Page 478 - เชื้อเพลิงชีวภาพและชีวเคมีภัณฑ์โดยจุลินทรีย์
P. 478
440
Davila-Vazquez G., Cota-Navarro C.B., Rosales-Colunga L.M., León-Rodríguez A.D., Razo- Flores, E. Continuous biohydrogen production using cheese whey: Improving the hydrogen production rate. Int J Hydrogen Energy 2009; 34: 4296–4304.
de Amorim E.L.C., Barros A.R., Damianovic M.H.R.Z. Silva, E.L. Anaerobic fluidized bed reactor with expanded clay as support for hydrogen production through dark fermentation of glucose. Int J Hydrogen Energy 2009; 34: 783–790.
Dutta S., Hoffmann E., Hahn H. Study of rotating biological contactor performance in wastewater treatment using multi-culture biofilm model. Water Sci Technol 2007; 55: 345–353.
Elreedy A., Tawfik A., Kubota K., Shimada Y., Harada H. Hythane (H2+ CH4) production from petrochemical wastewater containing mono-ethylene glycol via stepped anaerobic baffled reactor. Int Biodeterior Biodegrad 2015; 105: 252–261.
Elenter D., Milferstedt K., Zhang W., Hausner M., Morgenroth E. Influence of detachment on substrate removal and microbial ecology in a heterotrophic/autotrophic biofilm. Water Res 2007; 41: 4657–4671.
Elmitwalli T.A., van Dun M., Bruning H., Zeeman G., Lettinga G. The role of filter media in removing suspended and colloidal particles in an anaerobic reactor treating domestic sewage. Bioresour Technol 2000; 72: 235–242.
Fang C., Boe K., Angelidaki I. Biogas production from potato-juice, a by-product from potato-starch processing, in upflow anaerobic sludge blanket (UASB) and expanded granular sludge bed (EGSB) reactors. Bioresour Technol 2011; 102: 5734–5741.
Han H. D., Lee W., Kim Y. K., Kwon J. L., Choi H. S., Kang Y., Kim S. D. Phase hold-up and critical fluidization velocity in a three-phase inverse fluidized bed. Korean J Chem Eng 2003; 20: 163–168.
Hassan S.R., Zwain H.M., Dahlan I. Development of anaerobic reactor for industrial wastewater treatment: An overview, present stage and future prospects. J Adv Sci Res 2013; 4: 7–12.