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Diyness

For the latter purpose, dissolve the crystals in hot ethanol, and then add water drop by drop to the well-stirred solution until a line emulsion just appears then add more ethanol, also drop by drop, until the emulsion just redissolves. ow allow the solution to cool spontaneousK if the emulsion reappears, add a few drops of ethanol from time to time in order to keep the solution clear. Finally the o-nitrophenol separates in crystals, and the well-stirred mixture may now be cooled in ieewvater until crystallisation is complete. Filter, drain and diy either in an atmospheric desiccator, or by pressing between drying-paper. [Pg.172]

Fit the central neck of a 1-litre three-necked flask with an efficient double surface condenser and close the two side necks with corks (1). Place 52 g. (59-5 ml.) of ethyl n-valerate (Section 111,104) and 800 ml. of super-diy ethyl alcohol (Section 11,47, 5) (2) in the flask. Add 95 g. of clean sodium in small pieces through one of the apertures at such... [Pg.249]

The distillate weighs about 110 g. and contains methyl formate and methylal. If it is placed in a flask provided with a reflux condenser and a solution of 25 g. of sodium hydroxide in 40 ml. of water is added, the methyl formate is liydrolysed to sodium formate and the methylal separates on the surface. The latter may be removed, dried with anhydrous calcium chloride and distilled about 30 g. of methylal, b.p. 37-42°, are obtained. If the aqueous layer is evaporated to diyness, about 25 g. of sodium formate are isolated. [Pg.416]

Triturate 20 g. of dry o-toluidine hydrochloride and 35 5 g. of powdered iodine in a mortar and then grind in 17 -5 g. of precipitated calcium carbonate. Transfer the mixture to a conical flask, and add 100 ml. of distilled water with vigorous shaking of the flask. Allow the mixture to stand for 45 minutes with occasional agitation, then heat gradually to 60-70° for 5 minutes, and cool. Transfer the contents of the flask to a separatory funnel, extract the base with three 80 ml. portions of ether, diy the extract with anhydrous calcium chloride or magnesium sulphate, and remove the excess of solvent. The crude 5-iodo-2-aminotoluene separates in dark crystals. The yield is 32 g. Recrystallise from 50 per cent, alcohol nearly white crystals, m.p. 87°, are obtained. [Pg.648]

If the m.p. is not quite satisfactory, dissolve the o-nitroplienol in hot alcohol (or methylated spirit) under reflux, add hot water drop by drop until a cloudiness just appears, and allow to cool spontaneously. Filter off the bright yellow crystals and diy between filter paper. [Pg.678]

Diethylbarbituric acid. In a dry 250 ml. distilling flask, fitted with a thermometer reaching to within 3-4 cm. of the bottom and a condenser, place 51 g. of clean sodium and add 110 g. (140 ml.) of super-dr ethyl alcohol (Section 11,47,5). When all the sodium has reacted, introduce 20 g. of ethyl diethylmalonate and 7 0 g. of dry imea (dried at 60 for 4 hours). Heat the flask in an oil bath and slowly distil off the ethyl alcohol. As soon as the temperature of the liquid reaches 110-115°, adjust the flame beneath the bath so that the contents of the flask are maintained at this temperature for at least 4 hours. Allow the flask to cool somewhat, add 100 ml. of water and warm until the solid (veronal-sodium) dissolves. Pour the solution into a beaker, and add a further 100 ml. of water but containing 7 0 ml. of concentrated siilplmric acid this will hberate the veronal from the sodium derivative. The veronal usually crystallises out if it does not, add a few more drops of dilute sulphuric acid until the solution is acid to Congo red. Heat the contents of the beaker, with stirring and the addition of more water if necessary, until all the veronal dissolves at the boiling point. Allow the hot solution to cool, filter off the crystals of veronal and diy in the air. The yield is 12 g., m.p. 190°. [Pg.1003]

Fig. 7. Chemistiy of a diy-filin, negative-acting photoresist, (a) Polymerizable layer sandwiched between a polyolefin carrier sheet and a polyester cover... Fig. 7. Chemistiy of a diy-filin, negative-acting photoresist, (a) Polymerizable layer sandwiched between a polyolefin carrier sheet and a polyester cover...
Type of ink Diy Flushed Resin bonded" Solvent dispersion (dry basis) Chip Presscake Total... [Pg.514]

D 148 diy Ventron 0.95 70 (powder) zinc soaps of fatty acids, 75% calcium sihcate carrier... [Pg.245]

Cure rate Property No antioxidant Antioxidant, 1.0 part (diy)... [Pg.256]

Physical, Sulfamic acid is a diy acid having oithorhombic crystals. The pure crystals ate nonvolatile, nonhygroscopic, colodess, and ododess. The acid is highly stable up to its melting point and may be kept for years without change in properties. Selected physical properties of sulfamic acid are hsted in Table 1. Other properties are available in the hterature (5—8). [Pg.60]

Fig. 5. Schematic of a diy reagent slide used in Kodak EKTACHEAI analy2ers. Courtesy of Kodak Instruments. Fig. 5. Schematic of a diy reagent slide used in Kodak EKTACHEAI analy2ers. Courtesy of Kodak Instruments.
Metals, Alloys, Ores Timber, Air-diy Dry Rrrbble Masonry ... [Pg.163]

While the rotary dryer shown is commonly used for grains and minerals, this system has been successfully applied to fluid-bed diying of plastic pellets, air-hft diying of wood fibers, and spray drying of milk solids. The air may be steam-heated as shown or heated By direct combustion of fuel, provided that a representative measurement of inlet air temperature can be made. If it cannot, then evaporative load can be inferred from a measurement of fuel flow, replacing AT in the set point calculation. [Pg.751]

The control system requires the values of T and AT obsei-ved during the first minutes of operation to be stored as the basis for the above calculation of end point. When the exhaust temperature then reaches the value calculated, diying is terminated. Coefficient K can be estimated from models but requires adjustment on-hne to reach product specifications repeatedly. Products having different moisture specifications or particle size will require different settings of K, but the system does compensate for variations in feed moisture, batch size, air moisture, and inlet temperature. Some exhaust air may be recirculated to control the dewpoint of the inlet air, thereby consei-v-ing energy toward the end of the batch and when the ambient air is especially diy. [Pg.751]

Pneumatic controllers are made of Bourdon tubes, bellows, diaphragms, springs, levers, cams, and other fundamental transducers to accomplish the control function. If operated on clean, diy plant air, they offer good performance and are extremely reliable. Pneumatic controllers are available with one or two stages of pneumatic amphfi-cation, with the two-stage designs having faster dynamic response characteristics. [Pg.776]


See other pages where Diyness is mentioned: [Pg.186]    [Pg.631]    [Pg.346]    [Pg.63]    [Pg.143]    [Pg.178]    [Pg.194]    [Pg.810]    [Pg.834]    [Pg.843]    [Pg.851]    [Pg.885]    [Pg.886]    [Pg.437]    [Pg.277]    [Pg.286]    [Pg.286]    [Pg.231]    [Pg.231]    [Pg.231]    [Pg.231]    [Pg.231]    [Pg.231]    [Pg.578]    [Pg.273]    [Pg.827]    [Pg.39]    [Pg.258]    [Pg.555]    [Pg.750]    [Pg.751]    [Pg.766]    [Pg.1044]    [Pg.1060]   
See also in sourсe #XX -- [ Pg.72 ]




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