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  4. Rapid and efficient recovery of C-phycocyanin from highly turbid Spirulina platensis algae using stirred fluidized bed ion exchange chromatography
 
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Rapid and efficient recovery of C-phycocyanin from highly turbid Spirulina platensis algae using stirred fluidized bed ion exchange chromatography

Journal
Separation and Purification Technology
Journal Volume
209
Pages
636-645
Date Issued
2019
Author(s)
Chen K.-H.
Wang S.S.-S.  
Show P.-L.
Hsu S.-L.
Chang Y.-K.
DOI
10.1016/j.seppur.2018.08.057
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/406704
URL
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85052939511&doi=10.1016%2fj.seppur.2018.08.057&partnerID=40&md5=aa7ca9be2e69622af4f1d9e92050fa0d
Abstract
An efficient process for the direct extraction of CPC (Cyanobacteria-phycocyanin) from highly turbid Spirulina platensis cell homogenate that uses stirred fluidized bed adsorption (SFBA) technique has been developed. STREAMLINE DEAE (ion exchange) adsorbent was used to evaluate the optimal adsorption and elution conditions of CPC in small packed beds. When the SFBA process was employed to extract CPC from 10% (dry weight, g/mL) disrupted algae, dynamic binding efficiency, recovery yield and purification factor of CPC were determined to be 64.25%, 59.42% and 3.0, respectively, in a single step. However, as the highly concentrated feedstock was diluted to 1%, dynamic binding efficiency and recovery yield of CPC increases to 92.84% and 90.64%, respectively, with a purification factor of 2.7. A comparison of purification performance of CPC has been made between expanded bed adsorption (EBA) and stirred fluidized bed adsorption (SFBA) processes. Our experimental results showed that the productivity of CPC in SFBA process (7.52 mg/mL) was higher than that the conventional EBA process (6.71 mg/mL). Therefore, it could be concluded that the SFBA technique is technically and economically advantageous over the conventional techniques when dealing with highly turbid feedstock. ? 2018 Elsevier B.V.
Subjects
C-phycocyanin
Direct recovery
Ion exchange chromatography
Spirulina platensis
Stirred fluidized bed adsorption
Type
journal article

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