A Model for Bioaugmented Anaerobic Granule

In this study, we have created a simulation model which is concerned about digesting cellulose, as a major component of microalgae in a bioreactor. This model is designed to generate a computational model that simulates the process of granulation in anaerobic sludge and aims to investigate scenarios...

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Main Author: Mahajan, Amitesh
Format: Others
Published: DigitalCommons@USU 2018
Subjects:
Online Access:https://digitalcommons.usu.edu/etd/7045
https://digitalcommons.usu.edu/cgi/viewcontent.cgi?article=8153&context=etd
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spelling ndltd-UTAHS-oai-digitalcommons.usu.edu-etd-81532019-10-13T06:09:32Z A Model for Bioaugmented Anaerobic Granule Mahajan, Amitesh In this study, we have created a simulation model which is concerned about digesting cellulose, as a major component of microalgae in a bioreactor. This model is designed to generate a computational model that simulates the process of granulation in anaerobic sludge and aims to investigate scenarios of possible granular bioaugmentation. Once a mature granule is formed, pro- tein is used as an alternative substrate that will be supplied to a mature granule. Protein, being a main component of cyanobacteria, will promote growth and incorporation of a cell type that can degrade protein (selective pressure). The model developed in a cDynoMiCs simulation environment successfully demonstrated the process of granule formation and bioaugmentation in an Anaerobic granule. Bioaugmentation is a common strategy in the field of wastewater treatment, used to in- troduce a new metabolic capability to either aerobic or anaerobic granules. The end product of our work is a model that can visually demonstrate varying stratifications of different trophic microbial groups that will be of help for the engineers and researchers, who are operating both laboratory and industrial-scale anaerobic digesters and wish to enhance reactor performance. The working model that we have developed has been validated using the existing literature and lab experiments. The model successfully demonstrates granulation in a cellobiose fed system with formation of 0.63 mm mature granule in 59 days with the production of good amount of methane that could be used commercially as a green fuel. This model is extended to perform bioaugmentation by chaining different simulations. 2018-05-01T07:00:00Z text application/pdf https://digitalcommons.usu.edu/etd/7045 https://digitalcommons.usu.edu/cgi/viewcontent.cgi?article=8153&context=etd Copyright for this work is held by the author. Transmission or reproduction of materials protected by copyright beyond that allowed by fair use requires the written permission of the copyright owners. Works not in the public domain cannot be commercially exploited without permission of the copyright owner. Responsibility for any use rests exclusively with the user. For more information contact digitalcommons@usu.edu. All Graduate Theses and Dissertations DigitalCommons@USU Model Computational Biology Simulation Bioaugmentation Computer Sciences
collection NDLTD
format Others
sources NDLTD
topic Model
Computational Biology
Simulation
Bioaugmentation
Computer Sciences
spellingShingle Model
Computational Biology
Simulation
Bioaugmentation
Computer Sciences
Mahajan, Amitesh
A Model for Bioaugmented Anaerobic Granule
description In this study, we have created a simulation model which is concerned about digesting cellulose, as a major component of microalgae in a bioreactor. This model is designed to generate a computational model that simulates the process of granulation in anaerobic sludge and aims to investigate scenarios of possible granular bioaugmentation. Once a mature granule is formed, pro- tein is used as an alternative substrate that will be supplied to a mature granule. Protein, being a main component of cyanobacteria, will promote growth and incorporation of a cell type that can degrade protein (selective pressure). The model developed in a cDynoMiCs simulation environment successfully demonstrated the process of granule formation and bioaugmentation in an Anaerobic granule. Bioaugmentation is a common strategy in the field of wastewater treatment, used to in- troduce a new metabolic capability to either aerobic or anaerobic granules. The end product of our work is a model that can visually demonstrate varying stratifications of different trophic microbial groups that will be of help for the engineers and researchers, who are operating both laboratory and industrial-scale anaerobic digesters and wish to enhance reactor performance. The working model that we have developed has been validated using the existing literature and lab experiments. The model successfully demonstrates granulation in a cellobiose fed system with formation of 0.63 mm mature granule in 59 days with the production of good amount of methane that could be used commercially as a green fuel. This model is extended to perform bioaugmentation by chaining different simulations.
author Mahajan, Amitesh
author_facet Mahajan, Amitesh
author_sort Mahajan, Amitesh
title A Model for Bioaugmented Anaerobic Granule
title_short A Model for Bioaugmented Anaerobic Granule
title_full A Model for Bioaugmented Anaerobic Granule
title_fullStr A Model for Bioaugmented Anaerobic Granule
title_full_unstemmed A Model for Bioaugmented Anaerobic Granule
title_sort model for bioaugmented anaerobic granule
publisher DigitalCommons@USU
publishDate 2018
url https://digitalcommons.usu.edu/etd/7045
https://digitalcommons.usu.edu/cgi/viewcontent.cgi?article=8153&context=etd
work_keys_str_mv AT mahajanamitesh amodelforbioaugmentedanaerobicgranule
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