Alkalinity and high total solids affecting H2 production from organic solid waste by anaerobic consortia
暂无分享,去创建一个
[1] L N Csonka,et al. Physiological and genetic responses of bacteria to osmotic stress. , 1989, Microbiological reviews.
[2] R. Banerjee,et al. Microbial transformation of tannin-rich substrate to gallic acid through co-culture method. , 2005, Bioresource technology.
[3] K. M. Muñoz-Páez,et al. Effect of inhibition treatment, type of inocula, and incubation temperature on batch H2 production from organic solid waste , 2006, Biotechnology and bioengineering.
[4] P. N. Sarma,et al. Simultaneous biohydrogen production and wastewater treatment in biofilm configured anaerobic periodic discontinuous batch reactor using distillery wastewater , 2008 .
[5] J. Amend,et al. Energetics of overall metabolic reactions of thermophilic and hyperthermophilic Archaea and bacteria. , 2001, FEMS microbiology reviews.
[6] P. Pavan,et al. A review on hydrogen production with anaerobic mixed cultures , 2004 .
[7] J. Lloret,et al. Ionic Stress and Osmotic Pressure Induce Different Alterations in the Lipopolysaccharide of a Rhizobium meliloti Strain , 1995, Applied and environmental microbiology.
[8] H. Poggi‐Varaldo,et al. Effects of ammonia on anaerobic digestion of simple organic substrates. , 1990 .
[9] P. Mccarty,et al. Chemistry for environmental engineering , 1978 .
[10] P. F. Levy,et al. Biorefining of biomass to liquid fuels and organic chemicals , 1981 .
[11] S. Venkata Mohan,et al. Biohydrogen production from chemical wastewater as substrate by selectively enriched anaerobic mixed consortia: Influence of fermentation pH and substrate composition , 2007 .
[12] Hang-Sik Shin,et al. Hydrogen production from food waste in anaerobic mesophilic and thermophilic acidogenesis , 2004 .
[13] M Momirlan,et al. Current status of hydrogen energy , 2002 .
[14] Alissara Reungsang,et al. Bio-hydrogen production from the fermentation of sugarcane bagasse hydrolysate by Clostridium butyricum , 2008 .
[15] J. Rintala,et al. Batch dark fermentative hydrogen production from grass silage: The effect of inoculum, pH, temperature and VS ratio , 2008 .
[16] D. Yang,et al. Regulatory Factors Associated with Synthesis of the Osmolyte Glycine Betaine in the Halophilic MethanoarchaeonMethanohalophilus portucalensis , 1999, Applied and Environmental Microbiology.
[17] Jan A. Oleszkiewicz,et al. Anaerobic co‐composting of municipal solid waste and waste sludge at hlgh total solids levels , 1992 .
[18] R E Speece,et al. Hydrolysis and acidogenesis of particulate organic material in mesophilic and thermophilic anaerobic digestion , 2003, Environmental technology.
[19] Y. Ziniu,et al. Optimization of process parameters for poly γ-glutamate production under solid state fermentation from Bacillus subtilis CCTCC202048 , 2005 .
[20] Chyi-How Lay,et al. Effects of carbonate and phosphate concentrations on hydrogen production using anaerobic sewage sludge microflora , 2004 .
[21] D. T. Jones,et al. Acetone-butanol fermentation revisited. , 1986, Microbiological reviews.
[22] Richard Sparling,et al. Hydrogen production from inhibited anaerobic composters , 1997 .
[23] O. N. Ağdağ,et al. Effect of alkalinity on the performance of a simulated landfill bioreactor digesting organic solid wastes. , 2005, Chemosphere.
[24] D. Sponza,et al. Effects of alkalinity and co-substrate on the performance of an upflow anaerobic sludge blanket (UASB) reactor through decolorization of Congo Red azo dye. , 2005, Bioresource technology.
[25] T. Noike,et al. Hydrogen fermentation of organic municipal wastes , 2000 .
[26] A. E. Greenberg,et al. Standard methods for the examination of water and wastewater : supplement to the sixteenth edition , 1988 .
[27] K. M. Muñoz-Páez,et al. Improvement of biohydrogen production from solid wastes by intermittent venting and gas flushing of batch reactors headspace. , 2006, Environmental science & technology.
[28] Franco Cecchi,et al. Semi-continuous solid substrate anaerobic reactors for H2 production from organic waste: Mesophilic versus thermophilic regime , 2005 .
[29] H. Poggi‐Varaldo,et al. Solid substrate anaerobic co-digestion of paper mill sludge, biosolids, and municipal solid waste , 1997 .
[30] Hui Wang,et al. Effects of pH value and substrate concentration on hydrogen production from the anaerobic fermentation of glucose , 2008 .
[31] Debabrata Das,et al. Hydrogen production by biological processes: a survey of literature , 2001 .
[32] J. Lay,et al. Feasibility of biological hydrogen production from organic fraction of municipal solid waste , 1999 .
[33] W. Bae,et al. Improved Anaerobic Process Efficiency Using Mesophilic and Thermophilic Elutriated Phased Treatment , 2004 .
[34] P. V. Soest,et al. Methods for dietary fiber, neutral detergent fiber, and nonstarch polysaccharides in relation to animal nutrition. , 1991, Journal of dairy science.
[35] Pei-Chen Kuo,et al. Effect of pH in fermentation of vegetable kitchen wastes on hydrogen production under a thermophilic condition , 2008 .
[36] James I. Chang,et al. Influence of chemical nature of organic wastes on their conversion to hydrogen by heat-shock digested sludge , 2003 .
[37] Jan A. Oleszkiewicz,et al. Inhibition of growth and acetate uptake by ammonia in batch anaerobic digestion , 2007 .
[38] Richard E. Speece,et al. Temperature-Staged Anaerobic Processes , 1997 .
[39] Hang-Sik Shin,et al. FEASIBILITY OF BIOHYDROGEN PRODUCTION BY ANAEROBIC CO-DIGESTION OF FOOD WASTE AND SEWAGE SLUDGE , 2004 .
[40] T. Noike,et al. Biological hydrogen potential of materials characteristic of the organic fraction of municipal solid wastes. , 2000, Water science and technology : a journal of the International Association on Water Pollution Research.
[41] J. Lay,et al. Pilot study of the influence of stirring and pH on anaerobes converting high-solid organic wastes to hydrogen , 2008 .