Remediation of Aquaculture Wastewater Using the Microalga <i>Chlorella sorokiniana</i>
The aquaculture industry requires solutions to several environmental challenges in order to become sustainable, including adequate wastewater management. Aquaculture wastewater (AWW) is rich in nitrogen, phosphorus, organic carbon, and other elements essential for microalgae. Due to the potential fo...
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doaj-2e784c4bb51f44cd9539c1448c5f68a82020-11-25T04:07:48ZengMDPI AGWater2073-44412020-11-01123144314410.3390/w12113144Remediation of Aquaculture Wastewater Using the Microalga <i>Chlorella sorokiniana</i>Libardo A. Lugo0Ragnheidur I. Thorarinsdottir1Sigfus Bjornsson2Olafur P. Palsson3Hakon Skulason4Skuli Johannsson5Sigurdur Brynjolfsson6Samvist ehf, Grandagardi 16, 101 Reykjavik, IcelandSamvist ehf, Grandagardi 16, 101 Reykjavik, IcelandSamvist ehf, Grandagardi 16, 101 Reykjavik, IcelandFaculty of Industrial Engineering, Mechanical Engineering and Computer Science, University of Iceland, Hjardarhagi 6, 107 Reykjavik, IcelandSamvist ehf, Grandagardi 16, 101 Reykjavik, IcelandSamvist ehf, Grandagardi 16, 101 Reykjavik, IcelandFaculty of Industrial Engineering, Mechanical Engineering and Computer Science, University of Iceland, Hjardarhagi 6, 107 Reykjavik, IcelandThe aquaculture industry requires solutions to several environmental challenges in order to become sustainable, including adequate wastewater management. Aquaculture wastewater (AWW) is rich in nitrogen, phosphorus, organic carbon, and other elements essential for microalgae. Due to the potential for AWW to be used as a microalgal growth medium and the potential of <i>Chlorella sorokiniana</i> to remediate wastewater, the growth of this species in AWW was evaluated. The microalgal growth in AWW was compared to the growth in a modified BG11 growth medium containing similar nutrient concentrations as the AWW. The effect of pH regulation and air-lifting the cell suspension at different airflow rates was also studied. As a result, it was found that <i>C. sorokiniana</i> can grow successfully in AWW; however, its cultivation required pH regulation. This microalga species can reach a biomass concentration of up to 476 mg/L and a biomass productivity of 140 mg/L/day. Furthermore, up to 78% of the nitrogen, 77% of the phosphorus, 70% of the magnesium, 90% of the zinc, and 99% of the nickel contained in the AWW were assimilated by the microalgae. The results of this study show that microalga cultivation in wastewater has great potential to reduce contamination while generating economic benefits.https://www.mdpi.com/2073-4441/12/11/3144<i>Chlorella sorokiniana</i>aquaculture wastewatermicroalgaephycoremediation |
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DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Libardo A. Lugo Ragnheidur I. Thorarinsdottir Sigfus Bjornsson Olafur P. Palsson Hakon Skulason Skuli Johannsson Sigurdur Brynjolfsson |
spellingShingle |
Libardo A. Lugo Ragnheidur I. Thorarinsdottir Sigfus Bjornsson Olafur P. Palsson Hakon Skulason Skuli Johannsson Sigurdur Brynjolfsson Remediation of Aquaculture Wastewater Using the Microalga <i>Chlorella sorokiniana</i> Water <i>Chlorella sorokiniana</i> aquaculture wastewater microalgae phycoremediation |
author_facet |
Libardo A. Lugo Ragnheidur I. Thorarinsdottir Sigfus Bjornsson Olafur P. Palsson Hakon Skulason Skuli Johannsson Sigurdur Brynjolfsson |
author_sort |
Libardo A. Lugo |
title |
Remediation of Aquaculture Wastewater Using the Microalga <i>Chlorella sorokiniana</i> |
title_short |
Remediation of Aquaculture Wastewater Using the Microalga <i>Chlorella sorokiniana</i> |
title_full |
Remediation of Aquaculture Wastewater Using the Microalga <i>Chlorella sorokiniana</i> |
title_fullStr |
Remediation of Aquaculture Wastewater Using the Microalga <i>Chlorella sorokiniana</i> |
title_full_unstemmed |
Remediation of Aquaculture Wastewater Using the Microalga <i>Chlorella sorokiniana</i> |
title_sort |
remediation of aquaculture wastewater using the microalga <i>chlorella sorokiniana</i> |
publisher |
MDPI AG |
series |
Water |
issn |
2073-4441 |
publishDate |
2020-11-01 |
description |
The aquaculture industry requires solutions to several environmental challenges in order to become sustainable, including adequate wastewater management. Aquaculture wastewater (AWW) is rich in nitrogen, phosphorus, organic carbon, and other elements essential for microalgae. Due to the potential for AWW to be used as a microalgal growth medium and the potential of <i>Chlorella sorokiniana</i> to remediate wastewater, the growth of this species in AWW was evaluated. The microalgal growth in AWW was compared to the growth in a modified BG11 growth medium containing similar nutrient concentrations as the AWW. The effect of pH regulation and air-lifting the cell suspension at different airflow rates was also studied. As a result, it was found that <i>C. sorokiniana</i> can grow successfully in AWW; however, its cultivation required pH regulation. This microalga species can reach a biomass concentration of up to 476 mg/L and a biomass productivity of 140 mg/L/day. Furthermore, up to 78% of the nitrogen, 77% of the phosphorus, 70% of the magnesium, 90% of the zinc, and 99% of the nickel contained in the AWW were assimilated by the microalgae. The results of this study show that microalga cultivation in wastewater has great potential to reduce contamination while generating economic benefits. |
topic |
<i>Chlorella sorokiniana</i> aquaculture wastewater microalgae phycoremediation |
url |
https://www.mdpi.com/2073-4441/12/11/3144 |
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