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Evaluation of the Efficiency of the AL-Mauany Hospital Sewage Treatment Plant in Basrah City

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
This study focuses on assessing the sewage characteristics and performance of the Hospital Wastewater Treatment Plant for AL-Mauany hospital in Basrah Governorate. Samples were taken from wastewater treatment plants (WWTP) waste and tested for pollutants using (APHA) procedures and compared to standard criteria. COD, BOD, temperature, EC, TSS, and TDS were all tested in the laboratory. DO, NH3, and NO3 were chosen as effluent quality indicators. Identical to the standard limits in Iraqi Standard Specification, despite some of them experiencing a minor modification during the treatment stages. But for COD and BOD, which exceeded the permissible limit despite the high removal efficiency, because the values at the entrance were high because they came from hospital waste, where the values at the influent were for COD 665.4 mg/l and 504.6 mg/l, while the BOD values were 283.6 mg/l and 171.2 mg/l in summer and winter, respectively, while the effluent values were 129.7 and 102.8 for COD and 73.4 and 53.8 for BOD. As well as for the NO3-N results for the effluent, which was unstable inflow and effluent, but in no way did it exceed the Iraqi effluent which was 50 mg/l.
Rocznik
Strony
205--213
Opis fizyczny
Bibliogr. 15 poz., rys., tab.
Twórcy
  • Department of Civil Engineering, College of Engineering, University of Basrah, Iraq
  • Department of Civil Engineering, College of Engineering, University of Basrah, Iraq
  • Department of Civil Engineering, College of Engineering, University of Basrah, Iraq
Bibliografia
  • 1. Abbas, A., A, Yousif, Y., T, and Almutter, H., H.2021. Evaluation of Al-Thagher Wastewater Treatment Plant. Periodica Polytechnica Civil Engineering, 66 (1), 1–15.
  • 2. Ajay P. Pardey, Dr. V. S. Sapkal, Dr. R. S. Sapkal, 2017. A Review on Membrane Bioreactor (MBR) Technology: Its Commercial Applications And Possibilities of Hybridization with Other Membrane Techniques to Recover Valuable Industrial By-Products for Sustainable Development and Environmental Protection by and Large. ICSESD- Proceedings IRA-International Journal of Technology & Engineering.
  • 3. Al-Dulaimi A. and Sufyan M. Saeed.2002 .Evaluation of the Efficiency of Biological Treatment of Some Hospitals in the City of Mosul. Master Thesis, College of Engineering, University of Mosul, Iaq.
  • 4. Al-Khafaji, S., A, Al-Rekabi, W.,S, and Mawat, M.,J.2022. Apply Membrane Biological Reactor (MBR) in Industrial wastewater treatment: A Mini Review. Eurasian Journal of Engineering and Technology, 7, 98–106.
  • 5. APHA.1992. American Public Health Association. Standard Methods for the Examination of Water and Wastewater. 18th Edition. American Public, Health Association, Washington, D.C.
  • 6. Faris H. Al-Ani, Hasan Sh. Majdi, Jamal M. Ali, Ayham M. Al Rahawi, Qusay F. Alsalhy.2014 .Comparative study on CAS, UCT, and MBR configurations for nutrient removal from hospital wastewater. Desalination and Water Treatment, 164,.39–47.
  • 7. Majlesinasar, M.1998 .Study of Wastewater Disposal Status and Effluent Quality in Hospital of Shahid Beheshti University of Medical Sciences. Iranian Journal Publ. Health, 6 (1), 371-375.
  • 8. Metcalf and Eddy.2003. Wastewater Engineering: Treatment and Reuse. Fourth edition. McGraw-Hill, Inc., New York.
  • 9. Mohammed Ali I. Al-Hashimia, Talib R. Abbas, Yaser I. Jasema.2013. Performance of sequencing anoxic\ anaerobic membrane bioreactor (SAM) system in hospital wastewater after treatment and reuse. European Scientific Journal, 9 (15).
  • 10. Mousaab Alrhmoun, Claire Carrion, Magali Casellas, and Christophe Dagot.2014. Hospital wastewater Treatment by Membrane Bioreactor: Performance and Impact on the Biomasses. International Conference on Biological, Civil and Environmental Engineering (BCEE-2014) Dubai (UAE), 17-18.
  • 11. Murray, C.W.; Abreu, L.H.; Husband, J.A.2005. Three Liters of Soda in a Two Liter Bottle: The use of Membrane Bioreactors at a Bottler’s WWTP. Conference Proceedings 2005 AWWA Membrane Technical Conference.
  • 12. Rezaee A. Ansari M., Khavanin A., Sabzali A., and Aryan M.2005. Hospital Wastewater Treatment Using an Integrated Anaerobic Aerobic Fixed Film Bioreactor. American Journal of Environmental Sciences,.4 (1), 259-263.
  • 13. Rumana R. 2013.Fundamentals of Wastewater Treatment and Engineering. International standard book. IWA Publishing, London.
  • 14. Scott, J.A.; Smith K.L.1996. A Bioreactor Coupled to a Membrane to Provide Aeration and Filtration in Ice-Cream Factory Wastewater. Water Resources, 31(1), 69.
  • 15. Wisniewski, C.2007. Membrane bioreactor for water reuse. Desalination, (203), 15-19.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-612d7784-679d-4a64-b968-d47abcff422d
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