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Design of a Wastewater Treatment Oxidation Pond

Author

Listed:
  • Oyati E. N
  • Olotu Yahaya
  • Gimba I.N
  • Ibrahim Rasheed
Abstract
The proposed site of the wastewater treatment pond is located in a terrain inside the Polytechnic Campus and the New Staff Quarters where the storm-runoff flow has on effect. The site possesses good soil characteristics which include a particle size distribution of sandy soil with little fine particles of gravel, a specific gravity of 2.77 and a soil moisture content of 7.26% indicating a high degree of permeability. The output of geotechnical analysis indicated that the proposed site has soil particle density (ρs) and dry bulk density (ρb) of 1.76 g/cm3 and 1.64g/cm3 respectively. Void ratio (e), porosity (ȵ) values of 0.87 and 0.46 (46%) were determined. The atterbergs limits of 19.0%, 14.96% and 19.6% for shrinkage limit (SL), plastic limit (PL) and liquid limit (LL) were estimated with a computed plastic index (PI) of 3.04. The soil profile formation is highly sandy with a good lateritic layer to support the pond foundation. The proposed pond design volume (V) is 898.5 m3 and land areas of 718.8 m2 were estimated for the project.

Suggested Citation

  • Oyati E. N & Olotu Yahaya & Gimba I.N & Ibrahim Rasheed, 2020. "Design of a Wastewater Treatment Oxidation Pond," Asian Review of Environmental and Earth Sciences, Asian Online Journal Publishing Group, vol. 7(1), pages 55-60.
  • Handle: RePEc:aoj:areaes:v:7:y:2020:i:1:p:55-60:id:1578
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    File URL: http://asianonlinejournals.com/index.php/AREES/article/view/1578/1483
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    Cited by:

    1. Mahmoud Gad & Sayeda M. Abdo & Anyi Hu & Mohamed Azab El-Liethy & Mohamed S. Hellal & Hala S. Doma & Gamila H. Ali, 2022. "Performance Assessment of Natural Wastewater Treatment Plants by Multivariate Statistical Models: A Case Study," Sustainability, MDPI, vol. 14(13), pages 1-17, June.

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