Poly(ethylenimine)-Functionalized Pyroxene Nanoparticles Embedded on Diatomite for Removal of Total Organic Carbon from Industrial Wastewater: Batch and Fixed-bed studies

atmire.migration.oldid5384
dc.contributor.advisorNassar, Nashaat N.
dc.contributor.authorHethnawi, Afif
dc.contributor.committeememberLu, Qingye
dc.contributor.committeememberHejazi, Hossein
dc.date.accessioned2017-03-10T22:42:45Z
dc.date.available2017-03-10T22:42:45Z
dc.date.issued2017
dc.date.submitted2017en
dc.description.abstractAbstract Providing clean and affordable water to meet the human needs is a big challenge in this century. Globally, the water supply for many industries struggles to keep up with the strong demand. This demand issue is exacerbated by industrialization, which led to water quality deterioration, forming polluted wastewater. Existence of treatment processes to overcome wastewater problems are not efficient and appropriate to maintaining the industrial effluent composition within the standard limits. Specifically, presence of dissolved organic compounds not properly eliminated during the wastewater treatment has a negative impact on human health and the environment. As a novel solution, nanotechnology holds great potential in water and wastewater treatment to improve water quality efficiently. Here, we introduce an innovative technique using environmentally friendly, multifunctional, and effective poly(ethylenimine)-functionalized pyroxene nanoparticles to provide an efficient removal of the dissolved total organic carbon from industrial wastewater in batch and contenuious fixed-bed column studies under various conditions. Our study includes arrays of characterization techniques for the prepared nanoparticles and for Diatomite (commonly used filter aid) before and after embedding it with the nanoparticles at a very low mass ratio (<5 wt%). Diatomite, on its own, has a very low adsorption capacity for the dissolved organic contaminants in field applications. Among these applications is the employment of Diatomite with a rotary drum filter (RDF). Therefore, we embedded the nanoparticles to improve the performance of the Diatomite employed with a rotary drum filter used for the removal of dissolved organic pollutants. This followed our bench scale adsorption experiment using a continuous fixed-bed column that is considered to be the best lab scale model for the rotary drum filter. The experimental results showed that, compared to using activated carbon and magnetic nanoparticles, the prepared nanoparticles were very effective in the removal of dissolved organic contaminants in batch and continuous fixed-bed column experiments. In continuous fixed-bed column experiments, the breakthrough behavior was described using a convection-axial dispersion model that had a good fit with the obtained experimental data. Interestingly, this innovative technique was successfully applied at Executive Mat Ltd, here in Calgary in their rotary drum filter after optimizing some operational conditions.en_US
dc.identifier.citationHethnawi, A. (2017). Poly(ethylenimine)-Functionalized Pyroxene Nanoparticles Embedded on Diatomite for Removal of Total Organic Carbon from Industrial Wastewater: Batch and Fixed-bed studies (Master's thesis, University of Calgary, Calgary, Canada). Retrieved from https://prism.ucalgary.ca. doi:10.11575/PRISM/27380en_US
dc.identifier.doihttp://dx.doi.org/10.11575/PRISM/27380
dc.identifier.urihttp://hdl.handle.net/11023/3669
dc.language.isoeng
dc.publisher.facultyGraduate Studies
dc.publisher.institutionUniversity of Calgaryen
dc.publisher.placeCalgaryen
dc.rightsUniversity of Calgary graduate students retain copyright ownership and moral rights for their thesis. You may use this material in any way that is permitted by the Copyright Act or through licensing that has been assigned to the document. For uses that are not allowable under copyright legislation or licensing, you are required to seek permission.
dc.subjectEngineering--Chemical
dc.subject.otherPyroxene nanoparticles
dc.subject.otherFunctionalized nanoparticles
dc.subject.otherBatch adsorption
dc.subject.otherFixed-bed column adsorption
dc.subject.otherRotary drum filter
dc.titlePoly(ethylenimine)-Functionalized Pyroxene Nanoparticles Embedded on Diatomite for Removal of Total Organic Carbon from Industrial Wastewater: Batch and Fixed-bed studies
dc.typemaster thesis
thesis.degree.disciplineChemical and Petroleum Engineering
thesis.degree.grantorUniversity of Calgary
thesis.degree.nameMaster of Science (MSc)
ucalgary.item.requestcopytrue
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