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Oxidation plasticizers

FWWMR Finish. The abbreviation for fire, water, weather, and mildew resistance, FWWMR, has been used to describe treatment with a chlorinated organic metal oxide. Plasticizers, coloring pigments, fiUers, stabilizers, or fungicides usuaUy are added. However, hand, drape, flexibUity, and color of the fabric are more affected by this type of finish than by other flame retardants. Add-ons of up to 60% are required in many cases to obtain... [Pg.486]

In 1966, Cadotte developed a method for casting mlcroporous support film from polysulfone, polycarbonate, and polyphenylene oxide plastics ( ). Of these, polysulfone (Union Carbide Corporation, Udel P-3500) proved to have the best combination of compaction resistance and surface microporosity. Use of the mlcroporous sheet as a support for ultrathin cellulose acetate membranes produced fluxes of 10 to 15 gfd, an increase of about five-fold over that of the original mlcroporous asymmetric cellulose acetate support. Since that time, mlcroporous polysulfone has been widely adopted as the material of choice for the support film in composite membranes, while finding use itself in many ultrafiltration processes. [Pg.306]

Overall, there has not been a great deal of detailed published work on zirconium adhesion promoters or coupling agents. It is known that they will react with various metal, metal oxide, and oxidized plastic surfaces, and given a... [Pg.554]

High energy oxidizing plasticizers such as nitroglycerine (NG-glyceryl trinitrate) to increase performance. [Pg.60]

Polymcriziition Cnpolymuriziition 1 Copolyiiicri/ation Oxulalion - Poly 1-butene - HOPE - LDPE - 1.2-butylenc oxide - Plastics - Piaslics Plastics Stabilizers-Polyols (ii-butyicncs, butanes mixture) (pure 1-butene) (pure 1-butene) (pure l-butcnbi... [Pg.196]

Closures are composed of a polymer and include curing agents, activators, anti-oxidants, plasticizers, fillers and pigments within their formulae. They have to be selected with the drug product in mind to avoid chemical incompatibility and possible reaction with the ingredients in the product formulation. Sorption of the preservative from multiple-dose formulations has frequently been a problem and therefore closures may require saturation with the ingredients in the product prior to packaging. [Pg.329]

A typical example of active flame retardants is represented by ATH, that is, aluminum trihydrate. When ATH is heated with a heating rate of 10°C/min, it starts releasing water at about 225°C (437°F). At 300°C, ATH releases 12% water by weight. At 334°C (633°F), the rate of water reaches its maximum, with about 28% of water release, and the process slows down, reaching 35% of water release at 900°C. Water release reduces the heat from the oxidized plastic and quenches flames. [Pg.473]

Acids, chromium, ethylene, halogens, hydrogen, mercury, nitrogen, oxidizers, plastics, sodium chloride, sulfur Halogenated hydrocarbons, water Acids, aldehydes, amides, halogens, heavy metals, oxidizers, plastics, sulfur... [Pg.392]

Acids, aluminum, dibenzoyl peroxide, oxidizers, plastics... [Pg.392]

Reactions of nanoscale materials are classified with respect to the surrounding media solid, liquid, and gas phases. In the solid phase, nanoscale crystals are usually connected with each other to form a powder particle (micron scale) or a pellet (milli scale) see Figure 14.1. Two or more materials (powder or pellet) are mixed and fired to form a new material. The nanosized structure is favored, due to the mixing efficiency and high reaction rate. Alloys (metals), ceramics (oxides), cement (oxides), catalysts (metals and oxide), cosmetics (oxides), plastics (polymers), and many functional materials are produced through solid reaction of nanoscale materials. One recent topic of interest is the production of superconductive mixed oxides, where control of the layered stracture during preparation is a key step. [Pg.496]

Noryl GE Plastics tradename for its family of polyphenylene oxide plastics. [Pg.387]

Dibutoxyethyl azelate Diphenyl octyl phosphate Pentaerythrityl tetrabenzoate plasticizer, cable/wire Asphalt, oxidized plasticizer, car upholstery Trioctyl trimellitate plasticizer, casein Sodium lactate plasticizer, castable PU Butyl benzyl phthalate Dipropylene glycol dibenzoate plasticizer, caulk... [Pg.5536]


See other pages where Oxidation plasticizers is mentioned: [Pg.275]    [Pg.971]    [Pg.642]    [Pg.508]    [Pg.905]    [Pg.494]    [Pg.6]    [Pg.171]    [Pg.508]    [Pg.736]    [Pg.392]    [Pg.393]    [Pg.79]    [Pg.145]    [Pg.83]    [Pg.86]    [Pg.128]    [Pg.150]    [Pg.159]    [Pg.214]    [Pg.238]    [Pg.282]    [Pg.338]    [Pg.395]    [Pg.407]    [Pg.415]    [Pg.422]    [Pg.424]    [Pg.430]    [Pg.430]    [Pg.467]    [Pg.525]    [Pg.535]    [Pg.434]    [Pg.251]   
See also in sourсe #XX -- [ Pg.186 ]




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