29,99 €
inkl. MwSt.
Versandkostenfrei*
Versandfertig in 6-10 Tagen
payback
15 °P sammeln
  • Broschiertes Buch

To design the Photo Bioreactor to Isolate beta-Carotene from Dunaliella Salina Species. beta-Carotene is present in the commercial vegetable Carrot. beta-Carotene is rich in Vitamin A. Vitamin A deficiencies can be cured by beta-Carotene. Hence, we are focussing on the alternative source from Saline algae species Dunaliella Salina. This species is rich in beta-Carotene in which Vitamin A acts as a precursor. To analyze the biochemical composition of Dunaliella salina sp. (Biomass content, Protein and Carotenoid) and also analyze the growth performance of Dunaliella salina sp. in Tubular Photobioreactor by varying the concentration.…mehr

Produktbeschreibung
To design the Photo Bioreactor to Isolate beta-Carotene from Dunaliella Salina Species. beta-Carotene is present in the commercial vegetable Carrot. beta-Carotene is rich in Vitamin A. Vitamin A deficiencies can be cured by beta-Carotene. Hence, we are focussing on the alternative source from Saline algae species Dunaliella Salina. This species is rich in beta-Carotene in which Vitamin A acts as a precursor. To analyze the biochemical composition of Dunaliella salina sp. (Biomass content, Protein and Carotenoid) and also analyze the growth performance of Dunaliella salina sp. in Tubular Photobioreactor by varying the concentration.
Autorenporträt
Frau Karthika Duraisamy, Assistenzprofessorin, Abteilung für Chemieingenieurwesen, Agni College of Technology, Chennai, Tamil Nadu, Indien. Sie hat im Jahr 2011 ihren Master in Chemieingenieurwesen an der Anna University Chennai und ihren Bachelor in Chemie- und Elektrochemieingenieurwesen am Central Electrochemical Research Institute, Karaikudi, TN, abgeschlossen.