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Polyricinoleate

E 475 Polyglycerol esters of fatty acids E 476 Polyglycerol polyricinoleate E 477 Propane-1,2-diol esters of fatty acids E 479b Thermally oxidised soya bean oil interacted with mono- and diglycerides of fatty acids E 481 Sodium stearoyl-2-lactylate... [Pg.38]

Electrostatic and non-electrostatic biopolymer complexes can also be used as effective steric stabilizers of double (multiple) emulsions. In this type of emulsion, the droplets of one liquid are dispersed within larger droplets of a second immiscible liquid (the dispersion medium for the smaller droplets of the first liquid). In practice, it is found that the so-called direct water-in-oil-in-water (W/O/W) double emulsions are more common than inverse oil-in-water-in-oil (O/W/O) emulsions (Grigoriev and Miller, 2009). In a specific example, some W/O/W double emulsions with polyglycerol polyricinoleate (PGPR) as the primary emulsifier and WPI-polysaccharide complexes as the secondary emulsifying agent were found to be efficient storage carriers for sustained release of entrapped vitamin Bi (Benichou et al., 2002). [Pg.66]

Katoh et al. [3] prepared w/o emulsions composed of salt solution, polyglycerin polyricinolate (PGPR) at 2%wt and com oil. It has been proven that the disperse-phase flux was increased 100-fold using a hydrophilic membrane pretreated by immersion in the oil phase. This made the membrane emulsification system practical for large-scale production of a w/o emulsion in food application. [Pg.489]

Glycerol Esters of Condensed Castor Oil Fatty Acids Polyglycerol Esters of Interesterified Ricinoleic Acid Polyglycerol Polyricinoleate... [Pg.343]

Polyglycerol Polyricinoleic Acid occurs as a clear, light brown, viscous liquid. It is prepared by esterification of poly-... [Pg.343]

Polyglycerol Polyricinoleic Acid is prepared by esterification of polyglycerol with condensed castor oil fatty acids. The castor oil fatty acids are mainly composed of 80% to 90% ricinoleic acid. It is a clear, light brown, viscous liquid. It is soluble in ether, in hydrocarbons, and in halogenated hydrocarbons. It is insoluble in water and in alcohol. [Pg.38]

Ebata, H., Toshima, K., and Matsumura, S. (2007) Lipase-catalyzed synthesis and curing of high-molecular-weight polyricinoleate. Macromol. Biosci., 7 (6), 798-803. [Pg.124]

Figure 16 Illustration of the structural elements of PGPR. The upper stmcture is that of the polyricinoleate moiety the lower stmcture shows the polyglycerol hackhone. The R in the structure can be either hydrogen, a fatty acid residue, or a polyricinoleate residue. In PGPR at least one of the side chains is polyricinoleate. Figure 16 Illustration of the structural elements of PGPR. The upper stmcture is that of the polyricinoleate moiety the lower stmcture shows the polyglycerol hackhone. The R in the structure can be either hydrogen, a fatty acid residue, or a polyricinoleate residue. In PGPR at least one of the side chains is polyricinoleate.
Chem. Descrip. Polyglycerol polyricinoleate Uses Vise, modifier In foods emulsifier In bakery release sprays flow aid reducing yield value of chocolate or coatings Properties Liq. acid no. 6 max. iodine no. 72-103 sapon. no. 170-180 ... [Pg.214]

Glutaronitrile, 2-hromo-2-(bromomethy ). See Methyidibromo glutaronitrile Glyceran esters of condensed castor oil fatty acfds. See Polyglyceiyl polyricinoleate... [Pg.1127]

Glycerol a-allyl ether. See Glyceryl-1 -allyl ether Glycerol epichlorhydrin. See Epichlorohydrin Glycerol esters of condensed castor oil fatty acids. See Polyglyceryl polyricinoleate... [Pg.1128]

Po glycerol esters of interesterifed ricinoleic acid Polyglycetol esters of polycondensed fatty acids from castor oil. See Polyglyceryl polyricinoleate... [Pg.1298]

Arlypon 4300. See Calcium stearate Arlypon BE. See Polyglyceryl polyricinoleate Arlypon DF. See Tocopherol Arlypon DM. See Polyglyceryl-2 stearate Arlypon EG. See Pentaerythrityl trioleate Arlypon F, Arlypon F-T. See Laureth-2 Arlypon IT 5. See lsotrideceth-5 Arlypon IT 6. See lsotrideceth-6 Arlypon IT 8. See lsotrideceth-8 Arlypon IT 10. See lsotrideceth-10... [Pg.342]

Cithrol PR. See Polyglyceryl-3 polyricinoleate CItmol 316. See tri isocetyl citrate CItmol 320. SeeTrioctyIdodecyl citrate Citracetal. See Citral ethyleneglycol cyclic acetal... [Pg.965]

Cresols. See Cresylic acid m-Cresolsulfonephthalein m-Cresolsulfonphthalein. See m-Cresol purple o-Cresolsulfonphthalein. See Cresol red p-Cresol, 2,2 -thiobis (6-t-butyl-. See 2,2 -Thiobis-(6-t-butyl-4-methylphenol) p-Cresoxyethanol. See Methylphenoxyethanol Greater PR, Greater RT. See Polyglyceryl polyricinoleate... [Pg.1084]


See other pages where Polyricinoleate is mentioned: [Pg.262]    [Pg.269]    [Pg.278]    [Pg.343]    [Pg.343]    [Pg.343]    [Pg.1028]    [Pg.38]    [Pg.38]    [Pg.38]    [Pg.115]    [Pg.2038]    [Pg.811]    [Pg.322]    [Pg.387]    [Pg.1268]    [Pg.1298]    [Pg.138]    [Pg.123]    [Pg.1902]    [Pg.1951]    [Pg.2003]    [Pg.2161]    [Pg.2316]    [Pg.2814]    [Pg.3279]    [Pg.3520]    [Pg.3520]   
See also in sourсe #XX -- [ Pg.91 ]

See also in sourсe #XX -- [ Pg.250 , Pg.254 , Pg.262 , Pg.264 ]




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Polyglycerol - Polyricinoleate (PGPR)

Polyglycerol Polyricinoleic Acid

Polyglycerol polyricinoleate

Polyglycerol polyricinoleate emulsifier

Polyglycerol-polyricinolate

Polyricinoleic acid

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