Your browser doesn't support javascript.
loading
Design of a microbial fuel cell and its transition to microbial electrolytic cell for hydrogen production by electrohydrogenesis.
Indian J Exp Biol ; 2013 Oct; 51(10): 860-865
Article in English | IMSEAR | ID: sea-149392
ABSTRACT
Anaerobic bacteria were isolated from industrial wastewater and soil samples and tested for exoelectrogenic activity by current production in double chambered microbial fuel cell (MFC), which was further transitioned into a single chambered microbial electrolytic cell to test hydrogen production by electrohydrogenesis. Of all the cultures, the isolate from industrial water sample showed the maximum values for current = 0.161 mA, current density = 108.57 mA/m2 and power density = 48.85 mW/m2 with graphite electrode. Maximum voltage across the cell, however, was reported by the isolate from sewage water sample (506 mv) with copper as electrode. Tap water with KMnO4 was the best cathodic electrolyte as the highest values for all the measured MFC parameters were reported with it. Once the exoelectrogenic activity of the isolates was confirmed by current production, these were tested for hydrogen production in a single chambered microbial electrolytic cell (MEC) modified from the MFC. Hydrogen production was reported positive from co-culture of isolates of both the water samples and co-culture of one soil and one water sample. The maximum rate and yield of hydrogen production was 0.18 m3H2/m3/d and 3.2 mol H2/mol glucose respectively with total hydrogen production of 42.4 mL and energy recovery of 57.4%. Cumulative hydrogen production for a five day cycle of MEC operation was 0.16 m3H2/m3/d.
Subject(s)

Full text: Available Index: IMSEAR (South-East Asia) Main subject: Sewage / Bioelectric Energy Sources / Bioreactors / Electrolysis / Equipment Design / Hydrogen / Models, Biological Language: English Journal: Indian J Exp Biol Year: 2013 Type: Article

Similar

MEDLINE

...
LILACS

LIS

Full text: Available Index: IMSEAR (South-East Asia) Main subject: Sewage / Bioelectric Energy Sources / Bioreactors / Electrolysis / Equipment Design / Hydrogen / Models, Biological Language: English Journal: Indian J Exp Biol Year: 2013 Type: Article