Photo-fermentative hydrogen production from cheese whey: Engineering of a mixed culture process in a semi-continuous, tubular photo-bioreactor
暂无分享,去创建一个
[1] M. L. Abundo,et al. A review of biohydrogen production technology for application towards hydrogen fuel cells , 2021 .
[2] V. Luongo,et al. Enhancing photo fermentative hydrogen production using ethanol rich dark fermentation effluents , 2021, International Journal of Hydrogen Energy.
[3] V. Luongo,et al. Carbon catabolite repression occurrence in photo fermentation of ethanol-rich substrates. , 2021, Journal of environmental management.
[4] L. Lombardi,et al. Environmental life cycle assessment of polyhydroxyalkanoates production from cheese whey. , 2021, Waste management.
[5] G. Esposito,et al. Phenanthrene biodegradation in a fed-batch reactor treating a spent sediment washing solution: Techno-economic implications for the recovery of ethanol as extracting agent. , 2021, Chemosphere.
[6] Siamak Alipour,et al. Photofermentative hydrogen production by immobilized photosynthetic bacteria: Current perspectives and challenges , 2021 .
[7] L. Frunzo,et al. A comprehensive review of mathematical models of photo fermentation , 2021, Critical reviews in biotechnology.
[8] E. R. Rene,et al. Bioreactors for wastewater to energy conversion: from pilot to full scale experiences , 2021 .
[9] G. Buitrón,et al. Polyhydroxyalkanoates from organic waste streams using purple non-sulfur bacteria. , 2020, Bioresource technology.
[10] J. Willison,et al. H2 production by photofermentation in an innovative plate‐type photobioreactor with meandering channels , 2020, Biotechnology and bioengineering.
[11] A. Jäger-Waldau,et al. Green hydrogen in Europe – A regional assessment: Substituting existing production with electrolysis powered by renewables , 2020 .
[12] Robert W. M. Pott,et al. Hydrogen production by immobilized Rhodopseudomonas palustris in packed or fluidized bed photobioreactor systems , 2020 .
[13] V. Luongo,et al. Biohydrogen and poly-β-hydroxybutyrate production by winery wastewater photofermentation: Effect of substrate concentration and nitrogen source. , 2020, Journal of environmental management.
[14] Nitai Basak,et al. Molecular biohydrogen production by dark and photo fermentation from wastes containing starch: recent advancement and future perspective , 2020, Bioprocess and Biosystems Engineering.
[15] Quanguo Zhang,et al. Investigation of the interaction between lighting and mixing applied during the photo-fermentation biohydrogen production process from agricultural waste. , 2020, Bioresource technology.
[16] Quanguo Zhang,et al. Photo-fermentation biohydrogen production and electrons distribution from dark fermentation effluents under batch, semi-continuous and continuous modes. , 2020, Bioresource technology.
[17] Safa Senan Mahmod,et al. Recent advanced biotechnological strategies to enhance photo-fermentative biohydrogen production by purple non-sulphur bacteria: An overview , 2020 .
[18] G. Buitrón,et al. Production of polyhydroxybutyrate by pure and mixed cultures of purple non-sulfur bacteria: A review. , 2020, Journal of biotechnology.
[19] Liejin Guo,et al. Strong pH dependence of hydrogen production from glucose by Rhodobacter sphaeroides , 2020 .
[20] I. Chairez,et al. Enhanced hydrogen production by a sequential dark and photo fermentation process: Effects of initial feedstock composition, dilution and microbial population , 2020 .
[21] X. Ge,et al. Continuous photo-fermentative hydrogen production in a tubular photobioreactor using corn stalk pith hydrolysate with a consortium , 2020 .
[22] Nadeem Tahir,et al. Comparative study on bio-hydrogen production from corn stover: Photo-fermentation, dark-fermentation and dark-photo co-fermentation , 2020 .
[23] Quanguo Zhang,et al. Enhancement of pH values stability and photo-fermentation biohydrogen production by phosphate buffer , 2020, Bioengineered.
[24] G. De Gioannis,et al. Control of fermentation duration and pH to orient biochemicals and biofuels production from cheese whey. , 2019, Bioresource technology.
[25] Duu-Jong Lee,et al. Grid columnar flat panel photobioreactor with immobilized photosynthetic bacteria for continuous photofermentative hydrogen production. , 2019, Bioresource technology.
[26] Jone Ibarruri,et al. Valorization of cheese whey and orange molasses for fungal biomass production by submerged fermentation with Rhizopus sp. , 2019, Bioprocess and Biosystems Engineering.
[27] J. Magnin,et al. Hydrogen generation in a pressurized photobioreactor: Unexpected enhancement of biohydrogen production by the phototrophic bacterium Rhodobacter capsulatus , 2019, Applied Energy.
[28] T. Veziroglu,et al. Hydrogen production from phototrophic microorganisms: Reality and perspectives , 2019, International Journal of Hydrogen Energy.
[29] P. Hallenbeck,et al. Photofermentative Hydrogen Production , 2019, Biohydrogen.
[30] Nadeem Tahir,et al. Analysis of shaking effect on photo-fermentative hydrogen production under different concentrations of corn stover powder , 2018, International Journal of Hydrogen Energy.
[31] Karolina Kucharska,et al. Hydrogen production from biomass using dark fermentation , 2018, Renewable and Sustainable Energy Reviews.
[32] Y. Chisti,et al. Continuous production of biohydrogen from oil palm empty fruit bunch hydrolysate in tubular photobioreactors , 2018, International Journal of Hydrogen Energy.
[33] M. V. van Loosdrecht,et al. Effective role of medium supplementation in microalgal lipid accumulation , 2018, Biotechnology and bioengineering.
[34] Dongda Zhang,et al. Production of renewable biohydrogen by Rhodobacter sphaeroides S10: A comparison of photobioreactors , 2018 .
