Computational and Spectroscopic Investigations of the Molecular Scale Structure and Dynamics of Geologically Important Fluids and Mineral-Fluid Interfaces

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Book Synopsis Computational and Spectroscopic Investigations of the Molecular Scale Structure and Dynamics of Geologically Important Fluids and Mineral-Fluid Interfaces by :

Download or read book Computational and Spectroscopic Investigations of the Molecular Scale Structure and Dynamics of Geologically Important Fluids and Mineral-Fluid Interfaces written by and published by . This book was released on 2008 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt: Research supported by this grant focuses on molecular scale understanding of central issues related to the structure and dynamics of geochemically important fluids, fluid-mineral interfaces, and confined fluids using computational modeling and experimental methods. Molecular scale knowledge about fluid structure and dynamics, how these are affected by mineral surfaces and molecular-scale (nano- ) confinement, and how water molecules and dissolved species interact with surfaces is essential to understanding the fundamental chemistry of a wide range of low-temperature geochemical processes, including sorption and geochemical transport. Our principal efforts are devoted to continued development of relevant computational approaches, application of these approaches to important geochemical questions, relevant NMR and other experimental studies, and application of computational modeling methods to understanding the experimental results. The combination of computational modeling and experimental approaches is proving highly effective in addressing otherwise intractable problems. In 2006-2007 we have significantly advanced in new, highly promising research directions along with completion of on-going projects and final publication of work completed in previous years. New computational directions are focusing on modeling proton exchange reactions in aqueous solutions using ab initio molecular dynamics (AIMD), metadynamics (MTD), and empirical valence bond (EVB) approaches. Proton exchange is critical to understanding the structure, dynamics, and reactivity at mineral-water interfaces and for oxy-ions in solution, but has traditionally been difficult to model with molecular dynamics (MD). Our ultimate objective is to develop this capability, because MD is much less computationally demanding than quantum-chemical approaches. We have also extended our previous MD simulations of metal binding to natural organic matter (NOM) to a much longer time scale (up to 10 ns) for significantly larger systems. These calculations have allowed us, for the first time, to study the effects of metal cations with different charges and charge density on the NOM aggregation in aqueous solutions. Other computational work has looked at the longer-time-scale dynamical behavior of aqueous species at mineral-water interfaces investigated simultaneously by NMR spectroscopy. Our experimental NMR studies have focused on understanding the structure and dynamics of water and dissolved species at mineral-water interfaces and in two-dimensional nano-confinement within clay interlayers. Combined NMR and MD study of H2O, Na+, and Cl- interactions with the surface of quartz has direct implications regarding interpretation of sum frequency vibrational spectroscopic experiments for this phase and will be an important reference for future studies. We also used NMR to examine the behavior of K+ and H2O in the interlayer and at the surfaces of the clay minerals hectorite and illite-rich illite-smectite. This the first time K+ dynamics has been characterized spectroscopically in geochemical systems. Preliminary experiments were also performed to evaluate the potential of 75As NMR as a probe of arsenic geochemical behavior. The 75As NMR study used advanced signal enhancement methods, introduced a new data acquisition approach to minimize the time investment in ultra-wide-line NMR experiments, and provides the first evidence of a strong relationship between the chemical shift and structural parameters for this experimentally challenging nucleus. We have also initiated a series of inelastic and quasi-elastic neutron scattering measurements of water dynamics in the interlayers of clays and layered double hydroxides. The objective of these experiments is to probe the correlations of water molecular motions in confined spaces over the scale of times and distances most directly comparable to our MD simulations and on a time scale different than that probed by NMR. This work is being done in collaboration with Drs. C.-K. Loong, N. de Souza, and A.I. Kolesnikov at the Intense Pulsed Neutron Source facility of the Argonne National Lab, and Dr. A. Faraone at the NIST Center for Neutron Research. A manuscript reporting the first results of these experiments, which are highly complimentary to our previous NMR, X-ray, and infra-red results for these phases, is currently in preparation. In total, in 2006-2007 our work has resulted in the publication of 14 peer-reviewed research papers. We also devoted considerable effort to making our work known to a wide range of researchers, as indicated by the 24 contributed abstracts and 14 invited presentations.

