Big Chemical Encyclopedia

Chemical substances, components, reactions, process design ...

Articles Figures Tables About

Homogenization and homogenizers

FIG. 4 PCA similarity map defined by the principal components 1 and 2 for the tryptophan emission spectra. Samples were coded NHO, NHP, HOM, and HOP for raw, heated, homogenized, and homogenized -I- heated milks, respectively. Each label corresponds to a spectrum. [Pg.270]

The main aspects of the reactor design are temperature homogeneity and homogeneous gas flow for all 96 reactor positions. In Figs. 2.8 and 2.9, homogeneities of temperature and gas distribution are indirectly verified by an IR-thermo-gram and a product distribution of a partial oxidation reaction, measured over all 96 catalyst samples. [Pg.34]

The editors, as well-known players in their respective fields of homogeneous and homogeneously multiphase catalysis, have hied to portray the scene from the basic idea through the development stage up to commercial applications and the... [Pg.878]

Add 5-10 ml PBS and harvest cells using a rubber poHceman, then transfer cells to dounce homogenizer, and homogenize 10—15 times using pestle B (tighter fitting). [Pg.167]

On the other hand, there are other processes that may participate as well, to some extent, in the initial metabolism and hydrolysis of chylomicron cholesteryl esters in the liver. Liver homogenates and homogenate fractions display cholesteryl ester hydrolase activity at neutral pH, and the enzyme(s) responsible for such activity have been partially purified and characterized (Deykin and Goodman, 1962 Stein et al., 1969 Tuhackova et al., 1980). It is possible that some uptake of cholesteryl esters can occur without uptake of the entire remnant particle [see, e.g., Chajek-Shaul et al. (I981a,b) for such evidence in other tissues]. It is also possible that dissociation of the constituents of the remnant can occur to some extent, permitting cholesteryl ester hydrolysis to take place before remnants are delivered to lysosomes. The extent to which these alternative processes might occur in normal physiology is not known. [Pg.20]

Homogeneous and homogeneously catalyzed gas-liquid reactions take place in the liquid phase in which gaseous reactants dissolve and react with other reactants that are primarily present in the liquid phase. Typical constructions to be used as gas-liquid reactors are column and tank reactors. Liquid-liquid reactors principally resemble gas-liquid reactors, but the gas phase is replaced by another liquid phase. The reactions can principally take place in either of, or even both, the liquid phases. [Pg.2]


See other pages where Homogenization and homogenizers is mentioned: [Pg.167]    [Pg.175]    [Pg.167]    [Pg.1996]    [Pg.1997]    [Pg.1998]    [Pg.1999]    [Pg.2000]    [Pg.2002]    [Pg.2003]    [Pg.4305]    [Pg.161]    [Pg.58]    [Pg.117]   
See also in sourсe #XX -- [ Pg.7 , Pg.67 ]




SEARCH



Acetylene and Allene Complexes: Their Implication in Homogeneous Catalysis

Anthony O. King, Robert D. Larsen, and Ei-ichi Negishi 2 Palladium-Catalyzed Homogeneous Hydrogenation

Binding and Reactive Sites in Metal Cluster Catalysts Homogeneous-Heterogeneous Bridges

Catalysis and Inhibition in Homogeneous Systems

Characterization of Mixing and Segregation in Homogeneous Flow Systems

Chemical and Structural Homogeneity

Click Chemistry and Homogeneous Catalysis

Coating and homogeneity

Comparison of Homogeneous and Heterogeneous Catalysis

Comparison of homogeneous and heterogeneous conditions

Comparisons between reactivities of corresponding electrochemical and homogeneous redox processes

Convergence and accuracy of homogeneous conservative schemes

Copolymers and Homogeneous Localization

Correspondence between homogeneous and heterogeneous reactions

Cyclic Voltammetry Coupled Homogeneous Kinetics and Adsorption

Diffusion and Pseudo-Homogeneous Chemical Reactions in Isothermal Catalytic Pellets

