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  4. Immobilization of Chlorella sorokiniana AK-1 in bacterial cellulose by co-culture and its application in wastewater treatment
 
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Immobilization of Chlorella sorokiniana AK-1 in bacterial cellulose by co-culture and its application in wastewater treatment

Journal
Journal of the Taiwan Institute of Chemical Engineers
Date Issued
2022
Author(s)
Huang W.-M
Chen J.-H
Nagarajan D
Lee C.-K
Varjani S
DUU-JONG LEE  
Chang J.-S.
DOI
10.1016/j.jtice.2022.104286
URI
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85126774848&doi=10.1016%2fj.jtice.2022.104286&partnerID=40&md5=13995e3bb037a8fe80457cc2cd57b3cb
https://scholars.lib.ntu.edu.tw/handle/123456789/625420
Abstract
Background: Taiwan's livestock industry has played an important role in agricultural development in the past decades. In addition to bringing prosperity and huge benefits to the countryside, it also generates wastewaters that cause eutrophication in water bodies. Bioremediation of wastewaters by immobilized microalgae has proven to be beneficial for high-strength wastewaters. Methods: In situ immobilization of Chlorella sorokiniana AK-1 in bacterial cellulose (BC) was performed by co-culture with BC producing Gluconacetobacter xylinus using molasses as a carbon source. BC immobilized AK-1 was further applied for the treatment of dairy manure wastewater. Significant findings: Molasses at 5 g/L were utilized for high yield BC production by G. xylinus. The alkaline nature of the cultivation medium in the presence of molasses resulted in highly porous cellulose that facilitated microalgal attachment and growth. Bacterial HS medium and the microalgal BG-11 medium, mixed in a ratio of 1:1 resulted in effective granule formation with optimal microalgal density. The B50 granules obtained were applied for 50% dairy manure wastewater. The removal efficiency for total carbon, nitrogen and phosphorus with B50 microalgal granules were 50.93, 82.56 and 81.48%, respectively. Thus, microalgae immobilized on bacterial cellulose are effective for the bioremediation of high-strength wastewaters. © 2022 Taiwan Institute of Chemical Engineers
Subjects
Bacterial cellulose; Biofilm; Chlorella sorokiniana AK-1; Gluconacetobacter xylinus; Microalgae; Wastewater
SDGs

[SDGs]SDG6

[SDGs]SDG9

[SDGs]SDG15

Other Subjects
Bioremediation; Carbon; Cellulose; Cultivation; Eutrophication; Fertilizers; Granulation; Manures; Microorganisms; Nitrogen removal; Wastewater treatment; Agricultural development; Bacterial cellulose; Chlorella sorokiniana; Chlorellum sorokiniana AK-1; Co-cultures; Dairy manures; Gluconacetobacter xylinus; High strength wastewater; Immobilisation; ITS applications; Microalgae
Type
journal article

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