Physical Chemistry of Gas-Liquid Interfaces

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Publisher : Elsevier
ISBN 13 : 0128136421
Total Pages : 492 pages
Book Rating : 4.1/5 (281 download)

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Book Synopsis Physical Chemistry of Gas-Liquid Interfaces by : Jennifer A. Faust

Download or read book Physical Chemistry of Gas-Liquid Interfaces written by Jennifer A. Faust and published by Elsevier. This book was released on 2018-05-31 with total page 492 pages. Available in PDF, EPUB and Kindle. Book excerpt: Physical Chemistry of Gas-Liquid Interfaces, the first volume in the Developments in Physical & Theoretical Chemistry series, addresses the physical chemistry of gas transport and reactions across liquid surfaces. Gas–liquid interfaces are all around us, especially within atmospheric systems such as sea spry aerosols, cloud droplets, and the surface of the ocean. Because the reaction environment at liquid surfaces is completely unlike bulk gas or bulk liquid, chemists must readjust their conceptual framework when entering this field. This book provides the necessary background in thermodynamics and computational and experimental techniques for scientists to obtain a thorough understanding of the physical chemistry of liquid surfaces in complex, real-world environments. 2019 PROSE Awards - Winner: Category: Chemistry and Physics: Association of American Publishers Provides an interdisciplinary view of the chemical dynamics of liquid surfaces, making the content of specific use to physical chemists and atmospheric scientists Features 100 figures and illustrations to underscore key concepts and aid in retention for young scientists in industry and graduate students in the classroom Helps scientists who are transitioning to this field by offering the appropriate thermodynamic background and surveying the current state of research

Transport and Reactivity of Solutions in Confined Hydrosystems

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Publisher : Springer
ISBN 13 : 9400775342
Total Pages : 271 pages
Book Rating : 4.4/5 (7 download)

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Book Synopsis Transport and Reactivity of Solutions in Confined Hydrosystems by : Lionel Mercury

Download or read book Transport and Reactivity of Solutions in Confined Hydrosystems written by Lionel Mercury and published by Springer. This book was released on 2013-11-12 with total page 271 pages. Available in PDF, EPUB and Kindle. Book excerpt: The present work reflects a multi-disciplinary effort to address the topic of confined hydrosystems developed with a cross-fertilization panel of physics, chemists, biologists, soil and earth scientists. Confined hydrosystems include all situations in natural settings wherein the extent of the liquid phase is limited so that the solid-liquid and/or liquid-air interfaces may be critical to the properties of the whole system. Primarily, this so-called “residual” solution is occluded in pores/channels in such a way that decreases its tendency to evaporation, and makes it long-lasting in arid (Earth deserts) and hyper-arid (Mars soils) areas. The associated physics is available from domains like capillarity, adsorption and wetting, and surface forces. However, many processes are still to understand due to the close relationship between local structure and matter properties, the subtle interplay between the host and the guest, the complex intermingling among static reactivity and migration pathway. Expert contributors from Israel, Russia, Europe and US discuss the behaviour of water and aqueous solutes at different scale, from the nanometric range of carbon nanotubes and nanofluidics to the regional scale of aquifers reactive flow in sedimentary basins. This scientific scope allowed the group of participants with very different background to tackle the confinement topic at different scales. The book is organized according to four sections that include: i) flow, from nano- to mega-scale; ii) ions, hydration and transport; iii) in-pores/channels cavitation; iv) crystallization under confinement. Most of contributions relates to experimental works at different resolution, interpreted through classic thermodynamics and intermolecular forces. Simulation techniques are used to explore the atomic scale of interfaces and the migration in the thinnest angstrom-wide channels.

