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Polyoxyethylene nonyl phenol

Figure 10. Even complex phase equilibria follow the general trends observed for simpler systems in the PIT range (cf. Figure 9). Emulsifiers are polyoxyethylene nonyl phenol ethers. Figure 10. Even complex phase equilibria follow the general trends observed for simpler systems in the PIT range (cf. Figure 9). Emulsifiers are polyoxyethylene nonyl phenol ethers.
Polyacrylamide Polyoxyethylene nonyl phenol ether Polyvinyl sulfonic acid Sulfonated benzene sodium salt Naphthalene sulfonic acid Tallow soap Isobutylene Maleic anhydride Sodium humate (extracted from brown coal) Butyric acid lauryl ethylene diamine salt ... [Pg.499]

The exclusion chromatography of a series of nonionic surfactants (polyoxyethylene nonyl phenols) with number of ethyleneoxide groups 10(NPE. q), 13(NPE j) and 18(NPE g) was studied [50] by using Sepha-dex gel columns (5 100 cm Flow rate = 30 ml/h Void volume = ca. [Pg.424]

In addition to electrostatic colloid stabilization generated by anionic surfactants, liquid dispersions are also made from nonionic surfactants. Stabilization of the emulsion is achieved by electrosteric stabilization or by pure steric stabilization (2,13). Polyoxyethylene dodecyl ethers, polyoxyethylene nonyl phenyl ethers, and polyoxyethylene nonyl phenol ethers are a few surfactants typically used in emulsion polymerization with nonionic surfactants (14-16). Non-ionic emulsion polymerizations are characterized by lower critical micelle concentration than their ionic counterparts. Thus, the emulsion particle sizes are generally much larger than in the ionic polymerizations. The mechanism of radical entry and exit in polymeric surfactant stabilizer systems are different than in anionic systems. With water-soluble initiators, the kinetics depends on initiator concentration. [Pg.1236]

Figure I. Difference in the phase region of the lamellar liquid crystal (black) when an aromatic hydrocarbon (left) is replaced by an aliphatic one (right) demonstrates the sensitivity of the lyotropic liquid crystalline structure to weak intermodular forces. The emulsifier is a polyoxyethylene (9) nonyl phenol ether. Figure I. Difference in the phase region of the lamellar liquid crystal (black) when an aromatic hydrocarbon (left) is replaced by an aliphatic one (right) demonstrates the sensitivity of the lyotropic liquid crystalline structure to weak intermodular forces. The emulsifier is a polyoxyethylene (9) nonyl phenol ether.
Figure 2. Solubilization of three hydrocarbons by polyoxyethylene (9.2) nonyl phenol ether in water as function of temperature (29)... Figure 2. Solubilization of three hydrocarbons by polyoxyethylene (9.2) nonyl phenol ether in water as function of temperature (29)...
Figure 2. Relationship between the number of moles of ethylene oxide in octyl- or nonyl-phenol polyoxyethylene glycol ether surfactant molecules and the toxicity index of these surfactants in mixtures with (a) paraquat and (b) dalapon on corn plants. Figure 2. Relationship between the number of moles of ethylene oxide in octyl- or nonyl-phenol polyoxyethylene glycol ether surfactant molecules and the toxicity index of these surfactants in mixtures with (a) paraquat and (b) dalapon on corn plants.
Fig. 9.3. Macroemulsion stability diagram of cyclohexane-water-polyoxyethylene (9.7) nonyl phenol ether system. Fig. 9.3. Macroemulsion stability diagram of cyclohexane-water-polyoxyethylene (9.7) nonyl phenol ether system.
Figure 25 (a) Experimental curve (from Ref. 374) showing the decrease of the thickness, h, of an emulsion film with time. The film is formed from 33.5 mAf aqueous solution of sodiiun nonyl-phenol polyoxyethylene-25 sulfate with 0.1 M NaCl added. The steps of the curve represent metastable states corresponding to a different number of micelle layers inside the film, (b) Sketch of a film containing two micelle layers. [Pg.368]

The adsorption of non-ionic surfactants (polyoxyethylene glycol nonyl-phenols) is decreased by water-structure breaking anions while structure making anions increase it [73]. [Pg.26]

Uses Surfactant degreasers, compounds for dry-cleaning, liq. water-based waxes for ceramic floors and floor covering Trade Names Ultranex NP 40 Nonylphenol ethoxylates. See Nonoxynol Nonyl phenol ethoxy (4) sulfate. See Nonoxynol-4 sulfate Nonyl phenol ethoxy (10) sulfate. See Nonoxynol-10 sulfate Nonyl phenol (mixed isomers). See Nonylphenol Nonylphenol polyethylene glycol ether, 10 EO. See Nonoxynol-10 Nonylphenol polyethylene glycol ether, 15 EO. See Nonoxynol-15 Nonylphenol polyethylene glycol ether, 20 EO. See Nonoxynol-20 Nonylphenol, polyoxyethylene ether. See Nonoxynol 2-(Nonylphenoxy) ethanol. See Nonoxynol-1 2-[2-[2-(Nonylphenoxy)ethoxy]ethoxy]ethanol. See Nonoxynol-3 23-(Nonylphenoxy)-3,6,9,12,15,18,21-heptaoxatricosan-1-ol. See Nonoxynol-8... [Pg.2239]

Polyoxyethylene(8)dodecanol Polyoxyethylene(23 )dodecanol Polyoxyethylene(9.5 )-t-octy 1-phenol Polyoxyethylene(7.5 )nonyl-phenyl ether Octylglucoside... [Pg.289]

CAS 9016-45-9 (generic) 37205-87-1 (generic) 68412-54-4 (generic) Synonyms Glycols, polyethylene, mono (nonylphenyl) ether Nonylphenol ethoxylates Nonylphenol, polyoxyethylene ether Nonyl phenyl polyethylene glycol Nonyl phenyl polyethylene glycol ether Polyethylene glycol nonyl phenyl ether Polyoxyethylene nonylphenol Classificatbn Ethoxylated alkyl phenol Formula (CjH O), CisHj O... [Pg.1219]


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