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Palm oil, fatty acids

A soap-based powder can be produced in combination with ester sulfonates. Thirty-five percent of a sodium soap mixture (5% lauric acid, 5% myristic acid, 52% palmitic acid, 21% stearic acid, 12% oleic acid, and 5% linoleic acid) is mixed with 15% sodium a-sulfo palm oil fatty acid methyl ester, 3% lauric acid ethoxylate, 5% sodium silicate, 17% sodium carbonate, 20% Na2S04- 10H2O, and 5% water [79]. [Pg.488]

A heavy granular detergent can be produced by mixing a detergent composition with powdered or granular sodium carbonate. A typical detergent comprises 8% sodium a-sulfo hardened palm oil fatty acid methyl ester, 2% di-Na a-sulfopalmitate, 10% Na coconut oil alcohol sulfate, 2% polyethylene... [Pg.488]

For an enzyme-containing detergent the enzyme is added to a detergent composition with esters and disalts of a-sulfo fatty acids. The detergent granular comprises 7 % sodium a-sulfo hardened palm oil fatty acid methyl ester, 5% disodium salt of a-sulfo hardened palm oil fatty acid, 10% sodium a-olefin (C14 18) sulfonate, 10% zeolite, 5% sodium carbonate, 5% water, and 55% sodium sulfate [82]. [Pg.489]

A detergent, imparting better flexibility to cotton cloth is produced by adding 1% sodium a-sulfo hardened tallow fatty acid methyl ester and 9% disodium a-sulfo hardened palm oil fatty acid to a mixture of 5% sodium n-dodecyl-benzenesulfonate, 5% a-C16-olefmsulfonate, 3% dimethyldistearylammonium chloride, 15% zeolite, 10% sodium silicate, 10% sodium carbonate, 2% soap, 35% Na2S04-7H20, and 5% water [84],... [Pg.489]

The effect of palm oil fatty acid additive (POEA) on curing characteristics and vulcanizate properties of sdica-filled NR compounds was studied by Ismail [30]. The incorporation of POEA improved the cure rate and state of cure of the compounds. Compared to the control, the incorporation of POEA not only enhanced the vulcanizate properties but also improved the reversion resistance of the silica-filled NR compounds. [Pg.1033]

Calcium soaps of palm oil fatty acids are used widely as an energy supplement. With a content of 45 to 50% Ci6 o, these calcium soaps increase palmitic acid in milk fat compared with oilseeds (Table 2.2). Whole oilseeds (cottonseed, canola, soybeans) also are used widely as energy supplements in dairy diets. All except cottonseed oil (25% Ci6 o) contain predominantly Qx fatty acids. When fed whole or crushed, the oil tends to be released slowly,... [Pg.75]

Percent by weight of fatty acids reported. Saturated fatty acids (Cl 4 0, Cl 6 0, Cl 8 0). Unsaturated fatty acids (Cl8 1, Cl8 2, Cl8 3). Calcium salt of palm oil fatty acids. Hydrogenated tallow. [Pg.2353]

Palm oil fatty acids, sodium salts 2850 66357-59-3 Ranitidine hydrochloride 3274... [Pg.750]

Methyl esters of soya, rapeseed and palm oil fatty acids used as biodiesel (Chapters 7 and 8) are preferentially manufactured by transesterification." The acid catalyzed esterification and the alcoholysis of triacylglycerides apply also for the manufacture of higher alcohol monoesters as well as for fatty acid polyol esters. Due to their oily consistency and to their solubilizing properties fatty acid esters of low Mw alcohols are components in odorous substances like perfumes, and cosmetic and drug formulations such as ointments, creams or lotions. [Pg.218]

Grummer, R. R. (1988). Influence of prilled fat and calcium salt of palm oil fatty acids on ruminal fermentation and nutrient digestibility. Journal of Dairy Science, 71,117-123. [Pg.97]

Yean et al. reported the use of different diorgano (n-butyl, n-octyl) tin dialkoxides (n-butoxide, n-pentoxide, n-hexoxide, n-heptoxide, n-octox-ide, n-decoxide, phenoxide, substituted phenoxide) for transesterification of palm oil fatty acids (reaction 7.13) which could be attractive in production of biodiesel (fatty acid esters) [62]. [Pg.260]

