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Surfactants Development

CINLEVEL PAN is a cationic surfactant developed to give maximum migration and leveling of cationic dyes in the dyeing of acrylic fibers. [Pg.601]

Among all surfactants developed for experiments on solubilization of biomolecules into reversed micelles, only two have, up to now, received the greatest attention to achieve studies on extraction. [Pg.89]

All surfactants develop an antistatic activity. Their efficacy relies both on their ionic character and their capacity to bind water [23], However, the most efficient antistatic agents are cationic softeners, because of their high affinity for fabrics [20], Moreover they also reduce the generation of static electricity by lubricating fibers and reducing interfiber friction [10]. [Pg.545]

Many of the EOR protocol sequences that have been used to date for low surfactant concentrations use a surfactant slug formulated with some polymer to improve its sweep efficiency [109, 138]. Taking this into account and considering the new polymer and surfactant developments, a future surfactant slug would have to be formulated with the newpolymers and surfactants. Such a slug would provide the sites (some polymer segments)... [Pg.324]

Steroids accelerate lung maturation, resulting in fetal surfactant development. [Pg.177]

This is the scientific rationale for administering corticosteroids. They are administered to a client who is in preterm labor because they accelerate lung maturation, resulting in surfactant development in the fetus. [Pg.191]

Physicochemical characterisation was characterised of self-assembled nanoparticles based on glycol chitosan-bearing 5p-cholanic acid and their surfactant activity . Fluorescence spectroscopy and pulsed field gradient NMR (PFG-NMR) revealed information concerning the polydispersity of micelle polymers - chiral polymeric surfactants developed over the past decade for use as chiral selectors in the analytical separation of enantiomers . The authors suggest that polydispersity is a crucial factor in understanding the chiral interactions of these species. [Pg.407]

Great emphasis has been placed on the fact that viscosity and rheological behavior are a function of the effective volume fraction. Solvation is another mechanism that alters ( ), and it occurs when a thick adsorbed layer of continuou,s phase or surfactant develops on the surface of particles. In this sense, may be estimated in two ways. In the first. [Pg.595]

K. D. Klein, W. Knott, G. Koemer, Silicone Surfactants — Development of Hydrolytically Stable Wetting Agents in Organosilicon Chemistry II From Molecules to Materials (Eds. N. Auner, J. Weis), VCH, Weinheim, 1996. [Pg.689]

Examples of how this variety of structural parameters affects the development of silicone surfactants especially for liquid carbon dioxide blown foams, are many [39,40,41, 42] and this latest drive in surfactant development provides good examples of the important performance issues and how they can be addressed. [Pg.100]

Though with lower impact on the main physicochemical properties, the regiochemistry can also influence the behaviour of the products (Fig. 2). In keeping with the interesting example of sucrose esters, which are historical biobased surfactants developed in the middle of the 20 century and used as food or cosmetic emulsifiers, it was found that... [Pg.66]

A nonionic surfactant developed primarily for use in agricultural pesticides. This surfactant is an EPA compliant version of SURFYNOL TG surfactant. It is used as a low foaming agent in wettable powders and liquid concentrates and as a wetting agent for rapid dispersion of concentrates in water. [Pg.3]

Unique specialty surfactant developed to solubilize and disperse heavy greases and oils. Uses include automotive engine degreasers, metal cleaners, oil spill cleanups, and heavy duty emulsification. Excellent emulsifier for agricultural formulations. [Pg.70]

Concentrated surfactant developed for systems requiring high activity. Uses Include shampoo concentrates, liquid or powder bubble baths and cosmetic cleansers. Exceptional foamer, dispersant and wetting agent. [Pg.127]

SUPRA WET D-4 Is a fast-wetting, anionic surfactant developed specifically for nylon fibers. This product also has excellent emulsifying and dispersing characteristics. SUPRA-WET D-4 is compatible with other nonionic and anionic surfactants. [Pg.388]

Karsa, D.R. (1990) Innovative approaches to surfactant development in D.R.Karsa (ed.). Industrial Applications of Surfactants II, Royal Society of Chemistry, Great Britain, pp.1-21. [Pg.614]

Uses Surfactant developed as internal additive in mfg. of low-dens, ammonium nitrate prills... [Pg.1548]

Surfactants are required in a wide range of our daily life for diverse purposes. In many of these fields of application, the surfactants are used in interaction with water. The surfactant develops its beneficial properties in water. After use, however. [Pg.181]

Motomizu, S., M. Oshima, Y. Hosoi, Spectrophotometric determination of cationic and anionic surfactants with anionic dyes in the presence of nonionic surfactants development of batch and flow injection methods, Mikrochim. Acta, 1992,106,61-1A. [Pg.536]


See other pages where Surfactants Development is mentioned: [Pg.157]    [Pg.720]    [Pg.96]    [Pg.136]    [Pg.84]    [Pg.122]    [Pg.101]    [Pg.101]    [Pg.154]    [Pg.11]    [Pg.227]    [Pg.458]    [Pg.98]    [Pg.93]    [Pg.124]    [Pg.654]    [Pg.245]   
See also in sourсe #XX -- [ Pg.101 ]




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