Multi-variable approach to determine treatment efficiency of wetland: size effect and electro-kinetic effects

Empirical stochastic multi-variable models for prediction of treatment efficiency of wetlands are presented in this article. Wetlands of seven different shapes are visualized using tracer studies. Two different variants of experiments are carried out. Numerous flow rate variations are performed keep...

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Main Authors: Gupta, Sandeep, Singh, Rattandeep, Chakraborty, Prodyut Ranjan, Sharma, R.K., Soboyejo, A.B.O., Wei, Xiaohua, Plappally, Anand
Other Authors: School of Civil and Environmental Engineering
Format: Article
Language:English
Published: 2016
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Online Access:https://hdl.handle.net/10356/81572
http://hdl.handle.net/10220/39594
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-815722020-03-07T11:43:32Z Multi-variable approach to determine treatment efficiency of wetland: size effect and electro-kinetic effects Gupta, Sandeep Singh, Rattandeep Chakraborty, Prodyut Ranjan Sharma, R.K. Soboyejo, A.B.O. Wei, Xiaohua Plappally, Anand School of Civil and Environmental Engineering Multi-parameter approach Electro-kinetic Tracer Wetland Treatment Acrylic model Regression Empirical stochastic multi-variable models for prediction of treatment efficiency of wetlands are presented in this article. Wetlands of seven different shapes are visualized using tracer studies. Two different variants of experiments are carried out. Numerous flow rate variations are performed keeping surface area of the wetland constant. The experiment is also carried out with a variation in volume of the wetland which helps to study the effect of flow height on the hydrodynamics within the wetland. A multi-variable model for treatment efficiency in terms of change in tracer concentration as a function of shape, volumetric height of water within the wetland, time, and mass flow rate is considered. Further, another set of experiments is performed studying the treatment efficiency in terms of electro-kinetic parameters. This involves measuring the pH, turbidity, temperature, electrical conductivity, total dissolved salts at inlet and outlet and residence time with varying flow rate, and height of water for the seven different wetland models under study. The electro-kinetic parameters changes due to difference in concentration of the tracer dye which simulates impurities. In this case, treatment efficiency is expressed as a function of the above-discussed electro-kinetic variables, time variation, water height, as well as variation in the mass flow rate. The stochastic multi-parameter models, thus, empirically derived in the above two cases have high coefficient of determination. The models thus derived may be used as a tool for quick analysis of treatment efficiency of any shape and size of a three-dimensional wetland. Published version 2016-01-06T07:00:44Z 2019-12-06T14:34:01Z 2016-01-06T07:00:44Z 2019-12-06T14:34:01Z 2014 Journal Article Gupta, S., Singh, R., Chakraborty, P. R., Sharma, R. K., Soboyejo, A.B O., Wei, X., et al. (2014). Multi-variable approach to determine treatment efficiency of wetland: size effect and electro-kinetic effects. Desalination and Water Treatment, 55(13), 3576-3586. 1944-3994 https://hdl.handle.net/10356/81572 http://hdl.handle.net/10220/39594 10.1080/19443994.2014.958288 en Desalination and Water Treatment © 2015 Balaban Publishers – Desalination Publications. This paper was published in Desalination and Water Treatment and is made available as an electronic reprint (preprint) with permission of Balaban Publishers – Desalination Publications. The published version is available at: [http://dx.doi.org/10.1080/19443994.2014.958288]. One print or electronic copy may be made for personal use only. Systematic or multiple reproduction, distribution to multiple locations via electronic or other means, duplication of any material in this paper for a fee or for commercial purposes, or modification of the content of the paper is prohibited and is subject to penalties under law. 11 p. application/pdf
institution Nanyang Technological University
building NTU Library
country Singapore
collection DR-NTU
language English
topic Multi-parameter approach
Electro-kinetic
Tracer
Wetland
Treatment
Acrylic model
Regression
spellingShingle Multi-parameter approach
Electro-kinetic
Tracer
Wetland
Treatment
Acrylic model
Regression
Gupta, Sandeep
Singh, Rattandeep
Chakraborty, Prodyut Ranjan
Sharma, R.K.
Soboyejo, A.B.O.
Wei, Xiaohua
Plappally, Anand
Multi-variable approach to determine treatment efficiency of wetland: size effect and electro-kinetic effects
description Empirical stochastic multi-variable models for prediction of treatment efficiency of wetlands are presented in this article. Wetlands of seven different shapes are visualized using tracer studies. Two different variants of experiments are carried out. Numerous flow rate variations are performed keeping surface area of the wetland constant. The experiment is also carried out with a variation in volume of the wetland which helps to study the effect of flow height on the hydrodynamics within the wetland. A multi-variable model for treatment efficiency in terms of change in tracer concentration as a function of shape, volumetric height of water within the wetland, time, and mass flow rate is considered. Further, another set of experiments is performed studying the treatment efficiency in terms of electro-kinetic parameters. This involves measuring the pH, turbidity, temperature, electrical conductivity, total dissolved salts at inlet and outlet and residence time with varying flow rate, and height of water for the seven different wetland models under study. The electro-kinetic parameters changes due to difference in concentration of the tracer dye which simulates impurities. In this case, treatment efficiency is expressed as a function of the above-discussed electro-kinetic variables, time variation, water height, as well as variation in the mass flow rate. The stochastic multi-parameter models, thus, empirically derived in the above two cases have high coefficient of determination. The models thus derived may be used as a tool for quick analysis of treatment efficiency of any shape and size of a three-dimensional wetland.
author2 School of Civil and Environmental Engineering
author_facet School of Civil and Environmental Engineering
Gupta, Sandeep
Singh, Rattandeep
Chakraborty, Prodyut Ranjan
Sharma, R.K.
Soboyejo, A.B.O.
Wei, Xiaohua
Plappally, Anand
format Article
author Gupta, Sandeep
Singh, Rattandeep
Chakraborty, Prodyut Ranjan
Sharma, R.K.
Soboyejo, A.B.O.
Wei, Xiaohua
Plappally, Anand
author_sort Gupta, Sandeep
title Multi-variable approach to determine treatment efficiency of wetland: size effect and electro-kinetic effects
title_short Multi-variable approach to determine treatment efficiency of wetland: size effect and electro-kinetic effects
title_full Multi-variable approach to determine treatment efficiency of wetland: size effect and electro-kinetic effects
title_fullStr Multi-variable approach to determine treatment efficiency of wetland: size effect and electro-kinetic effects
title_full_unstemmed Multi-variable approach to determine treatment efficiency of wetland: size effect and electro-kinetic effects
title_sort multi-variable approach to determine treatment efficiency of wetland: size effect and electro-kinetic effects
publishDate 2016
url https://hdl.handle.net/10356/81572
http://hdl.handle.net/10220/39594
_version_ 1681040748866174976