NMR imaging in chemical engineering / edited by Siegfried Stapf and Song-l Han.

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Published: Weinheim : Wiley-VCH, c2006.
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Format: Book
Table of Contents:
  • 1. Introduction / Siegfried Stapf and Song-I. Han
  • 2. Hardware and methods
  • 2.1. Hardware, software and areas of application of non-medical MRI / D. Gross, K. Zick, T. Oerther, V. Lehmann, A. Pampel and J. Goeiz
  • 2.2. Compact MRI for chemical engineering / Katsumi Kose
  • 2.3. Drying of coatings and other applications with GARField / P. J. Doughty and P. J. McDonald
  • 2.4. Depth profiling by single-sided NMR / F. Casanova, J. Perlo and B. Blumich
  • 2.5. Microcoil NMR for reaction monitoring / Luisa Ciobanu, Jonathan V. Sweedler and Andrew G. Webb
  • 2.6. Broadening the application range of NMR and MRI by remote detection / Song-I Han, Josef Granwehr and Christian Hilty
  • 2.7. Novel two dimensional NMR of diffusion and relaxation for material characterization / Yi-Qiao Song
  • 2.8. Hardware and method development for NMR rheology / Paul T. Callaghan
  • 2.9. Hydrodynamic, electrodynamic and thermodynamic transport in porous model objects : magnetic resonance mapping experiments and simulations / Elke Kossel, Bogdan Buhai and Rainer Kimmich
  • 3. Porous materials
  • 3.1. Diffusion in nanoporous materials / Jorg Karger, Frank Stallmach, Rustem Valiullin and Sergey Vasenkov
  • 3.2. Application of magnetic resonance imaging to the study of the filtration process / R. Reimert, E. H. Hardy and A. von Garnier
  • 3.3. Multiscale approach to catalyst design / Xiaohong Ren, Siegfried Stapf and Bernhard Blumich
  • 3.4. Pure phase encode magnetic resonance imaging of concrete building materials / J. J. Young, T. W. Bremner, M. D. A. Thomas and B. J. Balcom
  • 3.5. NMR imaging of functionalized ceramics / S. D. Beyea, D. O. Kuethe, A. McDowell, A. Caprihan and S. J. Glass
  • 3.6. NMR applications in petroleum reservoir studies / George J. Hirasaki
  • 3.7. NMR pore size measurements using an internal magnetic field in porous media / Yi-Qiao Song, Eric E. Sigmund and Natalia V. Lisitza
  • 4. Fluids and flows
  • 4.1. Modeling fluid flow in permeable media / Jinsoo Uh and A. Ted Watson
  • 4.2. MRI viscometer / Robert L. Powell
  • 4.3. Imaging complex fluids in complex geometries / Y. Xia and P. T. Callaghan
  • 4.4. Quantitative visualization of Taylor-Couette-Poiseuille flows with MRI[superscript +] / John G. Georgiadis, L. Guy Raguin and Kevin W. Moser
  • 4.5. Two phase flow of emulsions / Nina C. Shapley and Marcos A. d'Avila
  • 4.6. Fluid flow and trans-membrane exchange in a hemodialyzer module / Song-I Han and Siegfried Stapf
  • 4.7. NMR for food quality control / Michael J. McCarthy, Prem N. Gambhir and Artem G. Goloshevsky
  • 4.8. Granular flow / Eiichi Fukushima
  • 5. Reactors and reactions
  • 5.1. Magnetic resonance microscopy of biofilm and bioreactor transport / Sarah L. Codd, Joseph D. Seymour, Erica L. Gjersing, Justin P. Gage and Jennifer R. Brown
  • 5.2. Two-phase flow in trickle-bed reactors / Lynn F. Gladden, Laura D. Anadon, Matthew H. M. Lim and Andrew J. Sederman
  • 5.3. Hyperpolarized [superscript 129]Xe NMR spectroscopy, MRI and dynamic NMR microscopy for the In Situ monitoring of gas dynamics in opaque media including combustion processes / Galina E. Pavlovskaya and Thomas Meersmann
  • 5.4. In Situ monitoring of multiphase catalytic reactions at elevated temperatures by MRI and NMR / Igor V. Koptyug and Anna A. Lysova
  • 5.5. In Situ reaction imaging in fixed-bed reactors using MRI / Lynn F. Gladden, Belinda D. Akpa, Michael D. Mantle and Andrew J. Sederman.