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Carbonate, chemical

Much useful information on these and other solvents will be found in the booklet Synihtiic Oryanic Chemicals issued by the Carbide and Carbon Chemicals Corporation. [Pg.171]

TABLE 1-38, CARBON CHEMICAL SHIFTS OF SUBSTITUE-NTS IN THIAZOLE AND SOME OF ITS DERIVATn/ES" (257)... [Pg.77]

TABLE 7.52 Estimation of Chemical Shifts of Carbon Attached to a Double Bond The olefinic carbon chemical shift is calculated from the equation... [Pg.792]

Hexa.cya.no Complexes. Ferrocyanide [13408-63 ] (hexakiscyanoferrate-(4—)), (Fe(CN) ) , is formed by reaction of iron(II) salts with excess aqueous cyanide. The reaction results in the release of 360 kJ/mol (86 kcal/mol) of heat. The thermodynamic stabiUty of the anion accounts for the success of the original method of synthesis, fusing nitrogenous animal residues (blood, horn, hides, etc) with iron and potassium carbonate. Chemical or electrolytic oxidation of the complex ion affords ferricyanide [13408-62-3] (hexakiscyanoferrate(3—)), [Fe(CN)g] , which has a formation constant that is larger by a factor of 10. However, hexakiscyanoferrate(3—) caimot be prepared by direct reaction of iron(III) and cyanide because significant amounts of iron(III) hydroxide also form. Hexacyanoferrate(4—) is quite inert and is nontoxic. In contrast, hexacyanoferrate(3—) is toxic because it is more labile and cyanide dissociates readily. Both complexes Hberate HCN upon addition of acids. [Pg.434]

Company (Bayway, New Jersey). This was followed in 1921, by the start-up of isopropyl alcohol production in Clendenin, West Virginia, by the Carbide and Carbon Chemicals (Union Carbide) Corporation. The Shell Oil Company began production in the 1930s at Dominguez, California (55). These three companies are the principal domestic manufacturers as of the mid-1990s. [Pg.107]

H. E. Smith, The Effect ofTetramethylorthosilicate on the Eyes, Carbide and Carbon Chemicals Industrial EeUowship 274-1, Mellon Institute, Pittsburgh, Pa. [Pg.41]

Active Carbon" under "Carbon" in ECT 1st ed., VoL 2, pp. 881—899, byj. W. Hassler, Nuchar Active Carbon Division, West Virginia Pulp and Paper Co., and J. W. Goet2, Carbide and Carbon Chemicals Corp. "Activated Carbon" under "Carbon" in ECT 2nd ed., VoL 4, pp. 149—158, by E. G. Doying, Union Carbide Corp., Carbon Products Division "Activated Carbon" under "Carbon (Carbon and Artificial Graphite)" in ECT 3rd ed., Vol. 4, pp. 561—570, by R. W. Soffel, Union Carbide Corp. [Pg.536]

J. W. Hassler, Jictivated Carbon Chemical Publishing Co., Inc., New York, 1963, pp. 1—14. A comprehensive account of the development and use of activated carbon products to about 1960. [Pg.536]

Diethylene glycol with a boiling range of 230-270°, from Carbide and Carbon Chemicals Corporation, is satisfactory. [Pg.22]

Commercial ethanolamine (Carbide and Carbon Chemicals Corporation) was dried by distillation with a small amount of benzene and redistilled b.p. 70-72°/12 ram. [Pg.39]

Perkins, G.A., 1938, Weekly Progress Report, 3/15, Carbide and Carbon Chemical Co. [Pg.216]

Commercial interest in poly(vinyl chloride) was revealed in a number of patents independently filed in 1928 by the Carbide and Carbon Chemical Corporaration, Du Pont and IG Farben. In each case the patents dealt with vinyl chloride-vinyl acetate copolymers. This was because the homopolymer could only be processed in the melt state at temperatures where high decomposition rates occurred. In comparison the copolymers, which could be processed at much lower temperatures, were less affected by processing operations. [Pg.311]

The Carbitol (monoethyl ether of diethylene glycol) was the Carbide and Carbon Chemicals Company product, which was distilled before use, b.p. 192-196°. It is a suitable solvent to render the reactants mutually soluble. Aqueous alkali with an ether solution of the nitrosamide does not yield diazomethane. [Pg.18]

Jones, A.G., Hostomsky, J. and Zhou Li, 1992a. On the effect of liquid mixing rate on primary crystal size during the gas-liquid precipitation of calcium carbonate. Chemical Engineering Science, 47, 3817-3824. [Pg.312]

Type of carbon Chemical shift (8) ppm Type of carbon Chemical shift (8) ppm ... [Pg.549]


See other pages where Carbonate, chemical is mentioned: [Pg.1446]    [Pg.450]    [Pg.460]    [Pg.287]    [Pg.351]    [Pg.365]    [Pg.369]    [Pg.396]    [Pg.514]    [Pg.501]    [Pg.133]    [Pg.11]    [Pg.280]    [Pg.80]    [Pg.80]    [Pg.455]    [Pg.455]    [Pg.382]    [Pg.529]    [Pg.18]    [Pg.44]    [Pg.76]    [Pg.76]    [Pg.49]    [Pg.50]    [Pg.466]    [Pg.468]    [Pg.190]    [Pg.134]    [Pg.2319]    [Pg.232]    [Pg.233]    [Pg.1042]    [Pg.186]   