Structure, Dynamics and Stability of Water/scCO2/mineral Interfaces from Ab Initio Molecular Dynamics Simulations

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Book Synopsis Structure, Dynamics and Stability of Water/scCO2/mineral Interfaces from Ab Initio Molecular Dynamics Simulations by :

Download or read book Structure, Dynamics and Stability of Water/scCO2/mineral Interfaces from Ab Initio Molecular Dynamics Simulations written by and published by . This book was released on 2015 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt: Here, the interface between a solid and a complex multi-component liquid forms a unique reaction environment whose structure and composition can significantly deviate from either bulk or liquid phase and is poorly understood due the innate difficulty to obtain molecular level information. Feldspar minerals, as typified by the Ca-end member Anorthite, serve as prototypical model systems to assess the reactivity and ion mobility at solid/water-bearing supercritical fluid (WBSF) interfaces due to recent X-ray based measurements that provide information on water-film formation, and cation vacancies at these surfaces. Using density functional theory based molecular dynamics, which allows the evaluation of reactivity and condensed phase dynamics on equal footing, we report on the structure and dynamics of water nucleation and surface aggregation, carbonation and Ca mobilization under geologic carbon sequestration scenarios (T = 323 K and P = 90 bar). We find that water has a strong enthalpic preference for aggregation on a Ca-rich, O-terminated anorthite (001) surface, but entropy strongly hinders the film formation at very low water concentrations. Carbonation reactions readily occur at electron-rich terminal Oxygen sites adjacent to cation vacancies, when in contact with supercritical CO2. Cation vacancies of this type can form readily in the presence of a water layer that allows for facile and enthalpicly favorable Ca2+ extraction and solvation. Apart from providing unprecedented molecular level detail of a complex three component (mineral, water and scCO2) system), this work highlights the ability of modern capabilities of AIMD methods to begin to qualitatively and quantitatively address structure and reactivity at solid-liquid interfaces of high chemical complexity. This work was supported by the US Department of Energy, Office of Fossil Energy (M.-S.L., B.P.M. and V.-A.G.) and the Office of Basic Energy Science, Division of Chemical Sciences, Geosciences and Biosciences (R.R.), and performed at the Pacific Northwest National Laboratory (PNNL). PNNL is a multi-program national laboratory operated for DOE by Battelle. Computational resources were provided by PNNL's Platform for Institutional Computing (PIC), the W.R. Wiley Environmental Molecular Science Laboratory (EMSL), a national scientific user facility sponsored by the Department of Energy's Office of Biological and Environmental Research located at PNNL and the National Energy Research Scientific Computing Center (NERSC) at Lawrence Berkeley National Laboratory.

Dynamics and Patterns in Complex Fluids

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Publisher : Springer Science & Business Media
ISBN 13 : 3642760082
Total Pages : 231 pages
Book Rating : 4.6/5 (427 download)

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Book Synopsis Dynamics and Patterns in Complex Fluids by : Akira Onuki

Download or read book Dynamics and Patterns in Complex Fluids written by Akira Onuki and published by Springer Science & Business Media. This book was released on 2012-12-06 with total page 231 pages. Available in PDF, EPUB and Kindle. Book excerpt: The fourth Nishinomiya-Yukawa Memorial Symposium, devoted to the topic of dynamics and patterns in complex fluids, was held on October 26 and 27, 1989, in Nishinomiya City, Japan, where ten invited speakers gave their lectures. A one-day meeting, comprising short talks and poster sessions, was then held on the same topic on October 28 at the Research Institute for Fundamental Physics, Kyoto University. The present volume contains the 10 invited papers and 38 contributed papers presented at these two meetings. The symposium was sponsored by Nishinomiya City, where Prof. Hideki Yukawa once lived and where he wrote the celebrated paper describing the work that was later honored by a Nobel prize. The topic of the fourth symposium was chosen from one of the most vigorously evolving and highly interdisciplinary fields in condensed matter physics. The field of complex fluids is very diverse and still in its infancy and, as a result, the definition of a complex fluid varies greatly from one researcher to the next. One of the objectives of the symposium was to clarify its definition by explicitly posing a number of potentially rich problems waiting to be explored. Indeed, experimentalists are disclosing a variety of intriguing dynamical phenomena in complex systems such as polymers, liquid crystals, gels, colloids, and surfactant systems. We, the organizers, hope that the symposium will contribute to the increasing importance of the field in the coming years.

