Analysis of the Operational Deficiencies Originating in Design at Wastewater Treatment Plants: A Case Study of the Islamic Republic of Iran

Document Type : Research Papers

Authors

1 Kurdistan Water and Wastewater Company, Shebli Boulevard, Sanandaj, Iran

2 Professor, Institute of Environmental Engineering, Ruhr-Universitat Bochum, 44780 Bochum, Germany

Abstract

Considerable investments have been made in establishing wastewater treatment plants (WWTPs). However, evaluation of the performance of plants during recent years, when more WWTPs have become operational, shows that effluent quality criteria were not met in many instances. Preliminary assessment of the operational problems of WWTPs in Iran disclosed that numerous factors affect this issue of effluent quality. One reason is the lack of planning knowledge among the local consulting engineering companies, which causes design-related deficiencies. Lack of national standards as well as of practical design manuals are also significant factors. In this study, the effects of the design-related deficiencies on operational practices are investigated in 20 WWTPs around Iran. This is followed by the implementation of solutions in real models that match the most recent innovations in this regard. Consistent methods are then discussed for correcting these deficiencies. It was found that 68% of the operational deficiencies arise from design deficiencies. These are, accordingly, considered in the scope of the solutions presented in this work. The distinctive solutions presented in this study prevent the repetition of the same defects in new designs. Scientific methods for rectifying the detected deficiencies are developed in this study. The results are aimed at supporting experts who undertake the role of rehabilitating WWTPs in the country, through the correction of various deficiencies, so that the final goal of conserving the environment is met. The findings are compared with those of some related national and international works for the purposes of further clarification.

Keywords


Aidin, T., Aazimi, A., Reyazati, A. and Meserzadeh, A. (2011). “Using MBBR system for increasing the capacity of WWTPs: Case study of the Shahrak Ghods Tributary”, 5th National Conference and Exhibition on Environment Engineering, Tehran, (in Persian).
Amirtaimour, A. (2008). “Operation and design consideration of activated sludge wastewater plants”, Research And Applied Workshop on Considerations on The Design And Installation of WWTPs, First Proceedings In Esfahan Water and Sewage Company, Esfahan, (in Persian).
ATV-DVWK. (2000). Standard ATV-DVWK A-131 E, Dimensioning of Single-Stage Activated Sludge Plants, DWA Publications, ISBN-13: 978-3-935669-96-2, Bonn.
Badalians, G. and Salehi, S. (2007). “Optimization of the operation and maintenance strategy of the sludge facilities of the WWTPs for efficient management”, First Conference on Engineering Planning and Management of Environmental Systems, Tehran, (in Pesian).
Diagger, G.T., Buttz, J.A. (1998). Upgrading wastewater treatment plants, 2nd Edition, Water Quality Management Library, Technomic Publishing, Lancaster.
EPA. (1978). Wastewater treatment plant design guideline for operability, flexibility and maintainability, EPA Publications, USA.
EPA. (1984). Hydraulic characteristics of activated sludge clarifiers, Project Summary, EPA Publication, USA.
Gehring, T., Silva, J.D., Kehl, O., Castilhos, A.B., Costa Jr., R.H.R, Uhlenhut. F, Alex, J., Horn, H. and Wichern, M. (2010). "Modelling waste stabilisation ponds with an extended version of ASM3", Water Science and Technology, 61(3), 713-720.
Hannu, P. (2010). Tools for Improved Efficiency and Control in Wastewater Treatment, Dissertations in Forestry and Natural Sciences, Publications of the University of Eastern Finland.
IWA Year Book. (2008). Water and wastewater management across the country, IWA Publications, UK.
Metcalf and Eddy Inc. (2003). Wastewater engineering, treatment, disposal and reuse, 4th Edition, McGraw-Hill Inc., USA.
Moradhasseli, M. (2011). Deficiency analysis of the Iranian wastewater treatment plants and proposals for improvements, PhD Thesis, Ruhr-Universitaet Bochum, Germany.
Moradhasseli, M. and Mohamadi, S. (2012). "Improving the efficiency of wastewater treatment plants through identification and correction of design deficiencies", Archives Des Sciences, 65(6), 57-69.
Moradhasseli, M. and Mohamadi, S. (2013). "Performance evaluation of a facultative aerated lagoon for the purpose of reviewing the design parameters", International Journal of Science and Technology, 21(1), 231-240.
Mousavi, S.M. (2011). “Investigating the operational index of WWTPs in Iran”, Proceedings of 14th National Environment Conference, Yazd, Iran.
Niemann, K. and Orth, H. (2001). "Control measures for wastewater treatment plants during storm flow", Water Science and Technology, 43(11), 309–314.
Nadafi, K., Dehghani, F.E., Mostaofi, S., Faezi, R.D., Kasaei, S.N. and Hasanwand, M.S. (2008). “Performance evaluation of the Iranian WWTPs and determining their need for 
upgrading at 2004”, Proceedings of the 2nd National Water and Wastewater Symposium, Tehran, Iran.
NEPO. (1999). Standard for effluent quality of wastewater for discharging to receiving water bodies, NEPO Publications, Tehran, Iran, (in Persian).
NWWC. (2006). Specification of under-operation wastewater treatment plants of Iran, Brochure, NWWC Publications, Tehran, Iran.
NWWC. (2008a). Urban water and wastewater industry at a glance, Brochure, NWWC Publishing, Tehran, Iran, (in Persian).
NWWC. (2008b). Specification of under-construction wastewater treatment plants of Iran, Brochure, NWWC Publishing, Tehran, Iran, (in Persian).
Qasim, S.R. (1999). Wastewater treatment plants: Planning, design and operation, 2nd Editiond, CRC Press, USA.
Rahimi, Y., Jalilzadeh, A., Mahwi, A.H. and Mesdaghineya, A. (2006). “Evaluating the efficiency of Khoui WWTPs and suggestions for upgrading”, 1st Specialized Conference of Environmental Engineering, Tehran, Iran, (in Persian).
Skrjanc, I. (2010). "Fuzzy model based fault detection in wastewater treatment plant, modelling simulation and optimization, tolerance and optimal control", Shkelzen Cakaj (ed.), ISBN: 978-953-307-056-8, In Tech, Available from: http://www.intechopen.com/books/ modeling -simulation-and-optimization-tolerance-andoptimal -control/fuzzy-model-based-fault-detection-in-waste-water-treatment-plant.
Sullivan, W.G., Bontadelli, J.A. and Wicks, E.M. (1999). Engineering economy, 11th Edition, Prentice Hall.
Takdastan, A. and Azimi, A. (2009). “Investigating the operational problems of conventional WWTPs of Iran and methods for controlling”, Third Conference and Exhibition on Environmental Engineering, Tehran, Iran, (in Persian).
Zeferino, J.A., Cunha, M. C. and Antunes, A.P. (2012). "Optimization of wastewater treatment plants under uncertainty". http://www. iwawaterwiki.org/xwiki/bin/download/EventsExtra/Optimisationofwastewatersystemsunderuncertainty/IWA-8602JoaoZeferino.pdf.