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1-Bromopropane, carbon-13 chemical

2- Butanol carbon-13 chemical shift

2-Butene, carbon-13 chemical shift

4- Nitrophenol, carbon-13 chemical

Activated Carbon by Chemical Activation

Activated carbon fibers surface chemical properties

Activated carbons chemical activation

Active carbon fiber, chemical vapor

Alkanes carbon-13 chemical shifts

Alkenes carbon-13 chemical shifts

Alkyl carbon-13 chemical shifts, effect

Alkylation chemical shift, carbon

Amino acid, carbon atoms, chemical shifts

Anomeric carbons, chemical shifts

Aromatic carbon chemical shift

Aromatic compounds carbon-13 chemical shifts

B-4 Chemical Shifts of Representative Carbons

Building products, chemicals calcium carbonate

CHEMICAL VAPOR DEPOSITION OF CARBON NANOTUBES

Calcium carbonate chemical weathering

Calcium carbonate, chemical

Calcium carbonate, chemical reactions

Carbide and Carbon Chemicals

Carbide and Carbon Chemicals Corp

Carbon 13 chemical shifts carbene complexes

Carbon 13 chemical shifts carbenes

Carbon 13 chemical shifts carbonyls

Carbon 13 chemical shifts diene complexes

Carbon 13 chemical shifts ethyl compounds

Carbon 13 chemical shifts force constants

Carbon 13 chemical shifts methyl complexes

Carbon 13 chemical shifts olefin complexes

Carbon 13 chemical shifts paramagnetic compounds

Carbon 13 chemical shifts phenyl complexes

Carbon 13 chemical shifts ruthenium complexes

Carbon 13 chemical shifts vinylic complexes

Carbon Chemical Shifts and Structure

Carbon Dioxide as Chemical Feedstock. Edited by Michele Aresta

Carbon Nanotube chemical functionalization

Carbon alkane and cycloalkane chemical shifts

Carbon atoms chemical precursors

Carbon atoms chemical shifts

Carbon atoms, chemical shifts effect

Carbon atoms, chemical shifts effect monosaccharide

Carbon atoms, chemical synthesis

Carbon black Particle surface chemical composition

Carbon black chemical activity

Carbon black chemical properties

Carbon black chemically modified

Carbon black surface chemical functions

Carbon black surface chemical structure

Carbon chemical absorption

Carbon chemical aspect

Carbon chemical behavior

Carbon chemical bonds

Carbon chemical derivatization

Carbon chemical diastereotopic effects

Carbon chemical functionalization

Carbon chemical modification

Carbon chemical modification/derivatization

Carbon chemical properties

Carbon chemical reactions

Carbon chemical reactivity

Carbon chemical shielding

Carbon chemical shift anisotropy patterns

Carbon chemical shifts anisotropic fields

Carbon chemical shifts conformation

Carbon chemical shifts dilution

Carbon chemical shifts electric fields

Carbon chemical shifts electron deficiency

Carbon chemical shifts electron donation

Carbon chemical shifts electron releasing

Carbon chemical shifts electron withdrawing

Carbon chemical shifts for

Carbon chemical shifts hybridization

Carbon chemical shifts hydrogen bonding

Carbon chemical shifts isotopic substitution

Carbon chemical shifts resonance

Carbon chemical shifts ring current

Carbon chemical shifts steric interactions

Carbon chemical shifts temperature

Carbon chemical shifts unshared electron pairs

Carbon chemical solvents

Carbon chemical symbol

Carbon chemical uses

Carbon deposition chemical reactors

Carbon dioxide chemical

Carbon dioxide chemical bonds

Carbon dioxide chemical recycling

Carbon dioxide chemical synthesis

Carbon dioxide chemical utilization

Carbon dioxide emissions, chemical

Carbon dioxide propane chemical reactions

Carbon dioxide reduction chemical reactions

Carbon electrodes chemically modified

Carbon monoxide chemical characteristics

Carbon monoxide chemical reactions

Carbon monoxide chemical shifts

Carbon monoxide quantum chemical calculations

Carbon nano tubes chemical functionalization

Carbon nanotubes -based electrochemical chemical

Carbon nanotubes /polymer composites chemical functionalization

Carbon nanotubes chemical changes

Carbon nanotubes chemical modification

Carbon nanotubes chemical vapor deposition

Carbon nanotubes chemical vapour deposition

Carbon nitrides, very high pressure chemical

Carbon paste electrode chemically modified

Carbon physico-chemical properties

Carbon steel chemical analysis

Carbon tetrachloride chemical bonds

Carbon tetrachloride chemical stability

Carbon, chemically activated

Carbon-13 chemical shifts cellulose

Carbon-13 chemical shifts in substituted

Carbon-13 chemical shifts of carbonyl group

Carbon-13 chemical shifts of deuterated solvents

Carbon-13 nuclear magnetic resonance chemical-shifts

