FP6Индивидуална стипендия2006–2008

BIOHYP · Hydrogen production by dark fermentation of biomass resources

6РП — Действия „Мария Кюри“

Период
2006-02-01 → 2008-01-31
Финансиране от ЕС
153 320 €
Участници
1
Схема
EIF

Линиите свързват координатора с партньорите.

Накратко на български

Производството на водород чрез тъмна ферментация при високи температури се изследва чрез използване на захари като глюкоза и лактоза. Това помага за превръщането на биомасата от отпадъци в чист енергиен източник, вместо тя просто да бъде изхвърлена.

Този кратък обзор е генериран от изкуствен интелект

Кратко обяснение, генерирано от езиков модел по текста на CORDIS. Оригиналът е по-долу.

Резултати накратко

Final Activity Report Summary - BIOHYP (Hydrogen production by dark fermentation of biomass resources)

Hydrogen production via dark fermentation is an ever-present phenomenon that occurs under anoxic or anaerobic conditions in nature. A wide variety of bacteria is able to convert organic matter to H2, CO2 and metabolites like organic acids and ethanol. In general, these H2 producers live in close vicinity of other microorganisms which consume these metabolites and H2 to produce their own products. In this way a stable ecosystem is created that prevents the end product inhibition of H2 producers, because the H2 produced is immediately consumed by other organisms. In the engineered dark fermentation process, carbohydrate-rich biomass is used as substrate using pure or mixed cultures of bacteria under the appropriate circumstances to produce H2 in the gas phase and organics acids in liquid phase. Using waste or residual biomass instead of disposing it, to produce a clean and renewable energy source is a gainful operation. The simultaneous waste treatment and sustainable energy production as alternative to energy consuming conventional treatment processes makes dark fermentative H2 production from biomass sources more attractive even the yields are lower than the theoretical potentials. Although a considerable amount of literature has been published on dark fermentative H2 production at mesophilic temperatures, studies under thermophilic conditions are very limited. In this project, dark fermentative H2 production under thermophilic conditions from different carbohydrate sources such as glucose, xylose, lactose and glycerol was investigated using natural mixed culture inocula. Moreover, the influence of pH, batch and continuous feeding, removal of dissolved H2 in order to lower H2 partial pressure and organic loading rate on fermentation type and H2 yield was assessed comprehensively. Briefly the following findings were obtained: - Yard waste and food waste composts are appropriate to be used as inoculum for H2 production via thermophilic fermentation of sugars glucose, xylose and lactose. - Fermentation pH below 6 and hydraulic retention time of 1 day suppress methanogenic H2 consumption. To overcome non-methanogenic H2 utilisation, pH has to be below 5.5. - H2 consumption via sulfate reduction is minimised by using low sulfur content feed and avoiding use of sulfuric acid in pH adjustment. - As H2 partial pressure increase the metabolic pathways shift to production of more reduced substrates such as lactate and subsequently H2 yield drops. - Thermophilic conditions provide more stable H2 production through energetically more favorable butyrate fermentation under moderately high H2 partial pressure (45-55kPa). - Higher organic loading rates (5 g/l.day) favour H2 production by lowering redox potential and avoiding unfavourable propionate fermentation. However it should be not so high to avoid free volatile fatty acid inhibition. - The nutrients and trace elements not available in the biomass source has to be supplied. - Fermenters with low hydraulic retention time need to be configured to maximise the bacterial mass - Although some saccharolytic clostridia are known to produce H2 from glycerol, a considerable H2 production was not accomplished with yard waste and food waste composts used.

Текст от CORDIS, на английски · Данни: CORDIS, © Европейски съюз

Цел на проекта

The excessive use of fossil fuels is one of the primary causes of global warming, which has started to affect the earth's climate. Environmental concerns and evolving legislations request more participation of renewable energy sources in the energy market. Biomass represents a potentially major renewable and clean energy source. Because hydrogen is a clean, recyclable, and efficient energy carrier, biomass resources might be biologically converted into this carrier that has a considerable calorific value (1 20.7-140.9 MJ/kg). Fermentative hydrogen production out of biomass is an interesting process for the biological production of hydrogen. This proposal aims to produce hydrogen by dark fermentation of biomass resources at mesophilic and thermophilic conditio ns. Laboratory scale hydrogen producing reactors will be operated to optimize hydrogen production. Emphasis will be put on the application of easily available mesophilic and thermophilic inocula obtained from environmental samples in order to improve the c onversion rate and increase the efficiency of hydrogen production. Initially, different easily biodegradable biomass resources will be selected and characterized. Subsequently, appropriate hydrogen producing inocula will be obtained by using different kind s of environmental samples such as compost materials, wastewater treatment plant sludge, soils and etc. The selected inocula will then be cultured and maintained in hydrogen producing reactors at lab-scale. Afterwards, reactors will be operated under varyi ng parameters to optimize the hydrogen production. Meanwhile, the composition and stability of the defined microbial consortia will be studied by molecular techniques such as DGGE during operation of the reactors and optimization of the parameters. In addi tion, if new bacterial strains appear in hydrogen producing reactors, they will be identified by sequencing relevant 16S rRNA gene DGGE bands

Оригинален текст от CORDIS (на английски).

Участници

  • VLAAMSE INSTELLING VOOR TECHNOLOGISCH ONDERZOEK · MOLКоординаторБелгия

Връзки

Данни: CORDIS, © Европейски съюз