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Cleaning products

We should therefore conclude that refining will witness a very important evolution, without revolution, but which will affect both the processes and procedures utilized, the objective being to produce clean products in a clean , energy-efficient manner. [Pg.486]

A quantitative analysis for NH3 in several household cleaning products is carried out by titrating with a standard solution of HGl. The titration s progress is followed thermometrically by monitoring the temperature of the titration mixture as a function of the volume of added titrant. Household cleaning products may contain other basic components, such as sodium citrate or sodium carbonate, that will also be titrated by HGl. By comparing titration curves for prepared samples of NH3 to titration curves for the samples, it is possible to determine that portion of the thermometric titration curve due to the neutralization of NH3. [Pg.358]

Cleaning formulations Cleaning products Cleaning solvents Cleanness Clean rooms... [Pg.226]

Only one exception to the clean production of two monomer molecules from the pyrolysis of dimer has been noted. When a-hydroxydi-Zvxyljlene (9) is subjected to the Gorham process, no polymer is formed, and the 16-carbon aldehyde (10) is the principal product in its stead, isolated in greater than 90% yield. This transformation indicates that, at least in this case, the cleavage of dimer proceeds in stepwise fashion rather than by a concerted process in which both methylene—methylene bonds are broken at the same time. This is consistent with the predictions of Woodward and Hoffmann from orbital symmetry considerations for such [6 + 6] cycloreversion reactions in the ground state (5). [Pg.428]

The detergent range alcohols and their derivatives have a wide variety of uses ia consumer and iadustrial products either because of surface-active properties, or as a means of iatroduciag a long chain moiety iato a chemical compound. The major use is as surfactants (qv) ia detergents and cleaning products. Only a small amount of the alcohol is used as-is rather most is used as derivatives such as the poly(oxyethylene) ethers and the sulfated ethers, the alkyl sulfates, and the esters of other acids, eg, phosphoric acid and monocarboxyhc and dicarboxyhc acids. Major use areas are given ia Table 11. [Pg.449]

Chemical Specialties Manufacturers Association 1001 Connecticut Avenue, NW Washington, D.C. 20036 Standard Reference TestingMaterials for insecticides (see Insect control technology), cleaning products, sanitizers, brake fluids, corrosion inhibitors (see Corrosion and corrosion control), antifreezes, poHshes, and floor waxes. [Pg.25]

FiaaHy, a-olefias find their way iato the surfactant and disiafectant market through conversion, first to alkyl dimethyl amine, then to benzyl chloride quats (BAUMAC) and amine oxides. The former are used broadly as disiafectants, often ia combination with cleaning products. The latter is a direct active ia consumer and iadustrial cleaning products. [Pg.442]

Less stable parts of the sludge can be treated by holding in tanks for extended periods of time to allow the weaker emulsion to break and separate a clean product. The mote stable sludges can be broken by mechanical action in filters or centrifuges, by recycle to the furnace for redistillation, or by redistillation in auxiliary units. Chemical attack via oxidation or complexing agents that break the emulsion has also been employed. [Pg.351]

Gleaners. Properties, such as foaming and detergency (qv), make alkanolamines useflil in cleaning formulations. Monoetbanolamine is particularly effective in wax removal formulations because of its ability to penetrate films. Cleanets that involve skin contact use triethanolamine because of its mildness. Derivatives of the amines (49,50) as well as the free alkan olamines (51—53), may be formulated into cleaning products. [Pg.10]

Specialty sulfonic acid-based surfactants make up a rather large portion of surfactant production in the United States. Approximately 136,000 metric tons of specialty sulfonic acid-based surfactants were produced in 1992, which included alpha-olefin sulfonates, sulfobetaines, sulfosuccinates, and alkyl diphenyl ether disulfonates (64). These materials found use in the areas of household cleaning products, cosmetics (qv), toiletries, emulsion polymerization, and agricultural chemical manufacture. [Pg.100]

Ethoxylated andSulfatedAlkylphenols. Because these aLkylphenols degrade less readily than the sulfated alcohol ethoxylates, their anticipated expansion failed to materialize, although by 1965 they were widely used in retail detergent products. Sulfated alkylphenol ethoxylates are used in hospital cleaning products, textile processing, and emulsion polymerization. Sulfated alkyphenol ethoxylates are sold as colorless, odorless aqueous solutions at concentrations of >30%. The presence of ethylene oxide in the molecule increases resistance to hardness ions and reduces skin irritation. Representative commercial sulfated alkylphenol ethoxylates are given in Table 12. [Pg.244]