Carbon-13 nuclear magnetic resonance spectroscopy chemical shifts

Carbon-13 nucleus, chemical shift anisotropy

Carbonate polymer chemical resistance

Carbonate, chemical speciation

Carbonic acid chemical weathering

Carbonic anhydrase chemical models

Carbonization process, chemical characterization

Carbonyl groups carbon-13 chemical shifts

Chemical Production from Carbon Dioxide

Chemical Properties of Cage Carbons Dictated by the Encapsulated Metals

Chemical Shifts of Hydrogens Attached to Tetrahedral Carbon

Chemical Sorption by Organic Carbon

Chemical Stability of Electrolytes with Lithium and Lithiated Carbon

Chemical Structure of the Carbon Surface

Chemical Vapor Infiltration of Carbon

Chemical activations carbon cloth activation, using activating

Chemical bonding carbon

Chemical carbon dioxide sensors

Chemical carbon dioxide splitting

Chemical carbon disulphide

Chemical carbon fibres

Chemical carbon monoxide

Chemical characterization carbon

Chemical characterization dissolved organic carbon

Chemical composition carbon aerogel

Chemical engineering, carbon dioxide

Chemical engineering, carbon dioxide combustibles

Chemical engineering, carbon dioxide combustion processes

Chemical manufacturing, chemicals used carbon monoxide

Chemical precursors, carbon atom generation

Chemical properties of carbon

Chemical sensing single walled carbon

Chemical shift anisotropy aromatic carbon

Chemical shift anisotropy, carbon

Chemical shift correlations carbon

Chemical shift methylene carbon, styrene

Chemical shift of carbon

Chemical shift of various carbons

Chemical shift quaternary carbons

Chemical shift, carbon

Chemical shift, carbon coupling constants

Chemical shift, carbon proton

Chemical shifts carbon-13 nuclear magnetic

Chemical shifts, aromatic carbon, indole

Chemical shifts, aromatic carbon, indole alkaloids

Chemical shifts, carbon, table

Chemical structure carbon black

Chemical supply carbon dioxide

Chemical supply carbonates

Chemical synthesis with carbon

Chemical synthesis, supercritical carbon dioxide

Chemical transformations, inside carbon

Chemical treatment with activated carbon

Chemical uses of carbon

Chemical vapor deposition , carbon

Chemical vapor deposition , carbon monoliths

Chemical vapor deposition carbon doping

Chemical vapor deposition carbon nanofibers

Chemical vapor deposition carbon nanotube arrays

Chemical vapor-infiltrated graphite carbon

Chemical weathering carbon

Chemical weathering carbonate minerals

Chemically Modified Carbon Nanotubes

Chemically modified glassy carbon

Chemicals from Wood Carbonization and Distillation

Chemicals, properties carbon—chlorine bond

Copolymer main chain carbon chemical shifts

Correlation charts carbon-13 chemical shifts

Cyclic ring systems carbon-13 chemical shifts

Cycloalkanes carbon-13 chemical shifts

Disaccharides carbon-13 chemical shifts

Electrochemical Fabrication of Carbon Nanomaterial and Conducting Polymer Composites for Chemical Sensing

Gamma carbon chemical shift

Glass manufacturing, chemicals used sodium carbonate

Glucans, carbon-13 chemical

Glucans, carbon-13 chemical shifts

Green chemical engineering supercritical carbon dioxide

Heterocyclic rings carbon-13 chemical shifts

High-pressure hydrogenated carbon chemical reaction

Hydrocarbons carbon-13 chemical shifts

Hydroxyl groups, substituent effect carbon chemical shifts

Inorganic carbonates chemical composition

Magnesium carbonate chemical weathering

Main chain carbon chemical shifts

Mesityl oxide carbon-13 chemical shift

Methine carbon resonances, triad chemical

Methylene carbon chemical shifts

Microporous carbons chemical vapor deposition

Monosaccharides carbon-13 chemical shifts

Non-Equilibrium Plasma-Chemical Syngas Production from Mixtures of Methane with Carbon Dioxide

Oxygen chemical looping carbon dioxide

PHYSICAL AND CHEMICAL DATA Tables 2-202 Saturated Carbon Tetrafluoride

Paper manufacturing, chemicals used calcium carbonate

Phenyl 0 carbon central, chemical shift

Polypropylene methyl carbons, chemical shift

Protons, carbon-attached, chemical shift

Protons, carbon-attached, chemical shift values

Soil organic carbon chemical stabilization

Spectroscopy carbon chemical shifts

Surface chemical properties edge carbon atoms

Temperature effects very high pressure chemical reactions, carbon

Terephthalate carbons chemical

The Chemical Properties of Silicon and Carbon

The Effect of Fluorine Substituents on Carbon Chemical Shifts

Unusual Structures of Radical Ions in Carbon Skeletons Nonstandard Chemical Bonding by Restricting Geometries

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