Isfahan University of Medical Sciences

Science Communicator Platform

Stay connected! Follow us on X network (Twitter):
Share this content! On (X network) By
Nitrogen Removal in a Full-Scale Domestic Wastewater Treatment Plant With Activated Sludge and Trickling Filter Publisher Pubmed



Nourmohammadi D1 ; Esmaeeli MB1 ; Akbarian H1 ; Ghasemian M2
Authors
Show Affiliations
Authors Affiliations
  1. 1. Tehran Sewerage Company, Tehran 15688, Iran
  2. 2. Environment Research Center, School of Health, Isfahan University of Medical Sciences, Isfahan 8613846191, Iran

Source: Journal of Environmental and Public Health Published:2013


Abstract

During the last decade, more stringent effluent requirements concerning the nutrients effluent values have been imposed by legislation and social concern. In this study, efficiency of total nitrogen removal in activated sludge and trickling filter processes (AS/TF) was investigated in Tehran North wastewater treatment plant. Biological system in this site was included, anoxic selector tank, aeration tank, final sedimentation, and trickling filter. A part of treated wastewater before chlorination was mixed with supernatant of dewatered sludge and fed to the trickling filter. Supernatant of dewatered sludge with high concentration of NH4-N was diluted by treated wastewater to provide complete nitrification in trickling filter Produced nitrate in trickling filter was arrived to the anoxic tank and converted to nitrogen gas by denitrification. According to the study result, low concentration of organic carbone and high concentration of NH4-N led to nitrification in TF, then nitrate denitrification to nitrogen gas occurred in selector area. NH 4-N concentration decreased from 26.8 mg/L to 0.29 mg/L in TF, and NO3-N concentration increased from 8.8 mg/L to 27 mg/L in TF. Consequently, the total nitrogen decreased approximately to 50% in biological process. This efficiency has been observed in returned flow around 24% from final sedimentation into TF. It was concluded that, in comparison with biological nutrient removal processes, this process is very efficient and simple. © 2013 Davood Nourmohammadi et al.
Experts (# of related papers)
Other Related Docs
26. Biological Excess Sludge Reduction in Adsorption/Bio-Oxidation Process by Enhancing Predators' Growth, International Journal of Environmental Health Engineering (2020)
32. Accumulation of Heavy Metals in Agricultural Products Irrigated With Treated Municipal Wastewater, International Journal of Environmental Health Engineering (2012)
34. Anaerobic Biodegradation of Ethylene Dichloride in an Anaerobic Sequential Batch Reactor, International Journal of Environmental Health Engineering (2012)
35. The Study of Leachate Treatment by Using Three Advanced Oxidation Process Based Wet Air Oxidation, Iranian Journal of Environmental Health Science and Engineering (2013)
42. Composting Leachate Treatment by an Anaerobic Migrating Blanket Reactor, Ecology, Environment and Conservation (2015)
47. Comparison of the Biological Nh3 Removal Characteristics of a Three Stage Biofilter With a One Stage Biofilter, International Journal of Environmental Science and Technology (2006)