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Molecular modelling applications in crystallization fouling and clay/polymer nanocompositesMrayed, Sabri Mohamed Ali, Chemical Sciences & Engineering, Faculty of Engineering, UNSW January 2007 (has links)
The present work used ab initio density functional theory (DFT) to study two different physical phenomena crystallization fouling and clay-based polymer nanocomposites. In the first part, two foulant materials were studied including calcium carbonate, and calcium sulfate. The lattice energy and enthalpy of formations of each crystal system were predicted using DFT methods. The most stable forms of calcium carbonate foul ant, calcite and aragonite, were investigated. For calcium sulfate, both gypsum and anhydrite crystals were investigated. The thermodynamic solubility product of each crystal system, for both foul ants, was predicted from the lattice energy and enthalpy of formations. Comparison of the stability between the different crystal systems for the same foul ant material was carried out to elucidate the effect of crystal atomic configuration and space group on the stability of foulant materials. The effect of temperature on the formation and stability of foulant material was also carried out. The results obtained using DFT methods, for enthalpy of formation and thermodynamic solubility products, were comparable with the experimental data reported in the literature. In the second part, study has been made on the clay-based nylon 6 nanocomposite materials. The purpose was to understand the interfacial interactions between clay and polymer with and without surfactant component. Both sides of the clay were examined with nylon 6. In order to determine specifically the type of interfacial interaction between clay and nylon 6, the electron distribution around the whole system was predicted. The study was carried out at various isomorphic substitutions. The substitutions took place at both octahedral and tetrahedral layers of the clay. The strength between clay and nylon 6 was predicted by calculating the binding energy. The results obtained revealed that, the strength increases with the increase in the degree of isomorphic substitutions. The type of bond between nylon 6 and basal surface of the clay was found to be basically electrostatic interactions, and particularly hydrogen bonds. Whilst, the type of interactions between nylon 6 and clay edge surface was found to include covalent bonds as well as electrostatic interactions. The formation and breakage of covalent bonds between nylon 6 and clay means that, a chemical decomposition of the clay can happen when it is mixed with certain type of polymers. The presence of surfactant can decrease the interfacial interactions between clay and nylon 6.
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The structure of natural soil aggregates as determined by adsorption studies /Burford, John Roland. January 1961 (has links) (PDF)
Thesis (B. Ag. Sci.(Hons.))--University of Adelaide, 1961. / Includes bibliographical references (leaves 67-70).
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Adsorption of organic cations and the physical structure of clay systems /Theng, B. K. G. January 1961 (has links) (PDF)
Thesis (B. Ag. Sci.(Hons.))--University of Adelaide, 1961. / Includes bibliographical references (leaves 131-135).
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Properties of clays and soils after acid treatment /Yeoh, Ngoh Sum. January 1979 (has links) (PDF)
Thesis (M.Ag.Sci. 1980) from the Department of Soil Science, University of Adelaide.
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The Jomon clay figurines of the Kaminabe site, Kyushu, JapanTogawa, Minako. January 1900 (has links)
Thesis (M.A.). / Written for the Dept. of Anthropology. Title from title page of PDF (viewed 2008/07/24). Includes bibliographical references.
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Development of layered silicate/epoxy nanocomposite/Kaya, Elçin Dilek. Tanoğlu, Metin January 2006 (has links) (PDF)
Thesis (Master)--İzmir Institute Of Technology, İzmir, 2006. / Keywords: epoxy resin, nanocomposites, clay, scanning electron microscope, mechanical properties. Includes bibliographical references (leaves. 93-98).
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Aluminosilicate-coated silica sand for reactive transport experimentsJerez Briones, Jorge Antonio, January 2005 (has links) (PDF)
Thesis (Ph.D.)--Washington State University. / Includes bibliographical references.
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Critical state framework and liquefaction of fine-grained soilsWorthen, Diana, January 2009 (has links) (PDF)
Thesis (M.S. in civil engineering)--Washington State University, August 2009. / Title from PDF title page (viewed on Aug. 10, 2009). "Department of Civil and Environmental Engineering." Includes bibliographical references (p. 45-46).
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Clay minerals of recent marine sediments to the west of the Mississippi DeltaMcAllister, Raymond Francis. January 1958 (has links)
Thesis (Ph. D. in Oceanography)--A. & M. College of Texas. / Ozalid process.
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Die deutsche ziegelindustrie unter besonderer berücksichtigung ihrer beziehungen zur landwirtschaft ...Matz, Friedrich, January 1930 (has links)
Inaug.-diss.--Leipzig. / Lebenslauf. "Literatur-verzeichnis": p. 73.
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