W.J., and Liu, Y. (2014). Bioconversion of

food waste to energy: a review. Fuel 134: 389–399.

40 Pagliaccia, P., Gallipoli, A., Gianico, A. et al. (2016). Single stage anaerobic bio-

conversion of food waste in mono and co-digestion with olive husks: impact

of thermal pretreatment on hydrogen and methane production. International

Journal of Hydrogen Energy 41 (2): 905–915.

41 Zhang, Y., Chen, X., Luo, J. et al. (2014). An efficient process for lactic acid pro-

duction from wheat straw by a newly isolated Bacillus coagulans strain IPE22.

Bioresource Technology 158: 396–399.

42 Tang, J., Wang, X.C., Hu, Y. et al. (2017). Effect of pH on lactic acid produc-

tion from acidogenic fermentation of food waste with different types of inocula.

Bioresource Technology 224: 544–552.