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Enrichment and microbial characterization of syngas converting anaerobic cultures

Alves, J. I.; Visser, Michael; Stams, A. J. M.; Plugge, Caroline M.; Alves, M. M.; Sousa, D. Z.

Bioconversion of recalcitrant biomass/waste into bulk chemicals or biofuels is often not feasible. By gasification of these materials, syngas (mainly composed of CO2, CO and H2) is generated and can be used for the production of high value compounds by thermochemical or biotechnological processes. Here, three thermophilic cultures enriched with syngas mixtures or pure CO (T-Syn, T-Syn-CO and T-CO) were studied....


Enrichment of anaerobic syngas-converting bacteria from thermophilic bioreactor...

Alves, J. I.; Stams, A. J. M.; Plugge, Caroline M.; Alves, M. M.; Sousa, D. Z.

Thermophilic (55 °C) anaerobic microbial communities were enriched with a synthetic syngas mixture (composed of CO, H2, and CO2) or with CO alone. Cultures T-Syn and T-CO were incubated and successively transferred with syngas (16 transfers) or CO (9 transfers), respectively, with increasing CO partial pressures from 0.09 to 0.88 bar. Culture T-Syn, after 4 successive transfers with syngas, was also incubated w...


Strategies to Suppress Hydrogen-Consuming Microorganisms Affect Macro and Micro...

Abreu, A. A.; Alves, J. I.; Pereira, M. A.; Sousa, D. Z.; Alves, M. M.

Treatment of anaerobic granules with heat and two chemical treatments, contacting with 2-bromoethanesulfonate (BES) and with BESþChloroform, were applied to suppress hydrogen-consuming microorganisms. Three mesophilic expanded granular sludge bed (EGSB) reactors— RHeat, RBES, and RBESþChlo—were inoculated with the treated sludges and fed with synthetic sugar-based wastewater (5 gCOD L 1, HRT 20–12 h). Morpholog...


Engineered heat treated methanogenic granules : a promising biotechnological ap...

Abreu, A. A.; Alves, J. I.; Pereira, M. A.; Karakashev, D.; Alves, M. M.; Angelidaki, I.

In the present study, two granular systems were compared in terms of hydrogen production rate, stability and bacterial diversity under extreme thermophilic conditions (70 °C). Two EGSB reactors were individually inoculated with heat treated methanogenic granules (HTG) and HTG amended with enrichment culture with high capacity of hydrogen production (engineered heat treated methanogenic granules – EHTG), respect...


Biological fermentation of syngas

Alves, J. I.; Sousa, D. Z.; Alves, M. M.

Este resumo faz parte de: Book of abstracts of the Meeting of the Institute for Biotechnology and Bioengineering, 2, Braga, Portugal, 2010. A versão completa do livro de atas está disponível em: http://hdl.handle.net/1822/10968


Induction of hydrogen production affects micro and macro structure of granular ...

Abreu, A. A.; Alves, J. I.; Pereira, M. A.; Sousa, D. Z.; Alves, M. M.


Continuous high rate anaerobic treatment of oleic acid based wastewater is poss...

Cavaleiro, A. J.; Salvador, A. F.; Alves, J. I.; Alves, M. M.

Mineralization of a synthetic effluent containing 50% COD as oleic acid was achieved in a continuous anaerobic reactor at organic loading rates up to 21 kg COD m−3 day−1, HRT of 9 h, attaining 99% of COD removal efficiency and a methane yield higher than 70%. A maximum specific methane production rate of 1170 ± 170 mg COD-CH4 g VS−1 day−1 was measured during the reactor’s operation. A start-up strategy combinin...


Microbial community structure of biohydrogen production process in extreme ther...

Alves, J. I.; Abreu, A. A.; Pereira, M. A.; Karakashev, D.; Angelidaki, I.; Alves, M. M.


Effect of sulfate on methanogenic communities that degrade unsaturated and satu...

Sousa, D. Z.; Alves, J. I.; Alves, M. M.; Smidt, Hauke; Stams, A. J. M.

Anaerobic bacteria involved in the degradation of long-chain fatty acids (LCFA), in the presence of sulfate as electron acceptor, were studied by combined cultivation-dependent and molecular techniques. The bacterial diversity in four mesophilic sulfate-reducing enrichment cultures, growing on oleate (C18:1, unsaturated LCFA) or palmitate (C16:0, saturated LCFA), was studied by denaturing gradient gel electroph...


Bacterial community structure of biohydrogen production process in extreme ther...

Abreu, A. A.; Alves, J. I.; Pereira, M. A.; Karakashev, D.; Angelidaki, I.; Alves, M. M.


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    Financiadores do RCAAP

Fundação para a Ciência e a Tecnologia Universidade do Minho   Governo Português Ministério da Educação e Ciência Programa Operacional da Sociedade do Conhecimento União Europeia