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Détail de l'auteur
Auteur Nyomi Uduman
Documents disponibles écrits par cet auteur
Affiner la rechercheA parametric study of electrocoagulation as a recovery process of marine microalgae for biodiesel production / Nyomi Uduman in Chemical engineering journal, Vol. 174 N° 1 (Octobre 2011)
[article]
in Chemical engineering journal > Vol. 174 N° 1 (Octobre 2011) . - pp.249–257
Titre : A parametric study of electrocoagulation as a recovery process of marine microalgae for biodiesel production Type de document : texte imprimé Auteurs : Nyomi Uduman, Auteur ; Vivien Bourniquel, Auteur ; Michael K. Danquah, Auteur Année de publication : 2012 Article en page(s) : pp.249–257 Note générale : Génie chimique Langues : Anglais (eng) Mots-clés : Electrocoagulation Dewatering Microalgae separation Biodiesel Zeta potential Résumé : Microalgal biomass as feedstock for biofuel production is rapidly gaining appreciation in response to the increasing petroleum prices and the upsurge in global warming concerns. However, the process of creating concentrated biomass from microalgal cultures is limited by ineffective dewatering procedures. The economics of existing culture clarification unit operations make the process of creating biomass from microalgae unattractive for biofuel development. This work involves the comparison of the removal efficiency (recovery) of two marine microalgae species Chlorococcum sp. and Tetraselmis sp. by electrocoagulation (EC), a technique that has not been thoroughly explored in marine microalgae dewatering. High recovery efficiencies were obtained of up to 99 and 98% for Tetraselmis sp. and Chlorococcum sp., respectively. The effect of culture temperature and salinity on removal efficiency was also observed. A starting temperature of 60 °C resulted in optimal recovery values of 96 and 94% for Chlorococcum sp. and Tetraselmis sp., respectively. Whereas a starting temperature of 5 °C achieved optimal recovery of only 5 and 68% for Chlorococcum sp. and Tetraselmis sp., respectively. Increased salinity of microalgae culture showed increased microalgae recovery. Salinity of 20% gave optimal microalgae recovery values of only 6 and 9% for Chlorococcum sp. and Tetraselmis sp., respectively. Zeta potential (ZP) analysis was carried out to verify and further understand the charge neutralization mechanism due to Fe2+ cations. ISSN : 1385-8947 En ligne : http://www.sciencedirect.com/science/article/pii/S1385894711010709 [article] A parametric study of electrocoagulation as a recovery process of marine microalgae for biodiesel production [texte imprimé] / Nyomi Uduman, Auteur ; Vivien Bourniquel, Auteur ; Michael K. Danquah, Auteur . - 2012 . - pp.249–257.
Génie chimique
Langues : Anglais (eng)
in Chemical engineering journal > Vol. 174 N° 1 (Octobre 2011) . - pp.249–257
Mots-clés : Electrocoagulation Dewatering Microalgae separation Biodiesel Zeta potential Résumé : Microalgal biomass as feedstock for biofuel production is rapidly gaining appreciation in response to the increasing petroleum prices and the upsurge in global warming concerns. However, the process of creating concentrated biomass from microalgal cultures is limited by ineffective dewatering procedures. The economics of existing culture clarification unit operations make the process of creating biomass from microalgae unattractive for biofuel development. This work involves the comparison of the removal efficiency (recovery) of two marine microalgae species Chlorococcum sp. and Tetraselmis sp. by electrocoagulation (EC), a technique that has not been thoroughly explored in marine microalgae dewatering. High recovery efficiencies were obtained of up to 99 and 98% for Tetraselmis sp. and Chlorococcum sp., respectively. The effect of culture temperature and salinity on removal efficiency was also observed. A starting temperature of 60 °C resulted in optimal recovery values of 96 and 94% for Chlorococcum sp. and Tetraselmis sp., respectively. Whereas a starting temperature of 5 °C achieved optimal recovery of only 5 and 68% for Chlorococcum sp. and Tetraselmis sp., respectively. Increased salinity of microalgae culture showed increased microalgae recovery. Salinity of 20% gave optimal microalgae recovery values of only 6 and 9% for Chlorococcum sp. and Tetraselmis sp., respectively. Zeta potential (ZP) analysis was carried out to verify and further understand the charge neutralization mechanism due to Fe2+ cations. ISSN : 1385-8947 En ligne : http://www.sciencedirect.com/science/article/pii/S1385894711010709