Radiotracer investigation and modeling of an activated sludge system in a pulp and paper industry

A radiotracer investigation was carried out in an activated sludge process (ASP) system of an effluent treatment plant in a pulp and paper industry. The system consists of an aeration tank and a secondary clarifier connected in series. The primary objective of the investigation was to measure mean h...

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Veröffentlicht in:Applied radiation and isotopes 2017-12, Vol.130, p.270-275
Hauptverfasser: Sarkar, Metali, Sangal, Vikas Kumar, Sharma, Vijay Kumar, Samantray, Jitendra, Bhunia, Haripada, Bajpai, Pramod Kumar, Kumar, Anil, Naithani, Anil K., Pant, Harish Jagat
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Sprache:eng
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Zusammenfassung:A radiotracer investigation was carried out in an activated sludge process (ASP) system of an effluent treatment plant in a pulp and paper industry. The system consists of an aeration tank and a secondary clarifier connected in series. The primary objective of the investigation was to measure mean hydraulic retention times (MHRTs) of wastewater and investigate the hydraulic performance of the ASP. Residence time distributions (RTD) of the wastewater were measured in an aeration tank and a secondary clarifier of the system using Iodine-131 as a radiotracer. The measured RTD data was treated and MHRTs were estimated. No bypassing was found to exist in the aeration tank and the secondary clarifier. However, the dead volume in the aeration tank and the secondary clarifier was found and estimated to be 2.34% and 4.6%, respectively. The treated curves were further simulated using suitable hydraulically representative mathematical models and detailed flow patterns in the aeration tank and the secondary clarifier were deciphered. •A radiotracer investigation was carried out in an activated sludge process system.•RTDs of an aeration tank and secondary clarifier were measured.•Mean hydraulic residence times and dead volumes were determined.•The measured RTDs were simulated using suitable models.
ISSN:0969-8043
1872-9800
DOI:10.1016/j.apradiso.2017.10.016