2012•AFRICAN JOURNAL OF BIOTECHNOLOGYOpen access

Ammonia-nitrogen and orthophosphate removal by immobilized Chlorella sp. isolated from municipal wastewater for potential use in tertiary treatment

Endong Zhang

Open full text 17 citations

Abstract

Chlorella sp. isolated from municipal wastewater and entrapped in calcium alginate as algal sheets was employed to remove inorganic nutrients from domestic secondary effluents in parallel-plate bioreactor after starvation. The key factors affecting the nutrient removal efficiency, system stability and reuse efficiency of screens were discussed. The results show that cell density and starvation time significantly affected the nutrient uptake. A complete removal of NH 4 + -N and PO 4 3- -P was achieved within 4 h of treatment with the optimal cell density in the mixture of algal and 3 mm gel sheets after third cycle. Six cycles of wastewater treatment were accomplished in 18 days, achieving higher removal efficiency. NH 4 + -N removal efficiency was 81% after 1.25 h and 98.81% after 4 h, while PO 4 3- -P removal efficiency was 77.4% after 1.25 h and 100% after 4 h. It was confirmed that the immobilized Chlorella sp. has great potentialities in nutrient removal. Key words: Immobilized Chlorella, starvation, wastewater treatment, nitrogen removal, phosphorus removal.

About this research paper

What this paper is about

Chlorella sp. isolated from municipal wastewater and entrapped in calcium alginate as algal sheets was employed to remove inorganic nutrients from domestic secondary effluents in parallel-plate bioreactor after starvation. The key factors affecting the nutrient removal efficiency, system stability and reuse efficiency of screens were discussed. The results show that cell density and starvation time significantly affected the nutrient uptake. A complete removal of NH 4 + -N and PO 4 3- -P was achieved within 4 h of treatment with the optimal cell density in the mixture of algal and 3 mm gel sheets after third cycle. Six cycles of wastewater treatment were accomplished in 18 days, achieving higher removal efficiency. NH 4 + -N removal efficiency was 81% after 1.25 h and 98.81% after 4 h, while PO 4 3- -P removal efficiency was 77.4% after 1.25 h and 100% after 4 h. It was confirmed that the immobilized Chlorella sp. has great potentialities in nutrient removal. Key words: Immobilized Chlorella, starvation, wastewater treatment, nitrogen removal, phosphorus removal.

Why it matters

OpenAlex reports 17 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Chlorella sp. isolated from municipal wastewater and entrapped in calcium alginate as algal sheets was employed to remove inorganic nutrients from domestic secondary effluents in parallel-plate bioreactor after starvation. The key factors affecting the nutrient removal efficiency, system stability and reuse efficiency of screens were discussed. The results show that cell density and starvation time significantly affected the nutrient uptake. A complete removal of NH 4 + -N and PO 4 3- -P was achieved within 4 h of treatment with the optimal cell density in the mixture of algal and 3 mm gel sheets after third cycle. Six cycles of wastewater treatment were accomplished in 18 days, achieving higher removal efficiency. NH 4 + -N removal efficiency was 81% after 1.25 h and 98.81% after 4 h, while PO 4 3- -P removal efficiency was 77.4% after 1.25 h and 100% after 4 h. It was confirmed that the immobilized Chlorella sp. has great potentialities in nutrient removal. Key words: Immobilized Chlorella, starvation, wastewater treatment, nitrogen removal, phosphorus removal.

Key concepts: Wastewater, Chemistry, Nitrogen, Ammonia, Chlorella, Sewage treatment, Environmental chemistry, Pulp and paper industry

Related papers

Back to paper searchBrowse research topicsOriginal source
Ammonia-nitrogen and orthophosphate removal by immobilized Chlorella sp. isolated from municipal wastewater for potential use in tertiary treatment — Research Paper | ScholarLens