Literature DB >> 10898857

Hydrogen production by Anabaena variabilis PK84 under simulated outdoor conditions.

V B Borodin1, A A Tsygankov, K K Rao, D O Hall.   

Abstract

Hydrogen production by autotrophic, vanadium-grown cells of Anabaena variabilis PK84, a cyanobacterial mutant impaired in the utilization of molecular hydrogen, has been studied under simulated outdoor conditions. The cyanobacterium was cultivated in an automated helical tubular photobioreactor (4.35 L) under air containing 2% CO(2), with alternating 12-h light (36 degrees C) and 12-h dark (14 degrees to 30 degrees C) periods. A. variabilis steadily produced H(2) directly in the photobioreactor during continuous cultivation for 2.5 months. The maximum H(2) production by the continuously aerated culture under light of 332 microE. s(-1). m(-2) was 230 mL per 12-h light period per photobioreactor and was observed at a growth density corresponding to 3.6 to 4.6 microgram Chl a. mL(-1) (1.2 to 1.6 mg dry weight. mL(-1)). Replacement of air with an argon atmosphere enhanced H(2) evolution by a factor of 2. This stimulatory effect was caused mainly by N(2) deprivation in the cell suspension. A short-term decrease of the CO(2) concentration in the air suppressed H(2) evolution. Anoxygenic conditions over the dark periods had a negative effect on H(2) production. The peculiarity of hydrogen production and some physiological characteristics of A. variabilis PK84 during cultivation in the photobioreactor under a light-dark regime are investigated. Copyright 2000 John Wiley & Sons, Inc.

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Year:  2000        PMID: 10898857     DOI: 10.1002/1097-0290(20000905)69:5<478::aid-bit2>3.0.co;2-l

Source DB:  PubMed          Journal:  Biotechnol Bioeng        ISSN: 0006-3592            Impact factor:   4.530


  7 in total

1.  High rates of photobiological H2 production by a cyanobacterium under aerobic conditions.

Authors:  Anindita Bandyopadhyay; Jana Stöckel; Hongtao Min; Louis A Sherman; Himadri B Pakrasi
Journal:  Nat Commun       Date:  2010       Impact factor: 14.919

Review 2.  Nitrogen fixation and hydrogen metabolism in cyanobacteria.

Authors:  Hermann Bothe; Oliver Schmitz; M Geoffrey Yates; William E Newton
Journal:  Microbiol Mol Biol Rev       Date:  2010-12       Impact factor: 11.056

3.  Cyanobacterial H(2) production -- a comparative analysis.

Authors:  Kathrin Schütz; Thomas Happe; Olga Troshina; Peter Lindblad; Elsa Leitão; Paulo Oliveira; Paula Tamagnini
Journal:  Planta       Date:  2003-10-15       Impact factor: 4.116

4.  Hydrogen photoproduction by immobilized n2-fixing cyanobacteria: understanding the role of the uptake hydrogenase in the long-term process.

Authors:  Sergey Kosourov; Hannu Leino; Gayathri Murukesan; Fiona Lynch; Kaarina Sivonen; Anatoly A Tsygankov; Eva-Mari Aro; Yagut Allahverdiyeva
Journal:  Appl Environ Microbiol       Date:  2014-07-11       Impact factor: 4.792

Review 5.  Hydrogenases and hydrogen metabolism of cyanobacteria.

Authors:  Paula Tamagnini; Rikard Axelsson; Pia Lindberg; Fredrik Oxelfelt; Röbbe Wünschiers; Peter Lindblad
Journal:  Microbiol Mol Biol Rev       Date:  2002-03       Impact factor: 11.056

6.  Hydrogen production by Cyanobacteria.

Authors:  Debajyoti Dutta; Debojyoti De; Surabhi Chaudhuri; Sanjoy K Bhattacharya
Journal:  Microb Cell Fact       Date:  2005-12-21       Impact factor: 5.328

7.  Cyanobacterial nitrogenases: phylogenetic diversity, regulation and functional predictions.

Authors:  Alberto A Esteves-Ferreira; João Henrique Frota Cavalcanti; Marcelo Gomes Marçal Vieira Vaz; Luna V Alvarenga; Adriano Nunes-Nesi; Wagner L Araújo
Journal:  Genet Mol Biol       Date:  2017-03-20       Impact factor: 1.771

  7 in total

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