Title of article
Critical assessment of anaerobic processes for continuous biohydrogen production from organic wastewater
Author/Authors
Show، نويسنده , , Kuan-Yeow and Zhang، نويسنده , , Zhen-Peng and Tay، نويسنده , , Joo-Hwa and Liang، نويسنده , , David Tee and Lee، نويسنده , , Duu-Jong and Ren، نويسنده , , Nanqi and Wang، نويسنده , , Aijie، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2010
Pages
6
From page
13350
To page
13355
Abstract
Production of biohydrogen using dark fermentation has received much attention owing to the fact that hydrogen can be generated from renewable organics including waste materials. The key to successful application of anaerobic fermentation is to uncouple the liquid retention time and the biomass retention time in the reactor system. Various reactor designs based on biomass retention within the reactor system have been developed. This paper presents our research work on bioreactor designs and operation for biohydrogen production. Comparisons between immobilized-cell systems and suspended-cell systems based on biomass growth in the forms of granule, biofilm and flocs were made. Reactor configurations including column- and tank-based reactors were also assessed. Experimental results indicated that formation of granules or biofilms substantially enhanced biomass retention which was found to be proportional to the hydrogen production rate. Rapid hydrogen-producing culture growth and high organic loading rate might limit the application of biofilm biohydrogen production, since excessive growth of fermentative biomass would result in washout of support carrier. It follows that column-based granular sludge process is a preferred choice of process for continuous biohydrogen production from organic wastewater, indicating maximum hydrogen yield of 1.7 mol-H2/mol-glucose and hydrogen production rate of 6.8 L-H2/L-reactor h.
Keywords
Biofilm , Granule , Continuous stirred tank reactor (CSTR) , Anaerobic fluidized bed reactor (AFBR)
Journal title
International Journal of Hydrogen Energy
Serial Year
2010
Journal title
International Journal of Hydrogen Energy
Record number
1663631
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