199. Tang GL, Huang J, Sun ZJ, Tang QQ, Yan CH, Liu GQ (2008) Biohydrogen production from
cattle wastewater by enriched anaerobic mixed consortia: influence of fermentation temperature and pH. J Biosci Bioeng 106(1):80–87
200. Yokoyama H, Waki M, Moriya N, Yasuda T, Tanaka Y, Haga K (2007) Effect of fermentation
temperature on hydrogen production from cow waste slurry by using anaerobic microflora
within the slurry. Appl Microbiol Biotechnol 74(2):474–483
201. Gilroyed BH, Chang C, Chu A, Hao XY (2008) Effect of temperature on anaerobic fermentative hydrogen gas production from feedlot cattle manure using mixed microflora. Int J
Hydrog Energy 33(16):4301–4308
202. Xing Y, Li Z, Fan YT, Hou HW (2010) Biohydrogen production from dairy manures with
acidification pretreatment by anaerobic fermentation. Environ Sci Pollut Res 17(2):392–399
203. Guo XM, Trably E, Latrille E, Carrere H, Steyer JP (2010) Hydrogen production from
agricultural waste by dark fermentation: a review. Int J Hydrog Energy 35(19):10660–10673
204. Lateef SA, Beneragama N, Yamashiro T, Iwasaki M, Ying C, Umetsu K (2012) Biohydrogen
production from co-digestion of cow manure and waste milk under thermophilic temperature.
Bioresour Technol 110:251–257
205. Perera KRJ, Nirmalakhandan N (2011) Evaluation of dairy cattle manure as a supplement to
improve net energy gain in fermentative hydrogen production from sucrose. Bioresour
Technol 102(18):8688–8695
206. Zhu J, Li YC, Wu X, Miller C, Chen P, Ruan R (2009) Swine manure fermentation for
hydrogen production. Bioresour Technol 100(22):5472–5477
207. Kotsopoulos TA, Fotidis IA, Tsolakis N, Martzopoulos GG (2009) Biohydrogen production
from pig slurry in a CSTR reactor system with mixed cultures under hyper-thermophilic
temperature (70 degrees c). Biomass Bioenergy 33(9):1168–1174
208. Li YC, Zhu J, Wu XA, Miller C, Wang LA (2010) The effect of pH on continuous
biohydrogen production from swine wastewater supplemented with glucose. Appl Biochem
Biotechnol 162(5):1286–1296
209. Wu XA, Yao WY, Zhu J (2010) Effect of pH on continuous biohydrogen production from
liquid swine manure with glucose supplement using an anaerobic sequencing batch reactor. Int
J Hydrog Energy 35(13):6592–6599
210. Saady NMC, Chaganti SR, Lalman JA, Heath D (2012) Impact of culture source and linoleic
acid (c18:2) on biohydrogen production from glucose under mesophilic conditions. Int J
Hydrog Energy 37(5):4036–4045
211. Iyer P, Bruns MA, Zhang HS, Van Ginkel S, Logan BE (2004) H-2-producing bacterial
communities from a heat-treated soil inoculum. Appl Microbiol Biotechnol 66(2):166–173
212. Sreethawong T, Chatsiriwatana S, Rangsunvigit P, Chavadej S (2010) Hydrogen production
from cassava wastewater using an anaerobic sequencing batch reactor: effects of operational
parameters, cod:N ratio, and organic acid composition. Int J Hydrog Energy 35(9):4092–4102
213. Lay J (2004) Factors affecting hydrogen production from high-solid organic wastes. In:
Proceedings of 2nd international workshop on innovative anaerobic technology, Sendai
214. Griffin ME, McMahon KD, Mackie RI, Raskin L (1998) Methanogenic population dynamics
during start-up of anaerobic digesters treating municipal solid waste and biosolids. Biotechnol
Bioeng 57(3):342–355
215. Radjaram B, Saravanane R (2011) Start up study of UASB reactor treating press mud for
biohydrogen production. Biomass Bioenergy 35(7):2721–2728
216. Fangkum A, Reungsang A (2011) Biohydrogen production from mixed xylose/arabinose at
thermophilic temperature by anaerobic mixed cultures in elephant dung. Int J Hydrog Energy
36(21):13928–13938
217. Logan BE, Oh SE, Kim IS, Van Ginkel S (2002) Biological hydrogen production measured in
batch anaerobic respirometers. Environ Sci Technol 36(11):2530–2535
218. Saady NMC, Chaganti SR, Lalman JA, Veeravalli SS, Shanmugam SR, Heath DD (2012)
Effects of linoleic acid and its degradation by-products on mesophilic hydrogen production
8 Biohydrogen of Industrial Waste
367
cattle wastewater by enriched anaerobic mixed consortia: influence of fermentation temperature and pH. J Biosci Bioeng 106(1):80–87
200. Yokoyama H, Waki M, Moriya N, Yasuda T, Tanaka Y, Haga K (2007) Effect of fermentation
temperature on hydrogen production from cow waste slurry by using anaerobic microflora
within the slurry. Appl Microbiol Biotechnol 74(2):474–483
201. Gilroyed BH, Chang C, Chu A, Hao XY (2008) Effect of temperature on anaerobic fermentative hydrogen gas production from feedlot cattle manure using mixed microflora. Int J
Hydrog Energy 33(16):4301–4308
202. Xing Y, Li Z, Fan YT, Hou HW (2010) Biohydrogen production from dairy manures with
acidification pretreatment by anaerobic fermentation. Environ Sci Pollut Res 17(2):392–399
203. Guo XM, Trably E, Latrille E, Carrere H, Steyer JP (2010) Hydrogen production from
agricultural waste by dark fermentation: a review. Int J Hydrog Energy 35(19):10660–10673
204. Lateef SA, Beneragama N, Yamashiro T, Iwasaki M, Ying C, Umetsu K (2012) Biohydrogen
production from co-digestion of cow manure and waste milk under thermophilic temperature.