International Workshop on Fluid-Structure Interaction. Theory, Numerics and Applications

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Publisher : kassel university press GmbH
ISBN 13 : 3899586670
Total Pages : 278 pages
Book Rating : 4.8/5 (995 download)

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Book Synopsis International Workshop on Fluid-Structure Interaction. Theory, Numerics and Applications by : Stefan Hartmann

Download or read book International Workshop on Fluid-Structure Interaction. Theory, Numerics and Applications written by Stefan Hartmann and published by kassel university press GmbH. This book was released on 2009 with total page 278 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Structure and Dynamics of Water Next to Mineral Surfaces

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ISBN 13 :
Total Pages : 199 pages
Book Rating : 4.:/5 (128 download)

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Book Synopsis Structure and Dynamics of Water Next to Mineral Surfaces by : Aashish Tuladhar

Download or read book Structure and Dynamics of Water Next to Mineral Surfaces written by Aashish Tuladhar and published by . This book was released on 2016 with total page 199 pages. Available in PDF, EPUB and Kindle. Book excerpt: Vibrational sum frequency generation (vSFG) spectroscopy is a second order non-linear technique that can efficiently and selectively investigate an interface between two media. vSFG spectroscopy has been frequently used to interrogate the mineral/water interface by probing the interfacial O−H stretch, which is an excellent reporter of its hydrogen bonding environment. My work, described in this dissertation, is focused on using steady-state and time-resolved vSFG spectroscopy to understand how (a) the type of mineral, (b) the crystalline faces of the mineral, (c) the surface charge of the mineral, and (d) the ionic strength of the bulk liquid affect the structure and the ultrafast dynamics of the mineral/water interface. The results obtained for alumina/water interface are compared with the more commonly studied silica/water interface. The Al2O3/H2O interface provides an ideal opportunity to study the behavior of water next to a positively charged, neutral, and negatively charged mineral surface since its point of zero charge (PZC) lies near the pH of neutral water (pH 6-8). In contrast, due to its low PZC (~pH 2), silica surface is usually neutral or negatively charged. Additionally, a-alumina is crystalline in structure and can be cut to expose different faces (e.g., 0001, 11 ̅02, 112 ̅0) which has been speculated to uniquely affect the ordering and the hydrogen bonding environment of its adjacent water molecules. Our vSFG spectra of the O-H stretch at the alumina/water interface revealed the presence of highly red-shifted 3000 cm-1 species, which is absent at the silica/water interface. With the help of DFT calculations, we assigned the red-shifted peak to the O-H stretch of strongly hydrogen bonded surface aluminol groups and/or interfacial water molecules that are hydrogen bonded to the mineral surface. The 3000 cm-1 species was present at both the Al2O3(0001) and the Al2O3(112 ̅0) surface, but was more prominent for the latter which resulted in the O-H stretch of the Al2O3(112 ̅0)/H2O interface to appear more red-shifted compared to the Al2O3(0001)/H2O interface. This observation provided us with an experimental evidence that the water next to the Al2O3(112 ̅0) surface is in a stronger hydrogen bonded environment than next to the Al2O3(0001) surface as predicted by Catalano's X-ray reflectivity measurements. Additionally, IR pump - vSFG probe experiments were used to investigate the ultrafast vibrational dynamics of the O-H stretch at alumina/water interfaces. The vibrational dynamics at the Al2O3(112 ̅0)/H2O interface was observed to be fast (T1 = 100-130 fs) and not affected by the mineral surface charge (controlled by bulk pH) or the ionic strength (up to 0.5 M NaCl). In contrast, for the Al2O3(0001)/H2O interface, the vibrational dynamics was observed to be two times faster for the charged surface (T1 ~ 105 fs) compared to the neutral surface (T1 ~ 220 fs). This result provides further evidence that the water next to the Al2O3(112 ̅0) surface is more ordered and/or strongly hydrogen bonded compared to the water next to the Al2O3(0001) surface. The vibrational dynamics observed at the charged Al2O3(0001)/H2O interface (T1 ~105 fs) is faster than in bulk water and at the charged silica/water interface (T1 = ~200 fs). We speculate that the red-shifted 3000 cm-1 species present at the alumina/water interface plays a major role in the mechanism of vibrational relaxation since the 3000 cm-1 species is present at the alumina/water interface and not at the silica/water interface. The main mechanism of vibrational relaxation of the O-H stretch in bulk water is known to proceed via the Fermi-resonance coupling between the overtone of the water bend and the O-H stretch. The presence of red-shifted O-H species at the alumina/water interface could lead to better coupling between the O-H stretch and the water bend overtone and hence result in faster vibrational relaxation than in bulk water. Alternatively, a new pathway of vibrational relaxation via an ultrafast excited state proton transfer reaction could be operative for the alumina/water interface due to the presence of different types of O-H stretches (arising from aluminol groups and water molecules). Such a mechanism would not be possible at the silica interface due to the significantly lower density of surface bound hydroxyls. We are not able to determine the dominant mechanism for vibrational relaxation at the alumina/water interface with our current experiments and therefore, our future work will involve collaborations with theoretical groups in order to answer this question.

