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Titlebook: Colloid Process Engineering; Matthias Kind,Wolfgang Peukert,Heike P. Schuchmann Book 2015 Springer International Publishing Switzerland 20

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Liquid Distribution and Structural Changes During Convective Drying of Gelseement with the experimental results. The major physical effect of capillary flow from large pores into small pores is easily recognized: large pores dry out first while small regions of the void space stay saturated with liquid. In addition to these pore-scale studies, resorcinol-formaldehyde (RF)
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Simulating the Restructuring of Colloidal Aggregateswo particle contact model is set up with resistances against normal, sliding, and torsional displacement, as well as the newly introduced bending resistance. Second, we investigate two methods for the hydrodynamic interaction of a colloidal particle system in the zero-Reynolds-number regime, Stokesi
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Gelation, Fragmentation and Reorganization of Precipitated Silicaon. Modifications in the solid structure appear during the reorganization process, resulting in volume decrease. Thus, the process of reorganization offers the possibility to modify the particle properties even after they have formed. A new method is suggested to reduce the time requirement for the
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Process Engineering of Nanoparticles Below 20 nm—A Fundamental Discussion of Characterization, Partintally derived data on solubility and surface energies, (ii) the stabilization of nanoparticles not only against agglomeration but also against shape changes and (iii) classification. The latter is realized by size selective precipitation which allows surprisingly sharp separations (κ = 0.75) of par
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Filled Vesicles Formed by Phase Transfer of Emulsions or Microemulsions utilization as a drug carrier system. On grounds of the interesting structure, consisting of an unilamellar surfactant shell, which is swollen with oil, and an enclosed aqueous reservoir (core), the produced colloidal particles may alternatively be denoted as a special case of water-in-water-emulsi
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https://doi.org/10.1007/978-3-642-55713-2lic and their ordering under geometrical confinement in a thin liquid film is described. The thin film is formed between two solid surfaces in Colloidal Probe AFM. The effect of suspension parameters (particle concentration, particle size and salt concentration) and parameters of the outer surfaces
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