Bioresour Technol 110:251–257
205. Perera KRJ, Nirmalakhandan N (2011) Evaluation of dairy cattle manure as a supplement to
improve net energy gain in fermentative hydrogen production from sucrose. Bioresour
Technol 102(18):8688–8695
206. Zhu J, Li YC, Wu X, Miller C, Chen P, Ruan R (2009) Swine manure fermentation for
hydrogen production. Bioresour Technol 100(22):5472–5477
207. Kotsopoulos TA, Fotidis IA, Tsolakis N, Martzopoulos GG (2009) Biohydrogen production
from pig slurry in a CSTR reactor system with mixed cultures under hyper-thermophilic
temperature (70 degrees c). Biomass Bioenergy 33(9):1168–1174
208. Li YC, Zhu J, Wu XA, Miller C, Wang LA (2010) The effect of pH on continuous
biohydrogen production from swine wastewater supplemented with glucose. Appl Biochem
Biotechnol 162(5):1286–1296
209. Wu XA, Yao WY, Zhu J (2010) Effect of pH on continuous biohydrogen production from
liquid swine manure with glucose supplement using an anaerobic sequencing batch reactor. Int
J Hydrog Energy 35(13):6592–6599
210. Saady NMC, Chaganti SR, Lalman JA, Heath D (2012) Impact of culture source and linoleic
acid (c18:2) on biohydrogen production from glucose under mesophilic conditions. Int J
Hydrog Energy 37(5):4036–4045
211. Iyer P, Bruns MA, Zhang HS, Van Ginkel S, Logan BE (2004) H-2-producing bacterial
communities from a heat-treated soil inoculum. Appl Microbiol Biotechnol 66(2):166–173
212. Sreethawong T, Chatsiriwatana S, Rangsunvigit P, Chavadej S (2010) Hydrogen production
from cassava wastewater using an anaerobic sequencing batch reactor: effects of operational
parameters, cod:N ratio, and organic acid composition. Int J Hydrog Energy 35(9):4092–4102
213. Lay J (2004) Factors affecting hydrogen production from high-solid organic wastes. In:
Proceedings of 2nd international workshop on innovative anaerobic technology, Sendai
214. Griffin ME, McMahon KD, Mackie RI, Raskin L (1998) Methanogenic population dynamics
during start-up of anaerobic digesters treating municipal solid waste and biosolids. Biotechnol
Bioeng 57(3):342–355
215. Radjaram B, Saravanane R (2011) Start up study of UASB reactor treating press mud for
biohydrogen production. Biomass Bioenergy 35(7):2721–2728
216. Fangkum A, Reungsang A (2011) Biohydrogen production from mixed xylose/arabinose at
thermophilic temperature by anaerobic mixed cultures in elephant dung. Int J Hydrog Energy
36(21):13928–13938
217. Logan BE, Oh SE, Kim IS, Van Ginkel S (2002) Biological hydrogen production measured in
batch anaerobic respirometers. Environ Sci Technol 36(11):2530–2535
218. Saady NMC, Chaganti SR, Lalman JA, Veeravalli SS, Shanmugam SR, Heath DD (2012)
Effects of linoleic acid and its degradation by-products on mesophilic hydrogen production
8 Biohydrogen of Industrial Waste
367
