References

29

8 Moon, H.C., Song, I.S., Kim, J.C. et al. (2009). Enzymatic hydrolysis of food

waste and ethanol fermentation. International Journal of Energy Research 33:

164–172.

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

reactor for biohydrogen production from municipal food waste. Bioresource

Technology 102: 8723–8726.

10 Kim, D.H., Kim, S.H., Jung, K.W. et al. (2011). Effect of initial pH indepen-

dent of operational pH on hydrogen fermentation of food waste. Bioresource

Technology 102: 8646–8652.

11 Zhang, R., El-Mashad, H.M., Hartman, K. et al. (2007). Characterization of food

waste as feedstock for anaerobic digestion. Bioresource Technology 98: 929–935.

12 Parawira, W., Murto, M., Zvauya, R. et al. (2004). Anaerobic batch digestion of

solid potato waste alone and in combination with sugar beet leaves. Renewable

Energy 29 (11): 1811–1823.

13 Bosco, F. and Chiampo, F. (2010). Production of polyhydroxyalkanoates (PHAs)

using milk whey and dairy wastewater activated sludge production of bioplastics

using dairy residues. Journal of Bioscience and Bioengineering 109 (4): 418–421.

14 Pandian, S.R.K., Deepak, K.K., and Kalishwaralal, K. (2010). Optimization and

fed-batch production of PHB utilizing dairy waste and sea water as nutrient

sources by Bacillus megaterium SRKP-3. Bioresource Technology 101: 705–711.

https://doi.org/10.1016/j.biortech.2009.08.040.

15 Pagliano, G., Ventorino, V., Panico, A. et al. (2019). Anaerobic process for bioen-

ergy recovery from dairy waste: meta-analysis and enumeration of microbial

community related to intermediates production. Frontiers in Microbiology 9:

29–32. https://doi.org/10.3389/fmicb.03229.

16 Fang, L., Wenqing, L., Ridgway, D. et al. (1998). Production of

poly-b-hydroxybutyrate on molasses by recombinant Escherichia coli. Biotech-

nology Letters 20 (4): 345–348.

17 Nonato, R.V., Mantelatto, P.E., and Rossell, C.E.V. (2001). Integrated production

of biodegradable plastic, sugar and ethanol. Applied Microbiology and Biotechnol-

ogy 57: 1–5. https://doi.org/10.1007/s002530100732.

18 Jiang, Y., Songa, X., Gonga, L. et al. (2008). High poly (-hydroxybutyrate) produc-

tion by Pseudomonas fluorescens A2a5 from inexpensive substrates. Enzyme and

Microbial Technology 42: 167–172.

19 Yilmaz, M. and Beyatli, Y. (2005). Poly-b-hydroxybutyrate (PHB) production by a

Bacillus cereus M5 strain in sugar beet molasses. Sugar Industry 130 (2): 109–112.

20 Kulpreecha, S., Boonruangthavorn, A., Meksiriporn, B. et al. (2009). Inexpen-

sive fed-batch cultivation for high poly (3-hydroxybutyrate) production by a new

isolate of Bacillus megaterium. Journal of Bioscience and Bioengineering 107 (3):

240–245.

21 Raj, S.B., Ramaswamy, S., and Plapp, B.V. (2014). Yeast alcohol dehydrogenase

structure and catalysis. Biochemistry 53: 5791–5803.

22 Ezeoha, S.L. and Ezenwanne, J.N. (2013). Production of biodegradable plastic

packaging film from cassava starch. IOSR Journal of Engineering 3 (10): 14–20.