Spectroscopic Investigations of Molecular-level Interactions in Supercritical Fluids

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ISBN 13 :
Total Pages : 484 pages
Book Rating : 4.:/5 (339 download)

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Book Synopsis Spectroscopic Investigations of Molecular-level Interactions in Supercritical Fluids by : Jeanette Koch Rice

Download or read book Spectroscopic Investigations of Molecular-level Interactions in Supercritical Fluids written by Jeanette Koch Rice and published by . This book was released on 1995 with total page 484 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Investigations of the Molecular Structure and Bonding of Water at the Liquid-liquid Interface Utilizing Vibrational Sum-frequency Spectroscopy

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ISBN 13 :
Total Pages : 240 pages
Book Rating : 4.:/5 (57 download)

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Book Synopsis Investigations of the Molecular Structure and Bonding of Water at the Liquid-liquid Interface Utilizing Vibrational Sum-frequency Spectroscopy by : Cathryn LeAn McFearin

Download or read book Investigations of the Molecular Structure and Bonding of Water at the Liquid-liquid Interface Utilizing Vibrational Sum-frequency Spectroscopy written by Cathryn LeAn McFearin and published by . This book was released on 2009 with total page 240 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Time Resolved Spectroscopic Investigations of Reactions and Molecular Structure in Supercritical Fluids

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ISBN 13 :
Total Pages : 522 pages
Book Rating : 4.:/5 (314 download)

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Book Synopsis Time Resolved Spectroscopic Investigations of Reactions and Molecular Structure in Supercritical Fluids by : Christopher Brian Roberts

Download or read book Time Resolved Spectroscopic Investigations of Reactions and Molecular Structure in Supercritical Fluids written by Christopher Brian Roberts and published by . This book was released on 1994 with total page 522 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Molecular studies of fluid interfaces

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ISBN 13 :
Total Pages : 296 pages
Book Rating : 4.:/5 (136 download)

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Book Synopsis Molecular studies of fluid interfaces by : Clyde Chandler Meyers

Download or read book Molecular studies of fluid interfaces written by Clyde Chandler Meyers and published by . This book was released on 1965 with total page 296 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Vibrational Sum Frequency Spectroscopic Investigations of the Structure, Hydrogen Bonding, and Orientation of Water Molecules at the Liquid/liquid Interface

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ISBN 13 :
Total Pages : 304 pages
Book Rating : 4.:/5 (51 download)

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Book Synopsis Vibrational Sum Frequency Spectroscopic Investigations of the Structure, Hydrogen Bonding, and Orientation of Water Molecules at the Liquid/liquid Interface by : Lawrence Francis Scatena

Download or read book Vibrational Sum Frequency Spectroscopic Investigations of the Structure, Hydrogen Bonding, and Orientation of Water Molecules at the Liquid/liquid Interface written by Lawrence Francis Scatena and published by . This book was released on 2001 with total page 304 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Molecular Spectra and Dynamics at Interfaces

