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Large production

The large production of nickel makes up for the fact that is only one part of the platinum metals in two million parts of ore. [Pg.136]

The largest production of acrylamide is in Japan the United States and Europe also have large production faciUties. Some production is carried out in the Eastern Bloc countries, but details concerning quantities or processes are difficult to obtain. The principal producers in North America are The Dow Chemical Company, American Cyanamid Company, and Nalco Chemical Company (internal use) Dow sells only aqueous product and American Cyanamid sells both Hquid and sohd monomer. In Europe, Chemische Eabrik Stockhausen Cie, Ahied CoUoids, The Dow Chemical Company, and Cyanamid BV are producers Dow and American Cyanamid are the only suppHers to the merchant market, and crystalline monomer is available from American Cyanamid. Eor Japan, producers are Mitsubishi Chemical Industries, Mitsui Toatsu, and Nitto Chemical Industries Company (captive market). Crystals and solutions are available from Mitsui Toatsu and Mitsubishi, whereas only solution monomer is available from Nitto. [Pg.136]

U.S. chlorine trifluoride production is several metric tons per year. Most of the product is used in nuclear fuel processing. A large production plant for chlorine trifluoride was operated in Germany during World War II with a reported capacity of 5 t/d (106,107). As of 1993, Air Products and Chemicals, Inc. was the only U.S. producer. The 1992 price was ca 100/kg. [Pg.187]

Note The injection/compression moulding process capability maps 1, 2 and 3 are used for large parts with a major dimension greater than 50 mm typically and/or for large production volumes. Map 4 is for injection moulded parts that have a major dimension less than 150 mm and which are produced in small volumes. [Pg.316]

Convection flow along vertical surfaces (Fig. 7.63) is also of major interest in industrial ventilation, where large production units with a vertical extension are often present. When the vertical extension of the surface is small, the convection flow is mainly laminar, but at larger extensions the flow is tiir-... [Pg.520]

Small and fragile products should be held in containers and the container sealed and marked with the inspection status. Large products should either carry a label or have a related inspection record. [Pg.429]

There are different techniques to evaluate the quantitative stress level in prototype and production products. They can predict potential problems. Included is the use of electrical resistance strain gauges bonded on the surface of the product. This popular method identifies external and internal stresses. Their various configurations are made to identify stresses in different directions. This technique has been extensively used for over a half century on very small to very large products such as toys to airplanes. There is the optical strain measurement system that is based on the principles of optical interference. It uses Moire, laser, or holographic interferometry (2,3,20). [Pg.302]

They may be processed in a wide variety of ways, some of which are adapted to highspeed manufacturing to making very small to very large products. [Pg.337]

If K is large, products are favored at equilibrium if K is small, reactants are favored. [Pg.489]

Non-Kolbe electrolysis may lead to a large product spectrum, especially when there are equilibrating cations of about equal energy involved. However, in cases where the further reaction path leads to a particularly stabilized carbocation and either elimination or solvolysis can be favored, then non-Kolbe electrolysis can become an effi-yient synthetic method. This is demonstrated in the following chapters. [Pg.117]

Plant carotenoids are still extracted at laboratory and industrial scales with solvent mixtnres of ethanol and ethyl acetate, bnt solvent extraction always bears the risk of toxic residnes in the extracts and this limits their use in large production applications in the food and pharmaceutical industries. [Pg.310]


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See also in sourсe #XX -- [ Pg.122 , Pg.351 ]




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Acetone, large-scale production

Biocatalytic Approaches for the Large-Scale Production of Asymmetric Synthons

C-Glycosyl compounds large-scale production

Carbohydrates large-scale production

Chiral alcohols large-scale production system

Commodity products producing large-volumes

Cyanohydrin large-scale production

Drugs large-scale production

Fission products large release

Gaseous products, large release

Hydrogen large-scale production

Injection molding large surface production parts

Large Area Production Technology

Large hydrogen production

Large molecules, production

Large molecules, production Model

Large production runs

Large scale volatile production

Large-scale Production of the M6L4 Complex

Large-scale production of natural

Large-scale production systems

Large-scale production through

Large-scale production through bacterial coupling

Large-scale production, cost analysis

Large-scale production, safety measures

Natural Promiscuity Is at the Heart of Large Product Diversity

Natural product synthesis large biologically active compounds

Natural product synthesis large ring formations

Notes on Large-Scale Production Synthesis Procedures

Oxygen large-scale production

Penicillin large-scale production

Phosgene large scale production

Plastic large scale production

Production large-scale

Recombinant proteins large-scale production

Synthesis of Large-Volume Products

Technologies for large-scale production

Thin-film solar cells large scale production

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