These derivatives find wide application in many industries as biocides, sanitizing agents for algae control in water treatment, ore flotation agents in mining, effective corrosion inhibitors, and lubricants in drilling and formulation. Fatty amines derived from tallow or palm oil fatty acid fractions are widely used in the production of fabric softeners. [Pg.479]

Chem. Descrip. Partially hydrogenated palm oil fatty acids Uses Emulsifier for emulsion polymerization of SBR Properties Acid no. 205-210 iodine no. 3843 sapon. no. 206-211 Prifac 5905 [Ctoda Inc]... [Pg.882]

Hydrogenated palm oil fatty acid. See Hydrogenated palm oil acid Hydrogenated palm oil succinylated glyceride... [Pg.2153]

Palm oil acid amide, N-(2-hydroxyethyl)-. See Palmamide MEA Palm oil acid amide, N-(2-hydroxypropyl)-. See Palmamide MIPA Palm oil acid monoethanolamide. See Palmamide MEA Palm oil acid monoisopropanolamide. See Palmamide MIPA Palm oil fatty acids, sodium salts. See Sodium palmate Palm oil glyceride. See Palm glyceride... [Pg.2266]

Synonyms Fatty acids, palm oil, sodium salts Palm oil fatty acids, sodium salts Definition Sodium salt of the acids derived from palm oil Uses Surfactant, emulsifier, vise, control agent in cosmetics Manuf/Distrib. Nanjing Chemlin Sodium palmitate... [Pg.2451]

P. is used predominantly in food. Refined oil and palm stearin are common in the manufacture of margarine and shortenings, while the liquid palm olein is used in frying fats and shortenings. Technical palm oil fatty acids, obtained by - hydrolysis, contain 50% palmitic and 40% oleic acid. Technical uses are in - soap production and in metal tempering (- metal processing). [Pg.212]

COMPARISON EFFECTS OF PALM OIL FATTY ACID AND STEARIC ACID ON DYNAMIC PROPERTIES, CURING CHARACTERISTICS AND MECHANICAL PROPERTIES OF CARBON BLACK FILLED EPOXIDIZED NATURAL RUBBER COMPOUNDS Ismail H Kamal S K Mark S E Universiti Sains Malaysia... [Pg.54]

The effects of palm oil fatty acid and stearic acid on dynamic properties, curing characteristics and mechanical properties of carbon black-filled epoxidised NR compounds were studied. It was found that the scorch time and cure time increased with increasing... [Pg.54]

NEW RUBBER INGREDIENT BASED ON PALM OIL FATTY ACID... [Pg.87]

The potential use of palm oil fatty acid additive (POFA) as a new rubber ingredient in carbon black-filled NR compounds is examined. It is found that the cure time (t90) and scorch time decrease with increasing POFA concentration. The Mooney viscosity of the rubber compounds also decreases with increasing POFA concentration. The mechanical properties of the carbon black-filled NR compounds are enhanced by the addition of POFA, especially at a concentration of 2 phr. Results of the swelling measurement and scanning electron microscopy indicate that POFA has some effect on crosslink density and also improved filler dispersion. 9 refs. [Pg.87]

Polymer Plastics Technology and Engineering 37, No.4, Nov.l998,p.483-94 PALM OIL FATTY ACID AS AN ACTIVATOR IN NATURAL RUBBER GUM COMPOUNDS... [Pg.92]

The potential of palm oil fatty acid as an activator in NR gum compounds is studied. The curing characteristics and mechanical properties of NR gum compounds with palm oil fatty acid as an activator are... [Pg.92]

Results obtained from studies of the above showed that the scorch time and t90 increased with increasing concentration of palm oil fatty acid, while the maximum torque-minimum torque passed through a maximum value and decreased with acid concentration. Mechanical properties such as tensile modulus, hardness, TS and tear... [Pg.105]


See other pages where Palm oil, fatty acids is mentioned: [Pg.491]    [Pg.285]    [Pg.44]    [Pg.2034]    [Pg.3032]    [Pg.79]    [Pg.1355]    [Pg.467]    [Pg.714]    [Pg.1044]    [Pg.192]    [Pg.162]    [Pg.455]    [Pg.456]    [Pg.458]    [Pg.2153]    [Pg.212]    [Pg.92]    [Pg.105]    [Pg.106]   
See also in sourсe #XX -- [ Pg.196 ]




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