Immobilization of microalgae on exogenous fungal mycelium : a promising separation method to harvest both marine and freshwater microalgae

Page view(s)
35
Checked on Nov 01, 2024
Immobilization of microalgae on exogenous fungal mycelium : a promising separation method to harvest both marine and freshwater microalgae
Title:
Immobilization of microalgae on exogenous fungal mycelium : a promising separation method to harvest both marine and freshwater microalgae
Journal Title:
Biochemical Engineering Journal
Keywords:
Publication Date:
10 July 2014
Citation:
Talukder, M. M. R.; Das, P.; Wu, J. C., Immobilization of microalgae on exogenous fungal mycelium : a promising separation method to harvest both marine and freshwater microalgae. Biochemical Engineering Journal 2014, 91, p 53-57.
Abstract:
Although various methods have been developed for microalgae harvesting, problems such as chemical toxicity, low efficacy, low flexibility, and high cost, still remain with the current methods. In the present study, an effective biological separation method has been developed to harvest microalgae via immobilization on exogenous fungal mycelium. Fungal mycelium was added into microalgae culture and air mixed for the immobilization. The immobilized microalgae with fungal mycelium were naturally precipitated within 10 min after stopping the mixing. Both marine (e.g. Nannochloropsis sp.) and freshwater (e.g. Chlorella vulguris) microalgae were almost completely (94–97%) precipitated using the mycelium of Aspergillus nomius CCK-PDA 7#6. The precipitated mixed biomass was separated by simple filtration using sieve. A 70% initial nutrients supplement to de-algated culture medium gave high growth yield (0.43 g/l) in subsequent microalgae cultivation. The mycelium can be obtained free or at low-cost as waste from a fungal fermentation process of producing valuable products. The developed method is, therefore, very promising for economical harvesting of microalgae.
License type:
http://creativecommons.org/licenses/by-nc-nd/4.0/
Funding Info:
This work was funded by the Agency for Science Technology and Research (A*STAR) of Singapore.
Description:
ISSN:
1369-703X
Files uploaded:

File Size Format Action
fy14-manu-074.pdf 994.75 KB PDF Open