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Aromatic Based Glycol Ether

Molecular weight Boiling point, °C Flash point TCC)°F Evaporation rate Bu Ac = 1.0 Specific gravity 25°/2S C Pounds per gallon, 25°C Viscosity, cs, 25°C Vapor pressure 25°C (mm Hg) Surface tension (dynes/cm) Dilution ratio Toluene Naphtha [Pg.536]

Solvent constants Solubility parameter Hydrogen bonding Dipole moment (Debye) Solubility in water ml/100 ml [Pg.536]


OALPADA Aromatic-Based Glycol Ether C,Hs0C2H40H Ethanol. 2-phenoi9- 122-99-6... [Pg.500]

Aromatic based glycol ether DOWANOL DALPAD A 245.6... [Pg.565]

Lundgren et al. (1999) evaluated the field exposures of painters to a low-VOC and a conventional water-based paints in Sweden. They found that exposures to TVOC, 1,2-propylene glycol, acetaldehyde and ammonia were 3-12 times lower for the low-VOC paint, but exposure to formaldehyde (160-180 pgm ) was 3-4 times higher. Brown (2000) reported that emissions from four Australian VOC-free paints included typical aromatic VOCs, dibutyl ether, ethylene glycol butyl ether, diethylene glycol butyl ether and Texanol , though at order of magnitude reduced levels c.f. conventional water-based paints, as well as formaldehyde and benzaldehyde. [Pg.388]

Most paints used in the household today are water-based products. Significant quantities of paints, primers, and brush cleaners are washed down the drain during cleanup following painting. Water-based paints contain numerous toxic chemicals. These include pigments (many with heavy metals), biocides, glycol ethers, binders, amines, acrylate, and other polymer monomers, surfactants, aliphatic and aromatic hydrocarbons alcohols, ketones, and esters. I36,37 ... [Pg.87]

Chem. Descrip. Dinonyl naphthalene disulfonic acid in isobutyl alcohol Uses Catalyst for anodic electroplating systems improves corrosion resist. in solv.-based and waterborne systems also rec. for air atomized spray, dipping enamels, and water reducible systems Properties Gardner 10 max. color sol. in alcohols, ketones, glycol ethers, esters, and aromatic hydrocarbons sp.gr. 0.93 dens. 7.72 Ib/gal add no. 80-90 flash pf. (Seta) 93 F 40% NV Cycat 600 [Cytec Ind.]... [Pg.224]

Features High UV resist. general purpose solv.-based Properties Wh. friable granules sol. in aromatic soivs., aliphatic blends, chlorinated HC, esters, ketones, glycol ethers sp.gr. 1.06 dens. 8.82 Ib/gal soften, pt. (R B) 135-145 C ref. index 1.529 hardness (Sward) 36 (24 h) dissip. factor 0.043 (100 Hz) dielec, const. 2.50 (100 Hz) vol. resist. 5.42 x 10" ohm-cm Pliolite AC-L [Goodyear]... [Pg.637]

Chem. Descrip. Isobutyl methacrylate-based polymer CAS 97-86-9 EINECS/ELINCS 202-613-0 Uses Heat-sealing raw material for pkg. of foods and pharmaceuticals binder for mfg. of plastic coatings, aerosol paints, primers, and printing inks prod, of petrol.-sol., weather-resist., lightfast protective lacquers Properties Bead in powd. form sol. in aliphatic hydrocarbons, esters, ketones, aromatics, glycol ethers, glycol ether acetates, chlorinated hydrocarbons insol. in alcohols m.w. 200,000 dens. 1.03 q/cm acid no. < 1... [Pg.702]

Uses Emollient, solvent, emulsion stabilizer for cosmetics, topical pharmaceuticals solubilizer, coupling agent for perfumes, colors, flavors, sunscreen compds. solvent for sprayed org. pesticides plasticizer and stabilizer in vinyl copolymers made from PVAc and PVC defoamer in PVAc emulsions Features Stable base produces sprayable oils which spread well, have good adherence, and are not readily removed by rainfall Properties Yel. cl. liq., mild odor sol. in most org. soivs. such as alcohols, ketones, esters, glycol ethers, veg. oil, min. oil, aliphatic, aromatic, chlorinated hydrocarbons disp. in glycols, triols, polyols m.w. 258 (theorel) sp.gr. 0.905 0.01 dens. 7.45 Ib/gal f.p. 10 C acid no. 5 max. iodine no. 1 max. sapon no. 225-240 flash pt. (OC) 160 C min. pH 7.0 (10% disp.)... [Pg.982]

Reactive (unsaturated) epoxy resins (qv) are reaction products of multiple glycidyl ethers of phenoHc base polymer substrates with methacrylic, acryhc, or fumaric acids. Reactive (unsaturated) polyester resins are reaction products of glycols and diacids (aromatic, aUphatic, unsaturated) esterified with acryhc or methacrylic acids (see POLYESTERS,unsaturated). Reactive polyether resins are typically poly(ethylene glycol (600) dimethacrylate) or poly(ethylene glycol (400) diacrylate) (see PoLYETPiERs). [Pg.428]

Abstract The chemical nature and technology of the main synthetic lubricant base fluids is described, covering polyalphaolefins, alkylated aromatics, gas-to-liquid (GTL) base fluids, polybutenes, aliphatic diesters, polyolesters, polyalkylene glycols or PAGs and phosphate esters. Other synthetic lubricant base oils such as the silicones, borate esters, perfluoroethers and polyphenylene ethers are considered to have restricted applications due to either high cost or performance limitations and are not considered here. Each of the main synthetic base fluids is described for their chemical and physical properties, manufacture and production, their chemistry, key properties, applications and their implications when used in the environment. [Pg.35]


See other pages where Aromatic Based Glycol Ether is mentioned: [Pg.536]    [Pg.278]    [Pg.594]    [Pg.536]    [Pg.278]    [Pg.594]    [Pg.630]    [Pg.75]    [Pg.466]    [Pg.264]    [Pg.432]    [Pg.163]    [Pg.702]    [Pg.164]    [Pg.164]    [Pg.172]    [Pg.180]    [Pg.1253]    [Pg.902]    [Pg.254]    [Pg.873]    [Pg.191]    [Pg.200]    [Pg.77]    [Pg.678]    [Pg.225]    [Pg.192]    [Pg.440]    [Pg.472]    [Pg.38]    [Pg.476]    [Pg.1435]    [Pg.1645]    [Pg.426]    [Pg.252]    [Pg.41]    [Pg.26]    [Pg.124]    [Pg.964]    [Pg.514]    [Pg.461]    [Pg.250]    [Pg.48]   


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