[35] Jianjun Hu,et al. Effect of substrate concentration on hydrogen production by photo-fermentation in the pilot-scale baffled bioreactor. , 2018, Bioresource technology.
[36] Jianjun Hu,et al. Photo-fermentative hydrogen production in a 4m3 baffled reactor: Effects of hydraulic retention time. , 2017, Bioresource technology.
[37] Pinaki Bhattacharya,et al. Hydrogen from food processing wastes via photofermentation using Purple Non-sulfur Bacteria (PNSB) – A review , 2017 .
[38] D. Batstone,et al. A mechanistic model for anaerobic phototrophs in domestic wastewater applications: Photo-anaerobic model (PAnM). , 2017, Water research.
[39] L. Frunzo,et al. Photofermentative production of hydrogen and poly-β-hydroxybutyrate from dark fermentation products. , 2017, Bioresource technology.
[40] I. Eroglu,et al. A compact tubular photobioreactor for outdoor hydrogen production from molasses , 2017 .
[41] Zhang Zhiping,et al. CFD modeling and experiment of heat transfer in a tubular photo-bioreactor for photo-fermentation bio-hydrogen production , 2017 .
[42] V. Kalia,et al. Production of co-polymers of polyhydroxyalkanoates by regulating the hydrolysis of biowastes. , 2016, Bioresource technology.
[43] Ebru Özgür,et al. Hydrogen production by hup− mutant and wild-type strains of Rhodobacter capsulatus from dark fermentation effluent of sugar beet thick juice in batch and continuous photobioreactors , 2015, Bioprocess and Biosystems Engineering.
[44] Jianjun Hu,et al. Influence of mixing method and hydraulic retention time on hydrogen production through photo-fermentation with mixed strains , 2015 .
[45] Piet N.L. Lens,et al. A review on dark fermentative biohydrogen production from organic biomass: Process parameters and use of by-products , 2015 .
[46] Thomas Bley,et al. Hydrogen production by Rhodobacter sphaeroides DSM 158 under intense irradiation. , 2015, Bioresource technology.
[47] Yi Wang,et al. Effect of Inlet Velocity on Heat Transfer Process in a Novel Photo-Fermentation Biohydrogen Production Bioreactor using Computational Fluid Dynamics Simulation , 2014 .
[48] F. Bux,et al. Use of mixed culture bacteria for photofermentive hydrogen of dark fermentation effluent. , 2014, Bioresource technology.
[49] Debabrata Das,et al. Optimization of molecular hydrogen production by Rhodobacter sphaeroides O.U.001 in the annular photobioreactor using response surface methodology , 2014 .
[50] R. Asthana,et al. Optimization of photo-hydrogen production based on cheese whey spent medium , 2014 .
[51] R. Philippis,et al. Photobioreactor design and illumination systems for H2 production with anoxygenic photosynthetic bacteria: A review , 2014 .
[52] J. Rivas,et al. Cheese whey wastewater: characterization and treatment. , 2013, The Science of the total environment.
[53] Ebru Özgür,et al. Biohydrogen production by Rhodobacter capsulatus Hup(-) mutant in pilot solar tubular photobioreactor , 2012 .
[54] I. Eroglu,et al. Kinetic analysis of photosynthetic growth, hydrogen production and dual substrate utilization by Rhodobacter capsulatus , 2012 .
[55] Mi‐Sun Kim,et al. Effect of substrate concentration on continuous Photo-fermentative hydrogen production from lactate using Rhodobacter sphaeroides , 2012 .
[56] S. Wu,et al. Correlation between bio-hydrogen production and polyhydroxybutyrate (PHB) synthesis by Rhodopseudomonas palustris WP3-5. , 2012, Bioresource technology.
[57] Giuseppe Torzillo,et al. Sustained outdoor H2 production with Rhodopseudomonas palustris cultures in a 50 L tubular photobioreactor , 2012 .
[58] S. Singh,et al. Biohydrogen Production from Cheese Whey Wastewater in a Two-Step Anaerobic Process , 2012, Applied Biochemistry and Biotechnology.
[59] Duu-Jong Lee,et al. Lattice Boltzmann simulation of substrate flow past a cylinder with PSB biofilm for bio-hydrogen production , 2011 .
[60] Duu-Jong Lee,et al. Mathematical modeling of two-phase flow and transport in an immobilized-cell photobioreactor , 2011 .
[61] Jo-Shu Chang,et al. Perspectives on cultivation strategies and photobioreactor designs for photo-fermentative hydrogen production. , 2011, Bioresource technology.
[62] Michael Modigell,et al. Comparison of two reactor concepts for anoxygenic H2 production by Rhodobacter capsulatus , 2010 .
[63] Ebru Özgür,et al. Biological hydrogen production by Rhodobacter capsulatus in solar tubular photo bioreactor , 2010 .
[64] K. Seifert,et al. Hydrogen generation in photobiological process from dairy wastewater , 2010 .
[65] N. Azbar,et al. The effect of dilution and l-malic acid addition on bio-hydrogen production with Rhodopseudomonas palustris from effluent of an acidogenic anaerobic reactor , 2010 .
[66] Clemens Posten,et al. Design principles of photo‐bioreactors for cultivation of microalgae , 2009 .
[67] Jianlong Wang,et al. FACTORS INFLUENCING FERMENTATIVE HYDROGEN PRODUCTION: A REVIEW , 2009 .
[68] M. V. van Loosdrecht,et al. Mixed culture biotechnology for bioenergy production. , 2007, Current opinion in biotechnology.
[69] Caroline Peres,et al. Complete genome sequence of the metabolically versatile photosynthetic bacterium Rhodopseudomonas palustris , 2004, Nature Biotechnology.