Dark and photo fermentation
Hydrogen production from water hyacinth through dark- and photo- fermentation
β Scribed by Huibo Su; Jun Cheng; Junhu Zhou; Wenlu Song; Kefa Cen
- Publisher
- Elsevier Science
- Year
- 2010
- Tongue
- English
- Weight
- 414 KB
- Volume
- 35
- Category
- Article
- ISSN
- 0360-3199
No coin nor oath required. For personal study only.
β¦ Synopsis
This article discusses the method of producing hydrogen from water hyacinth. Water hyacinth was pretreated with microwave heating and alkali to enhance the enzymatic hydrolysis and hydrogen production in a two-step process of dark-and photo-fermentation. Water hyacinth with various concentrations of 10e40 g/l was pretreated with four methods: (1) steam heating; (2) steam heating and microwave heating/alkali pretreatment;
(3) steam heating and enzymatic hydrolysis; (4) steam heating, microwave heating/alkali pretreatment and enzymatic hydrolysis. Water hyacinth (20 g/l) pretreated with method 4 gave the maximum reducing sugar yield of 30.57 g/100 g TVS, which was 45.6% of the theoretical reducing sugar yield (67.0 g/100 g TVS). The pretreated water hyacinth was used to produce hydrogen by mixed H 2 -producing bacteria in dark fermentation. The maximum hydrogen yield of 76.7 ml H 2 /g TVS was obtained at 20 g/l of water hyacinth. The residual solutions from dark fermentation (mainly acetate and butyrate) were used to further produce hydrogen by immobilized Rhodopseudomonas palustris in photo fermentation. The maximum hydrogen yield of 522.6 ml H 2 /g TVS was obtained at 10 g/l of water hyacinth.
Through a combined process of dark-and photo-fermentation, the maximum hydrogen yield from water hyacinth was dramatically enhanced from 76.7 to 596.1 ml H 2 /g TVS, which was 59.6% of the theoretical hydrogen yield.
π SIMILAR VOLUMES
Hydrogen gas production by photo-fermentation of dark fermentation effluent of acid hydrolyzed wheat starch was investigated at different hydraulic residence times (HRT ΒΌ 1e10 days). Pure Rhodobacter sphaeroides (NRRL B-1727) culture was used in continuous photo-fermentation by periodic feeding and
This article overviews reported studies on bio-hydrogen production from different raw materials by dark and photo-fermentations operated with different modes. Sequential and combined dark and photo-fermentations operated in batch, continuous and fed-batch modes were compared. Operating conditions an