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Stannous oleate

SnC2C>4 = stannous oxalate SnC g = stannous tartrate Sn (C 8H33°2)2 = stannous oleate ... [Pg.35]

Tin-based salts such as stannous oleate or a dibutyl tin salt (Dibutyl tin dilaurate DBTL) will activate the OH-NCO reactions. This group speeds up the overall reaction rate as well. They also even out the reactivities of low-and high-molecular-weight polyols. [Pg.36]

Organotin compounds are effective catalysts for the isocyanate-hydroxyl reaction. Tin catalysts have a slight odour, and low amounts are required to achieve a high reaction rate. Examples of organotin catalysts are stannous octoate, stannous oleate, dibutyltin dilaurate and dibutyltin di-2-ethylhexoate. They are often used in conjunction with small concentrations of antioxidants such as tertiary-butyl catechol resorcinol and tartaric acid. [Pg.49]

Carbamates of tertiary alcohols. The reaction of tertiary alcohols with isocyanates catalyzed by base usually results in dehydration as well as carbamate formation. However, carbamates of tertiary alcohols can be obtained in yields as high as 90% by use of organotin catalysts (stannous octoate, stannous oleate, dibutyltin dilaurate) and an amine. [Pg.177]

Octadecenoic acid, tetraester with decagiyceroi. See Poiyglyceryl-10 tetraoleate (Z)-9-Octadecenoic acid, tin (2+) salt. See Stannous oleate... [Pg.2918]

Lithium hydroxide Methanesulfonic acid Sodium acetate anhydrous Stannous oleate Stannous oxalate... [Pg.4940]

Stannous oleate Stearyl alcohol Styrene/MA copolymer Terpene resin Tetrahydrofuran Titanium dioxide Toluene Tosylamide/formaldehyde resin Triethylene glycol Urea-formaldehyde resin Vinylidene chloride/acrylonitrile copolymer Vinylidene chloride/methyl acrylate copolymer Vinylidene chloride/vinyl chloride copolymer Zinc laurate cellophane, food-contact Aluminum stearates Ammonium tallate Hexamethoxymethylmelamine Nonoxynol-55 Nonoxynol-70... [Pg.4949]

Sodium hypochlorite Sodium laurate Sodium lauryl sulfate Sodium lignosulfonate Sodium methyl naphthalenesulfonate Sodium persulfate Sodium polynaphthalene sulfonate Sodium tallow sulfate Stannous oleate Stearoyl lactylic acid Styrene/butadiene polymer Styrene/methyl methacrylate copolymer Sulfated butyl oleate Sulfated castor oil Sulfated rapeseed oil... [Pg.5505]

Akrochem Accelerator CRA 3-Methyl-thiazolidinethione-2 Vulkacit CRV/LG 1910-42-5 Paraquat dichloride 1912-24-9 Atrazine 1912-26-1 Trietazine 1912-84-1 Stannous oleate 1918-00-9 Dicamba 1918-02-1 Picloram 1918-16-7 Propachlor 1921-70-6 Pristane Robuoy 1929-30-2... [Pg.6195]

Stannous oleate C36H66O12 Octoxynol-11 C36H66O13 Sucrose dilaurate C36H66O110 Dodoxynol-9 C36H68O2 Oleyl oleate Stearyl linoleate C36H68O4... [Pg.7129]

Korthlx H, Korthix H-NF, Korthix. See Bentonite Kosmos 16. See Stannous octoate Kosmos 19. See Dibutyltin dilaurate Kosmos 23. See Dioctyltin mercaptide Kosmos 29. See Stannous octoate Kosol. See Amylopectin Kosteran-l/1. See Sorbitan isostearate Kosteran-UI. See Sorbitan laurate Kosteran-0/1. See Sorbitan oleate Kosteran-0/3. See Sorbitan trioleate Kosteran-P/1 G. See Sorbitan palmitate Kosteran-S/1 G. See Sorbitan stearate Kosteran-S/3 G. See Sorbitan tristearate Kosteran-SQ/0. See Sorbitan sesquioleate Koster Keunen Beeswax A02535. See Oxidized beeswax... [Pg.2309]

Dibutylammonium oleate Diethylamine Magnesium carbonate Magnesium oxide Stannous chloride anhydrous Tall oil acid Tetrachloro-p-benzoquinone activator, rubber compounding Tallow acid Zinc diacrylate Zinc laurate activator, SBR... [Pg.4790]

Sodium tallowate Sodium tallow sulfate Sodium thiocyanate Sodium trideceth sulfate Sodium tridecylbenzene sulfonate Sodium xylenesulfonate Sorbitan oleate Sorbitan stearate Soy acid Soyamide DEA Soybean (Glycine soja) oil Stannous stearate Starch Stearalkonium chloride Stearamide Stearamide DEA Stearic acid Stearyl alcohol Strontium salicylate Styrene/butadlene polymer... [Pg.4800]

Ethylmorpholene stannous octoate - 359 Ethyl nitrate - 34 Ethyl oleate - 118, 129 Ethyl oxalate - 359, 813, 828, 865 Ethyl parathion 193... [Pg.925]

The use of stannous salts of carboxylic acids [Sn(OOCR)2, where RCOO = 2-ethylhexoate, -octoate, laurate, palmitate, stearate, and oleate] as catalysts for the preparation of polyesters has been reported to give colorless products with low acid numbers. Stannous oxide gives the same results but there is a short induction period before the catalyst... [Pg.85]


See other pages where Stannous oleate is mentioned: [Pg.925]    [Pg.925]    [Pg.1173]    [Pg.4179]    [Pg.4784]    [Pg.5376]    [Pg.114]    [Pg.252]    [Pg.925]    [Pg.925]    [Pg.1173]    [Pg.4179]    [Pg.4784]    [Pg.5376]    [Pg.114]    [Pg.252]   
See also in sourсe #XX -- [ Pg.346 ]




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