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ISBN 13 :
Total Pages : 7 pages
Book Rating : 4.:/5 (227 download)

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Book Synopsis Molecular Spectra and Dynamics at Interfaces by :

Download or read book Molecular Spectra and Dynamics at Interfaces written by and published by . This book was released on 1994 with total page 7 pages. Available in PDF, EPUB and Kindle. Book excerpt: The purpose of the project is to develop a theory of molecular spectra and dynamics of species adsorbed at solid interfaces, in order to provide insight into the properties of interfaces starting from their molecular structure. An additional goal is to develop computational tools to do quantitative calculations of spectroscopic and dynamical quantities. The theoretical and computational tools are developed recognizing that advanced light sources such as tunable lasers, and synchrotron radiation and pulsed lasers provide important tools in the study of solid surfaces to excite adsorbed molecules and to dissociate bonds of adsorbates. Photoelectron spectroscopy (PBS) probes the electronic structure of adsorbed species and also, by comparison to free molecules, provides information on the electronic structure of the solid substrate. Photoinduced desorption (PID) provides information on the strengths of chemical bonds and of Van der Waals forces at surfaces. (jg).

Molecular-level Modelling of Complex Liquid Interfaces

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ISBN 13 :
Total Pages : 0 pages
Book Rating : 4.:/5 (141 download)

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Book Synopsis Molecular-level Modelling of Complex Liquid Interfaces by : Sean O'Connor

Download or read book Molecular-level Modelling of Complex Liquid Interfaces written by Sean O'Connor and published by . This book was released on 2015 with total page 0 pages. Available in PDF, EPUB and Kindle. Book excerpt: In a world with ever-increasing energy demands, it is important that the oil industry continually adapts and innovates in order to ensure maximum possible yield of oil recovery. Enhanced Oil Recovery, (EOR), is being increasingly applied to optimise oil recovery. One method of EOR is through the use of water injection. Water injection involves flooding an oil reservoir with water. This helps maintain the pressure during the extraction of oil and can also be used to move the oil to a more favourable position in the reservoir. The competitive interaction between oil and water at the reservoir wall is better understood through analysis of several interfacial properties, such as partial density distribution, interfacial tension, adsorption energy and contact angle. Researching these interfacial properties will allow prediction of the optimum characteristics of water injected into a reservoir based on its interaction with the hydrocarbon fluid and the sedimentary rock surface. At the same time it will be determined whether or not Molecular Dynamics is a useful tool to assist and improve EOR. Molecular Dynamics simulations were employed to explore several interfacial properties of water and dodecane at the {1014} surface of calcite. A series of different initial water configurations were investigated at two different temperatures. Partial density analysis demonstrated a significant increase in the density distribution of water at the surface of calcite. It was found that the partial density distribution of water is lower for the simulations carried out at the higher temperature at the calcite surface. An investigation into the interfacial tension between water and dodecane resulted in a value of 50.05 mN/m. This result was comparable to those found in both experimental and other computational studies. Use of the Radial Distribution Function yielded adsorption free energy results of -33.4 kJ mol−1 and -39.4 kJ mol−1 for at 298K and 353K respectively. Potential of Mean Force analysis yielded an adsorption energy result of -44.0 kJ mol−1 for water at the {1014} calcite surface. Several studies carried out in recent years have produced results comparable to this, though a portion of the scientific community believe this result to be too low. It has been shown that the value for adsorption energy is dependent on the Ca - Owater distances for computational studies. However the results in this study do not follow this trend. Contact angle analysis showed that the addition of dodecane inhibited the spreading of water on the {1014} calcite surface, but not entirely. A new computational method was also developed for measuring the contact angle for GROMACS coordinate files which, whilst producing efficient results for uniform spreading, is generally than the more traditional method. However for non-uniform spreading it could be argued that the traditional method is less reliable. Analysis of a water droplet system proved unequivocally that the {1014} surface of calcite is water-wet.

