Tertiary treatment of wastewater with Phormidium bohneri (Schmidle) under various light and temperature conditions
Experiments were carried out on secondary effluents under different conditions of light and temperature with the aim of evaluating the potential and limits of the epilithic filamentous cyanobacterium Phormidium bohneri (Schmidle) for biotreatment of domestic wastewaters. Aerated cultures were incuba...
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Published in | Water research (Oxford) Vol. 27; no. 1; pp. 153 - 159 |
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Main Authors | , |
Format | Journal Article |
Language | English |
Published |
Oxford
Elsevier Ltd
1993
Elsevier Science |
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Abstract | Experiments were carried out on secondary effluents under different conditions of light and temperature with the aim of evaluating the potential and limits of the epilithic filamentous cyanobacterium
Phormidium bohneri (Schmidle) for biotreatment of domestic wastewaters. Aerated cultures were incubated at 10 and 30°C in a chamber fitted with a photic gradient plate receiving 120 and 720 μE/m
2s. Results indicate that the strain used prefers elevated temperatures, and can withstand considerable variation in light intensity. Response at 30°C with regard to NH
3 and PO
4
−3 removal agrees with that reported for unicellular chlorophytes. A complete exhaustion of these nutrients was obtained after 3 and 5 days, respectively. It appears that NH
3 stripping contributed substantially (38–100%) to the overall NH
3 removal efficiency observed in the system. In addition, the protein and carbohydrate content of the biomass produced suggests potential feedstock use. |
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AbstractList | Experiments were carried out on secondary effluents under different conditions of light and temperature with the aim of evaluating the potential and limits of the epilithic filamentous cyanobacterium Phormidlum bohneri (Schmidle) for biotreatment of domestic wastewaters. Aerated cultures were incubated at 10 and 30 degree C in a chamber fitted with a photic gradient plate receiving 120 and 720 mu E/m super(2)s. Results indicate that the strain used prefers elevated temperatures, and can withstand considerable variation in light intensity. Response at 30 degree C with regard to NH sub(3) and PO sub(4) super(-3) removal agrees with that reported for unicellular chlorophytes. A complete exhaustion of these nutrients was obtained after 3 and 5 days, respectively. It appears that NH sub(3) stripping contributed substantially (38-100%) to the overall NH sub(3) removal efficiency observed in the system. In addition, the protein and carbohydrate content of the biomass produced suggests potential feedstock use. Experiments were carried out on secondary effluents under different conditions of light and temperature with the aim of evaluating the potential and limits of the epilithic filamentous cyanobacterium Phormidium bohneri (Schmidle) for biotreatment of domestic wastewaters. Aerated cultures were incubated at 10 and 30 degree C in a chamber fitted with a photic gradient plate receiving 120 and 720 mu E/m super(2) s. Results indicate that the strain used prefers elevated temperatures, and can withstand considerable variation in light intensity. Response at 30 degree C with regard to NH sub(3) and PO sub(4) super(-)3r)emoval agrees with that reported for unicellular chlorophytes. A complete exhaustion of these nutrients was obtained after 3 and 5 days, respectively. It appears that NH sub(3) stripping contributed substantially (38-100%) to the overall NH sub(3) removal efficiency observed in the system. In addition, the protein and carbohydrate content of the biomass produced suggests potential feedstock use. The applicability of the epilithic filamentous cyanobacterium, Phormidium bohneri, for biotreatment of domestic wastewaters was evaluated under different light and temperature conditions. Aerated systems were incubated at 10 and 30 degree C in a chamber fitted with a photic gradient plate receiving 120 and 720 mu E/m super(2)/s light intensities. The organism preferred elevated temperatures and was able to endure variations in light intensity. A complete exhaustion of ammonia and phosphates was obtained after 3 and 5 d, respectively. Experiments were carried out on secondary effluents under different conditions of light and temperature with the aim of evaluating the potential and limits of the epilithic filamentous cyanobacterium Phormidium bohneri (Schmidle) for biotreatment of domestic wastewaters. Aerated cultures were incubated at 10 and 30°C in a chamber fitted with a photic gradient plate receiving 120 and 720 μE/m 2s. Results indicate that the strain used prefers elevated temperatures, and can withstand considerable variation in light intensity. Response at 30°C with regard to NH 3 and PO 4 −3 removal agrees with that reported for unicellular chlorophytes. A complete exhaustion of these nutrients was obtained after 3 and 5 days, respectively. It appears that NH 3 stripping contributed substantially (38–100%) to the overall NH 3 removal efficiency observed in the system. In addition, the protein and carbohydrate content of the biomass produced suggests potential feedstock use. |
Author | de la Noüe, J. Talbot, P. |
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Keywords | Phormidium bohneri light wastewater treatment protein temperature ammonia phosphate removal carbohydrate Domestic waste water Luminous intensity Temperature Phormidium Medium effect Cyanobacteria Bacteria Tertiary purification Waste water purification Biological purification |
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Snippet | Experiments were carried out on secondary effluents under different conditions of light and temperature with the aim of evaluating the potential and limits of... The applicability of the epilithic filamentous cyanobacterium, Phormidium bohneri, for biotreatment of domestic wastewaters was evaluated under different light... |
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SubjectTerms | Ammonia Applied sciences carbohydrate Exact sciences and technology light Other wastewaters Phormidium bohneri phosphate Pollution protein removal temperature wastewater treatment Wastewaters Water treatment and pollution |
Title | Tertiary treatment of wastewater with Phormidium bohneri (Schmidle) under various light and temperature conditions |
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