References

301

45 Manish, S., Venkatesh, K.V., and Banerjee, R. (2007). Metabolic flux analysis

of biological hydrogen production by Escherichia coli. International Journal of

Hydrogen Energy 32: 3820–3830.

46 Lin, C.Y., Nguyen, T.M.L., Chu, C.Y., Leu, H.J., Lay, C.H. (2018). Fermentative

biohydrogen production and its by-products: A mini review of current technol-

ogy developments. Renewable and Sustainable Energy Reviews 82: 4215–4220.

47 Vallino, J.J. and Stephanopoulos, G. (1993). Metabolic flux distributions in

Corynebacterium glutamicum during growth and lysine overproduction. Biotech-

nology and Bioengineering 41: 633–646.

48 Tunahan, C., Arga, K.Y., Mete, M.A. et al. (2004). Flux analysis of recombinant

Saccharomyces cerevisiae YPB-G utilizing starch for optimal ethanol production.

Process Biochemistry 39: 2097–2108.

49 Cai, G., Jin, B., Saint, C. et al. (2010). Metabolic flux analysis of hydrogen

production network by Clostridium butyricum W5: effect of pH and glucose

concentrations. International Journal of Hydrogen Energy 35: 6681–6690.

50 Oh, Y.-K., Kim, H.-J., Park, S. et al. (2008). Metabolic flux analysis ofhydrogen

production pathway in Citrobacter amalonaticus Y19. International Journal of

Hydrogen Energy 33: 1471–1482.

51 Cheng, H.H., Whang, L.M., Lin, C.A. et al. (2013). Metabolic flux network anal-

ysis of fermentative hydrogen production: using Clostridium tyrobutyricum as an

example. Bioresource Technology 141: 233–239.

52 Ramprakash, B. and Muthukumar, K. (2015). Comparative study on the per-

formance of various pre-treatment and hydrolysis methods for the production

of biohydrogen using Enterobacter aerogenes RM 08 from rice mill wastewater.

International Journal of Hydrogen Energy 40: 9106–9112.

53 Leano, E.P., Anceno, A.J., and Babel, S. (2012). Ultrasonic pre-treatment of palm

oil mill effluent: impact on biohydrogen production, bioelectricity generation,

and underlying microbial communities. International Journal of Hydrogen Energy

37 (17): 12241–12249.

54 Hsia, S.Y., Chou, Y.T., Wang, C.H. (2013). Ultrasound for optimizing

dark-fermentative hydrogen production. Innovation, Communication and

Engineering-ProceedingsConference 2, Qingdao, Shandong, P.R. China, October

26–November 1, 2013. CRC Press, Taylor & Francis Publishing, pp. 377–380,

https://www.routledge.com/Innovation-Communication-and-Engineering/Meen-

Prior-Lam/p/book/9781138001176.

55 Sarma, S., Anand, A., Dubey, V.K., and Moholkar, V.S. (2017). Metabolic flux

network analysis of hydrogen production from crude glycerol by Clostridium

pasteurianum. Bioresource Technology 242: 169–177.

56 Yoshida, A., Nishimura, T., Kawaguchi, H. et al. (2006). Enhanced hydrogen

production from glucose using ldh and frd inactivated Escherichia coli strains.

Applied Microbiology and Biotechnology 73: 67–72.

57 Abo-Hashesh, M., Wang, R., and Hallenbeck, P.C. (2011). Metabolic engineer-

ing in dark fermentative hydrogen production; theory and practice. Bioresource

Technology 102 (18): 8414–8422.