Computer Program Development for the Design of IFAS Wastewater Treatment Processes

The Integrated Film Activated Sludge Process (IFAS) was developed to reduce the cost of additional facilities required to complete year round nitrification in the design of new or retrofit wastewater treatment plants. The purpose of this project was to develop a computer-based mechanistic model, cal...

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Main Author: Sriwiriyarat, Tongchai
Other Authors: Environmental Engineering
Format: Others
Published: Virginia Tech 2014
Subjects:
Online Access:http://hdl.handle.net/10919/32065
http://scholar.lib.vt.edu/theses/available/etd-043099-012257/
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spelling ndltd-VTETD-oai-vtechworks.lib.vt.edu-10919-320652020-09-29T05:44:17Z Computer Program Development for the Design of IFAS Wastewater Treatment Processes Sriwiriyarat, Tongchai Environmental Engineering Randall, Clifford W. Little, John C. Gallagher, Daniel L. integrated fixed film media nitrification denitrification mathematical modeling activated sludge model IFAS biofilm The Integrated Film Activated Sludge Process (IFAS) was developed to reduce the cost of additional facilities required to complete year round nitrification in the design of new or retrofit wastewater treatment plants. The purpose of this project was to develop a computer-based mechanistic model, called IFAS, which can be used as a tool by scientists and engineers to optimize their designs and to troubleshoot a full-scale treatment plant. The program also can be employed to assist researchers conducting their studies of IFAS wastewater treatment processes. IFAS enables the steady-state simulation of nitrification-denitrification processes as well as carbonaceous removal in systems utilizing integrated media, but this current version supports only sponge type media. The IFAS program was developed by incorporating empirical equations for integrated biofilm carbonaceous uptake and nitrification developed by Sen and Randall (1995) into the general activated sludge model, developed by the International Association on Water Quality (IAWQ, previously known as IAWRC), plus the biological phosphorus removal model of Wentzel et al (1989). The calibration and evaluation of the IFAS model was performed using existing data from both an IFAS system and a conventional activated sludge bench-scale plant operated over a wide range of Aerobic Mean Cell Residence Times (Aerobic MCRT's). The model developed provides a good fit and a reasonable prediction of the experimental data for both the IFAS and the conventional pilot-scale systems. The phosphorus removal component of the model has not yet been calibrated because of insufficient data and the lack of adequately defined parameters. Master of Science 2014-03-14T20:34:39Z 2014-03-14T20:34:39Z 1999-04-28 1999-04-30 2000-04-30 1999-04-30 Thesis etd-043099-012257 http://hdl.handle.net/10919/32065 http://scholar.lib.vt.edu/theses/available/etd-043099-012257/ Thesis.pdf vita.pdf In Copyright http://rightsstatements.org/vocab/InC/1.0/ application/pdf application/pdf Virginia Tech
collection NDLTD
format Others
sources NDLTD
topic integrated fixed film media
nitrification
denitrification
mathematical modeling
activated sludge model
IFAS
biofilm
spellingShingle integrated fixed film media
nitrification
denitrification
mathematical modeling
activated sludge model
IFAS
biofilm
Sriwiriyarat, Tongchai
Computer Program Development for the Design of IFAS Wastewater Treatment Processes
description The Integrated Film Activated Sludge Process (IFAS) was developed to reduce the cost of additional facilities required to complete year round nitrification in the design of new or retrofit wastewater treatment plants. The purpose of this project was to develop a computer-based mechanistic model, called IFAS, which can be used as a tool by scientists and engineers to optimize their designs and to troubleshoot a full-scale treatment plant. The program also can be employed to assist researchers conducting their studies of IFAS wastewater treatment processes. IFAS enables the steady-state simulation of nitrification-denitrification processes as well as carbonaceous removal in systems utilizing integrated media, but this current version supports only sponge type media. The IFAS program was developed by incorporating empirical equations for integrated biofilm carbonaceous uptake and nitrification developed by Sen and Randall (1995) into the general activated sludge model, developed by the International Association on Water Quality (IAWQ, previously known as IAWRC), plus the biological phosphorus removal model of Wentzel et al (1989). The calibration and evaluation of the IFAS model was performed using existing data from both an IFAS system and a conventional activated sludge bench-scale plant operated over a wide range of Aerobic Mean Cell Residence Times (Aerobic MCRT's). The model developed provides a good fit and a reasonable prediction of the experimental data for both the IFAS and the conventional pilot-scale systems. The phosphorus removal component of the model has not yet been calibrated because of insufficient data and the lack of adequately defined parameters. === Master of Science
author2 Environmental Engineering
author_facet Environmental Engineering
Sriwiriyarat, Tongchai
author Sriwiriyarat, Tongchai
author_sort Sriwiriyarat, Tongchai
title Computer Program Development for the Design of IFAS Wastewater Treatment Processes
title_short Computer Program Development for the Design of IFAS Wastewater Treatment Processes
title_full Computer Program Development for the Design of IFAS Wastewater Treatment Processes
title_fullStr Computer Program Development for the Design of IFAS Wastewater Treatment Processes
title_full_unstemmed Computer Program Development for the Design of IFAS Wastewater Treatment Processes
title_sort computer program development for the design of ifas wastewater treatment processes
publisher Virginia Tech
publishDate 2014
url http://hdl.handle.net/10919/32065
http://scholar.lib.vt.edu/theses/available/etd-043099-012257/
work_keys_str_mv AT sriwiriyarattongchai computerprogramdevelopmentforthedesignofifaswastewatertreatmentprocesses
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