Evaluation of multicellular aerated lagoon performance in the tropics

By: Call Number: AIT Thesis no.EV-82-22 Contributor(s): Material type: Continuing resourceSeries: Asian Institute of Technology. Thesis ; no. EV-82-22Publication details: Bangkok : Asian Institute of Technology, 1982Description: 57 pSubject(s): Online resources: Dissertation note: Thesis (M.Sc.) - Asian Institute of Technology, 1982 Summary: Four laboratory model aerated lagoon systems: a single-cellular and three, dual-power, multicellular aerated lagoons were operated under ambient environmental conditions at 2-day and 4-day hydraulic detention times. Starch synthetic waste were used as a sole carbon source. Investigations with these lagoon performances proved that the three-stage aerated lagoon operated at 4-day hydraulic detention time is the most ·efficient treatment system. Biokinetic constants: u k, Ks, kd and Y were evaluated and found to be equal to 0.18 h , 0.24 h-1 , 110 mg/l, 0.026 h-1 , and 0.77, respectively.
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22-AIT Thesis (Replacement) Asian Institute of Technology Library AIT Publications AIT Thesis no.EV-82-22 (Browse shelf(Opens below)) 3 Available 30050120655518
40-Archives Asian Institute of Technology Library Archives AIT Thesis no.EV-82-22 (Browse shelf(Opens below)) Available 30050160084397
20-AIT Publication Asian Institute of Technology Library AIT Publications AIT Thesis no.EV-82-22 (Browse shelf(Opens below)) 1 Available 30050121073893

A thesis submitted in partial fulfillment of the requirements for the degree of Master of Science, School of Environment, Resources and Development

Thesis (M.Sc.) - Asian Institute of Technology, 1982

Four laboratory model aerated lagoon systems: a single-cellular and three, dual-power, multicellular aerated lagoons were operated under ambient environmental conditions at 2-day and 4-day hydraulic detention times. Starch synthetic waste were used as a sole carbon source. Investigations with these lagoon performances proved that the three-stage aerated lagoon operated at 4-day hydraulic detention time is the most ·efficient treatment system. Biokinetic constants: u k, Ks, kd and Y were evaluated and found to be equal to 0.18 h , 0.24 h-1 , 110 mg/l, 0.026 h-1 , and 0.77, respectively.

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