Page 296 - Industrial Wastewater Treatment, Recycling and Reuse
P. 296
270 Industrial Wastewater Treatment, Recycling, and Reuse
Im, W.T., Kim, D.H., Kim, K.H., Kim, M.S., 2012. Bacterial community analyses by pyr-
osequencing in dark fermentative H 2 -producing reactor using organic wastes as a feed-
stock. Int. J. Hydrogen Energ. 37 (10), 8330–8337.
´
Indra, S., Halldor, G.S., Sigurbjo ¨rn, E., Asa, B., Grzegorz, M., 2010. Geothermal CO 2 bio-
mitigation techniques by utilizing microalgae at the blue lagoon, iceland. In: Thirty-
Fourth Workshop on Geothermal Reservoir Engineering Stanford University, Stanford,
California.
Jin, Y.-X., Shi, L.-H., Kawata, Y., 2013. Metabolomics-based component profiling of Halo-
monas sp. KM-1 during different growth phases in poly(3-hydroxybutyrate) production.
http://dx.doi.org/10.1016/j.biortech.2013.04.059.
Jong, W., 2009. Sustainable hydrogen production by thermochemical biomass processing.
In: Gupta, R.B. (Ed.), Hydrogen Fuel: Production, Transport, and Storage. Taylor &
Francis Group, LLC, Boca Raton, Florida, USA.
Julia, C.R., Celis, L.B., Felipe, A.M., Elı ´as, R.F., 2012. Different start-up strategies to
enhance biohydrogen production from cheese whey in UASB reactors. Int. J. Hydrogen
Energ. 37 (7), 5591–5601.
Kaplan, D., Richmond, A.E., Dubinsky, Z., Aaronson, S., 1986. Algal nutrition.
In: Richmond, A. (Ed.), Handbook for Microalgal Mass Culture. CRC Press, Boca
Raton, FL, pp. 147–198.
Karadag, D., Puhakka, J.A., 2010. Enhancement of anaerobic hydrogen production by iron
and nickel. Int. J. Hydrogen Energ. 35, 8554–8560.
Kargi, F., Catalkaya, E.C., 2011. Hydrogen gas production from olive mill wastewater by
electrohydrolysis with simultaneous COD removal. Int. J. Hydrogen Energ. 36 (5),
3457–3464.
Kargi, F., Eren, N.S., Ozmihci, S., 2012. Bio-hydrogen production from cheese whey pow-
der (CWP) solution: comparison of thermophilic and mesophilic dark fermentations. Int.
J. Hydrogen Energ. 37 (10), 8338–8342.
Khardenavis, A.A., Kumar, M.S., Mudliar, S.N., Chakrabarti, T.N., 2007. Biotechnological
conversion of agro-industrial wastewaters into biodegradable plastic, poly b-hydroxybu-
tyrate. Bioresour. Technol. 98, 3579–3584.
Kim, B.H., Gadd, G.M., 2008. Bacterial Physiology and Metabolism. Cambridge University
Press, Cambridge.
Kim, M.S., Lee, D.Y., 2010. Fermentative hydrogen production from tofu-processing waste
and anaerobic digester sludge using microbial consortium. Bioresour. Technol.
101, S48–S52.
Kim, M.K., Park, J.W., Park, C.S., Kim, S.J., Jeune, K.H., Chang, M.U., Acreman, J., 2007.
Enhanced production of Scenedesmus spp. (green microalgae) using a new medium con-
taining fermented swine wastewater. Bioresour. Technol. 98, 2220–2228.
Kim, D.H., Kim, S.H., Jung, K.W., Kim, M.S., Shin, H.S., 2011a. Effect of initial pH inde-
pendent of operational pH on hydrogen fermentation of food waste. Bioresour. Technol.
102 (18), 8646–8652.
Kim, M.S., Lee, D.-Y., Kim, D.-H., 2011b. Continuous hydrogen production from tofu
processing waste using anaerobic mixed microflora under thermophilic conditions.
Int. J. Hydrogen Energ. 36 (14), 8712–8718.
Kim, S.H., Cheona, H.C., Lee, C.Y., 2012. Enhancement of hydrogen production by recy-
cling of methanogenic effluent in two-phase fermentation of food waste. Int. J. Hydro-
gen Energ. 37, 13777–13782.
KiranKumar,A.,VenkateswarReddy,M.,Chandrasekhar,K.,Srikanth,S.,VenkataMohan,S.,
2012. Endocrine disruptive estrogens role in electron transfer: bio-electrochemical remedi-
ation with microbial mediated electrogenesis. Bioresour. Technol. 104, 547–556.
Knothe, G., Dunn, R., Bagby, M., 1997. Biodiesel: the use of vegetable oils and their deriv-
atives as alternative diesel fuels. Fuels and Chemicals from Biomass. American Chemical
Society, Washington, DC, pp. 172–208.