Diffusion and homogenization

Dimensional Homogeneity and Dimensionless Quantities

Double electrodes and homogeneous kinetics

Electrochemical and homogeneous

External Appearance, Homogeneity, Skew and Waviness

Field Homogeneity and Spin Echo

Flux homogeneity, stability, and reproducibility

Fundamental and practical differences with homogeneous reactions

Grinding and Homogenization

HOMOGENEOUS DECOMPOSITION OF METAL ALKYLS AND ARYLS

Heterogeneity and homogeneity

Heterogenizing Homogeneous Catalysts and Their Use in a Continuous Flow Reactor

High-Shear Homogenization and Ultrasound

Homogeneity Distribution in Size and Shape

Homogeneity Range and Preparation

Homogeneity and Stability Tests

Homogeneity and concentration ranges

Homogeneous Algebraic Equations and the Characteristic-Value Problem

Homogeneous Catalysis and the Role of Multiphase Operations

Homogeneous Catalysis: Mechanisms and Industrial Applications, Second Edition

Homogeneous Catalysts and Ketone Hydrogenation

Homogeneous Catalytic Hydrogenolysis and Hydrodesulfurization of Thiophenes

Homogeneous Electron Gas and Simple Metals

Homogeneous Elementary Reactions in the Atmosphere and Rate Constants

Homogeneous Hydrogenation and Isomerization

Homogeneous Impedance and Admittance

Homogeneous Nucleation and Fractionated Crystallization

Homogeneous Nucleation and Fractionated Crystallization in Block Copolymer Microdomains

Homogeneous acid-base equilibria and acidity scales in ionic melts

Homogeneous and Anisotropic Particles

Homogeneous and Chiral Particles

Homogeneous and Enzyme Catalysis in a Single-Phase System

Homogeneous and Heterogeneous Binding

Homogeneous and Heterogeneous Mixtures

Homogeneous and Heterogeneous Polymerizations

Homogeneous and Informative

Homogeneous and Isotropic Particles

Homogeneous and Microheterogeneous Photochemical Systems

Homogeneous and Wall-catalyzed Reactions

Homogeneous and heterogeneous

Homogeneous and heterogeneous catalysi

Homogeneous and heterogeneous catalysis

Homogeneous and heterogeneous processes

Homogeneous and heterogeneous reactions

Homogeneous and heterogeneous reactors

Homogeneous and inhomogeneous

Homogeneous and inhomogeneous broadening

Homogeneous and inhomogeneous broadening. Red-edge effects

Homogeneous and inhomogeneous lines

Homogeneous catalysis alkene (olefin) and alkyne metathesis

Homogeneous hydrogenation of olefins and acetylenes

Homogeneous nucleation and interfacial free energies

Homogeneous reactions, and

Homogeneous systems from interstellar space to planetary atmospheres and primitive soup models

Homogeneous, Axisymmetric and Nonaxisymmetric Particles

Homogeneous, Heterogeneous, and Biocatalysis

Homogenization Analysis and Permeability of Porous Media

Homogenization Analysis and Seepage Problem of Porous Media

Homogenization and Blending

Homogenization and Bottling

Homogenization and Subcellular Fractionation

Homogenous catalysts, and

Inequalities, Homogeneous Functions, and Scaling

Iridium N-Heterocyclic Carbene Complexes and Their Application as Homogeneous Catalysts

Material, homogeneous and

Mixing and homogeneity

Mixing and homogenization

Molecular Dynamics Simulation and Homogenization Analysis

Morphology, perfection, and homogeneity

NMR Spectroscopy and Homogeneous Catalysis

Nature of Homogeneous and Catalytic Reactors

New Chemical Feedstocks for Homogeneous Catalysis and Renewable Resources

Nucleation, homogeneous and

Nucleation, homogeneous and heterogeneous

One- and two-region homogeneous

Organometallic reactions and homogeneous catalysis

Palladium-Catalyzed Homogeneous Hydrogenation with Dihydrogen and Related Hydrogen Transfer Reactions

Pasteurization and homogenization

Perfection and homogeneity of single crystals

Phase homogeneity and spinline stability

Plastification and Homogenizing Sections

Porous-Material-Based Nanoreactors a Bridge between Homogeneous and Heterogeneous Catalysis

Possible Correlations between Homogeneous and Heterogeneous Catalysis

Probe Cleaners and Homogenizers

Purity and Homogeneity Assessment

Roundhill, D. M., Organotransition-Metal Chemistry and Homogeneous Catalysis in Aqueous Solution

Roundhill, D. M., Organotransition-Metal Chemistry and Homogeneous atalysis in Aqueous Solution

Sampling and homogenization

Stereochemistry of Homogeneous Catalysts. Anti-Lock and Key Concept

Supramolecular Construction of Chelating Bidentate Ligand Libraries through Hydrogen Bonding Concept and Applications in Homogeneous Metal Complex Catalysis

Synthesis, Structure and Properties of Homogeneous BC4N Nanotubes

The Importance of Protein Purity and Homogeneity

Type A2 - Immobilized Homogeneous Catalysts and Metal Nanoparticles

© 2024 chempedia.info