Sewage Water Treatment Using Chlorella Vulgaris Microalgae for Simultaneous Nutrient Separation and Biomass Production

Author:

Alazaiza Motasem Y. D.1ORCID,He Shan23,Su Dongxiao2,Abu Amr Salem S.4ORCID,Toh Pey Yi5,Bashir Mohammed J. K.5ORCID

Affiliation:

1. Department of Civil and Environmental Engineering, College of Engineering, A’Sharqiyah University, Ibra 400, Oman

2. School of Chemistry and Chemical Engineering, Guangzhou University, Guangzhou 510006, China

3. College of Engineering, IT & Environment, Charles Darwin University, Casuarina, NT 0810, Australia

4. International College of Engineering and Management, P.O. Box 2511, Seeb 111, Oman

5. Faculty of Engineering and Green Technology (FEGT), Universiti Tunku Abdul Rahman, Kampar 31900, Perak, Malaysia

Abstract

Recovery of wastewater is essential for better management of water resources and can aid in reducing regional or seasonal water shortages. When algae were used to clean wastewater, amazing benefits were guaranteed, such as a decrease in the formation of dangerous solid sludge and the creation of valuable algal biomass through recycling of the nutrients in the wastewater. The trace elements nitrogen, phosphorus, and others that microalgae need for cell development are frequently present in contaminated wastewater. Hence, microalgal bioremediation is used in this study as an effective technique for the simultaneous treatment of COD, NH3-N, and orthophosphate from domestic wastewater and biomass production. Different concentrations of wastewaters were used. The maximum removals attained were: 84% of COD on the fifth day using the lowest mixing ratio of 50%, 95% of ammoniacal nitrogen, and 97% of phosphorus. The highest biomass production was achieved at day 12, except for the mixing ratio of 80% where the growth rate increased until day 14 at 400 mg/L.

Funder

Sultanate of Oman’s Ministry of Higher Education, Research, and Innovation

Publisher

MDPI AG

Subject

Filtration and Separation,Analytical Chemistry

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