Total U.S. surfactant shipments ia 1993 were almost - 5 x 10 kg with a sales value of 3.5 x 10 , a 3% iacrease over 1992 (110). Adjusted for inflation, the actual growth was about 2%, iadicative of a mature market. Nonetheless, the market has changed and will continue to do so, as evidenced by the iatroduction of alkylpolyglucosides, alkylglucosamides, and ester quaternaries ia the 1990s, and by iatense patent activity. Over the three-year period from 1992 to 1994, 1500 world patents were filed for cleaning products, 33% of which dealt with surfactants (63). [Pg.260]

Disodium Tetraborate Decahydrate, In the Urhted States, neady all the refined borax is used for household cleaning products. Small amounts are used as fertilizers and herbicides. USP-grade borax is used in cosmetic and toilet goods, in which purity is demanded. Special quahty-grade borax is used in electrolytic capacitors, in nuclear apphcations, and as a laboratory chemical. [Pg.205]

Our Electronic Chemicals group is an industry leader in most basic manufacturing of Wet Process Chemistries, from UHP Straights (100 ppt qualities). Custom formulated Wet Etch, Solvents and Solvent Blends, and Cleaning Products. [Pg.465]

Maintenance or cleaning of equipment Residues Loss of containment (breaking lines) Stripping insulation Burning-off paint, flame heating components Reaction or vaporization of cleaning products... [Pg.105]

A solventless synthesis of pyrazoles, a green chemistry approach, has been described where an equimolar amount of the diketone and the hydrazine are mixed in a mortar with a drop of sulfuric acid and ground up. After an appropriate length of time ( 1 h) the product is purified to provide clean products. Even acyl pyrazoles 42 were obtained under the solvent-less reaction conditions in good yields. [Pg.296]

The importance of the solvent, in many cases an excess of the quatemizing reagent, in the formation of heterocyclic salts was recognized early. The function of dielectric constants and other more detailed influences on quatemization are dealt with in Section VI, but a consideration of the subject from a preparative standpoint is presented here. Methanol and ethanol are used frequently as solvents, and acetone,chloroform, acetonitrile, nitrobenzene, and dimethyl-formamide have been used successfully. The last two solvents were among those considered by Coleman and Fuoss in their search for a suitable solvent for kinetic experiments both solvents gave rise to side reactions when used for the reaction of pyridine with i-butyl bromide. Their observation with nitrobenzene is unexpected, and no other workers have reported difficulties. However, tetramethylene sulfone, 2,4-dimethylsulfolane, ethylene and propylene carbonates, and salicylaldehyde were satisfactory, giving relatively rapid reactions and clean products. Ethylene dichloride, used quite frequently for Friedel-Crafts reactions, would be expected to be a useful solvent but has only recently been used for quatemization reactions. ... [Pg.10]

VOCs are emitted indoors by building materials (e.g., paints, pressed wood products, adhesives, etc.), equipment (photocopying machines, printers, etc.), cleaning products, stored fuels and automotive products, hobby supplies, and combustion activities (cooking, unvented space heating, tobacco smoking, indoor vehicle use). [Pg.57]

Boiling point distillation data also provides information about the quality and composition of a feed. The significance is discussed later in this chapter. Distillation indicates molecular weight and carbon number. It indicates whether the feed contains any clean products that could be sold as is. Before discussing the data, the different testing methods and their limitations should be reviewed. [Pg.47]


See other pages where Cleaning products is mentioned: [Pg.28]    [Pg.449]    [Pg.518]    [Pg.518]    [Pg.298]    [Pg.71]    [Pg.71]    [Pg.75]    [Pg.345]    [Pg.506]    [Pg.528]    [Pg.13]    [Pg.165]    [Pg.459]    [Pg.139]    [Pg.184]    [Pg.274]    [Pg.529]    [Pg.537]    [Pg.212]    [Pg.292]    [Pg.468]    [Pg.220]    [Pg.443]    [Pg.207]    [Pg.354]    [Pg.150]    [Pg.75]    [Pg.92]    [Pg.254]    [Pg.333]    [Pg.1077]   
See also in sourсe #XX -- [ Pg.176 , Pg.221 , Pg.307 , Pg.308 , Pg.358 ]

See also in sourсe #XX -- [ Pg.53 , Pg.82 ]

See also in sourсe #XX -- [ Pg.153 ]

See also in sourсe #XX -- [ Pg.28 ]

See also in sourсe #XX -- [ Pg.131 , Pg.569 , Pg.592 ]




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