Structure And Dynamics Of Constrained Water

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ISBN 13 :
Total Pages : pages
Book Rating : 4.:/5 (656 download)

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Book Synopsis Structure And Dynamics Of Constrained Water by :

Download or read book Structure And Dynamics Of Constrained Water written by and published by . This book was released on 2002 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt: The thesis, which contains nine chapters, reports extensive large scale atomistic molecular dynamics (MD) simulation studies of water structure and dynamics at the surface of an anionic micelle, hydration layer of two proteins, and in the grooves of a 38-base pairs long DNA. Understanding the structure and dynamics of water molecules at the surfaces of self-organized assemblies and complex biological macromolecules has become a subject of intense research in recent times. Chapter 1 contains a brief overview of the biomolecular hydration dynamics. Relevant experimental, computational, and theoretical studies of biomolecular hydration and the time scales associated with the water dynamics are discussed. In Chapters 2 and 3, the structure, environment, energetics, and dynamics of constrained water molecules in the aqueous anionic micelle of cesium perfluorooctanoate (CsPFO) have been studied using large scale atomistic molecular dynamics simulations. Based on the number of hydrogen bond (HB) that interfacial water molecule makes with the polar head group (PHG) oxygen of the micelle, we find the existence of three kinds of water at the interface. We introduce a nomenclature to identify the species as IBW2 (form two HBs with two different PHG), IBW1 (form one HB with PHG), and IFW (no HB with PHG). Despite of possessing two strong w-PHG bonds, the concentration of the IBW2 species is rather low due to entropic effect. The ion solvation dynamics study at the interface shows the presence of a slow component, with a relaxation time 1-2 order of magnitude slower than that in the corresponding bulk solvent in agreement with the experimental results. Both the translational and orientational dynamics of the water molecules near the micellar surface is found to be much slower than those in the bulk. The HB between the PHG of the micelle and the water molecule has almost ~13 times longer life time than that in the bulk between two tagged water molecules. In Chapter 4, we present.

Applications of Molecular Dynamics Techniques and Spectroscopic Theories to Aqueous Interfaces

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ISBN 13 :
Total Pages : pages
Book Rating : 4.:/5 (811 download)

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Book Synopsis Applications of Molecular Dynamics Techniques and Spectroscopic Theories to Aqueous Interfaces by : Anthony Green

Download or read book Applications of Molecular Dynamics Techniques and Spectroscopic Theories to Aqueous Interfaces written by Anthony Green and published by . This book was released on 2011 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt: The primary goal of spectroscopy is to obtain molecularly detailed information about the system under study. Sum frequency generation (SFG) vibrational spectroscopy is a nonlinear optical technique that is highly interface specific, and is therefore a powerful tool for understanding interfacial structure and dynamics. SFG is a second order, electronically nonresonant, polarization experiment and is consequently dipole forbidden in isotropic media such as a bulk liquid. Interfaces, however, serve to break the symmetry and produce a signal. Theoretical approximations to vibrational spectra of O-H stretching at aqueous interfaces are constructed using time correlation function (TCF) and instantaneous normal mode (INM) methods. Detailed comparisons of theoretical models and spectra are made with those obtained experimentally in an effort to establish that our molecular dynamics (MD) methods can reliably depict the system of interest. The computational results presented demonstrate the potential of these methods to accurately describe fundamentally important systems on a molecular level.

Index to Theses with Abstracts Accepted for Higher Degrees by the Universities of Great Britain and Ireland and the Council for National Academic Awards

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ISBN 13 :
Total Pages : 998 pages
Book Rating : 4.F/5 ( download)

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Book Synopsis Index to Theses with Abstracts Accepted for Higher Degrees by the Universities of Great Britain and Ireland and the Council for National Academic Awards by :

Download or read book Index to Theses with Abstracts Accepted for Higher Degrees by the Universities of Great Britain and Ireland and the Council for National Academic Awards written by and published by . This book was released on 2005 with total page 998 pages. Available in PDF, EPUB and Kindle. Book excerpt: Theses on any subject submitted by the academic libraries in the UK and Ireland.