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Carbon, reduction

Reduction (Section 2 19) Gam in the number of electrons as sociated with an atom In organic chemistry reduction of carbon occurs when a bond between carbon and an atom which IS more electronegative than carbon is replaced by a bond to an atom which is less electronegative than carbon Reductive ami nation (Section 22 10) Method for the prepara tion of amines in which an aldehyde or a ketone is treated with ammonia or an amine under conditions of catalytic hy drogenation... [Pg.1292]

Two processes, developed for the direct processing of lead sulfide concentrates to metallic lead (qv), have reached commercial scale. The Kivcet process combines flash smelting features and carbon reduction. The QSL process is a bath-smelting reactor having an oxidation 2one and a reduction 2one. Both processes use industrial oxygen. The chemistry can be shown as follows ... [Pg.168]

Calcium—Silicon. Calcium—silicon and calcium—barium—siUcon are made in the submerged-arc electric furnace by carbon reduction of lime, sihca rock, and barites. Commercial calcium—silicon contains 28—32% calcium, 60—65% siUcon, and 3% iron (max). Barium-bearing alloys contains 16—20% calcium, 9—12% barium, and 53—59% sihcon. Calcium can also be added as an ahoy containing 10—13% calcium, 14—18% barium, 19—21% aluminum, and 38—40% shicon These ahoys are used to deoxidize and degasify steel. They produce complex calcium shicate inclusions that are minimally harm fill to physical properties and prevent the formation of alumina-type inclusions, a principal source of fatigue failure in highly stressed ahoy steels. As a sulfide former, they promote random distribution of sulfides, thereby minimizing chain-type inclusions. In cast iron, they are used as an inoculant. [Pg.541]

Thermal Reduction. MetaUic sodium is produced by thermal reduction of several of its compounds. The eadiest commercial processes were based on the carbon reduction of sodium carbonate (46—49) or sodium hydroxide (1,8,50) ... [Pg.164]

Carbon Reduction. The production of ferrovanadium by reduction of vanadium concentrates with carbon has been supplanted by other methods. An important development has been the use of vanadium carbide as a replacement for ferrovanadium as the vanadium additive in steelmaking. A... [Pg.382]

Because of its high reactivity, production of barium by such processes as electrolysis of barium compound solution or high temperature carbon reduction is impossible. Electrolysis of an aqueous barium solution yields Ba(OH)2, whereas carbon reduction of an ore such as BaO produces barium carbide [50813-65-5] BaC2, which is analogous to calcium carbide (see Carbides). Attempts to produce barium by electrolysis of molten barium salts, usually BaCl25 met with only limited success (14), perhaps because of the solubiUty of Ba in BaCl2 (1 )-... [Pg.472]

Stable oxides, such as those of clrromium, vanadium and titanium cannot be reduced to the metal by carbon and tire production of these metals, which have melting points above 2000 K, would lead to a refractoty solid containing carbon. The co-reduction of the oxides widr iron oxide leads to the formation of lower melting products, the feno-alloys, and tlris process is successfully used in industrial production. Since these metals form such stable oxides and carbides, tire process based on carbon reduction in a blast furnace would appear to be unsatisfactory, unless a product samrated with carbon is acceptable. This could not be decarburized by oxygen blowing without significairt re-oxidation of the refractory metal. [Pg.335]

Alternatively, the carbon reduction can be replaced by reduction of the roasted ore with fresh galena ... [Pg.370]

To comply with carbon reduction goals, some countries impose taxes on carbon dioxide emissions. Since biofuels have lower full-cycle carbon dioxide emissions than fossil fuels, biofuels are more cost-competitive with fossil fuels in regions where these taxes are imposed. [Pg.164]

Hunn, B. D. Baughman. M. L. Silver, S. C. et al. (1986). Technical Potential for Electrical Energy Conservation and Peak Demand Reduction in Texas Buildings. Austin, TX Center for Energy Studies, University of Texas. Interlaboratoiy Working Group. (1997). Scenarios of U.S. Carbon Reductions Potential Impacts of Energy-Efficient... [Pg.290]

Columbium (also known as niobium) and tantalum metals are produced from purified salts, which are prepared from ore concentrates and slags resulting from foreign tin production. The concentrates and slags are leached with hydrofluoric acid to dissolve the metal salts. Solvent extraction or ion exchange is used to purify the columbium and tantalum. The salts of these metals are then reduced by means of one of several techniques, including aluminothermic reduction, sodium reduction, carbon reduction, and electrolysis.19-21 Owing to the reactivity of these metals, special techniques are used to purify and work the metal produced. [Pg.95]

Carbon nitride, 27 214—215 conductivity of, 2 7 204-206 field emission properties of, 27 221 theoretical band structure calculations for, 27 203-204 Carbon nitride films, 2 7 205 Carbon nitride solids, 2 7 203 Carbonochloridic esters, 6 290 Carbon paper, 4 738-739 Carbon profile, in gas carburizing, 26 204 Carbon Raschig-ring tower packing, 22 745 Carbon reduction, of ferrovanadium, 25 518... [Pg.143]

Carbonylation of 4-en-2-ynyl carbonates offers a novel synthetic method for cross-conjugated 4-oxo-5-alkylidene-2-cyclopentenecarboxylates (Scheme 16.35) [38]. The primary product of the process appears to be a 2-vinyl-2,3-dienyl ester, leading to a palladacycle, which in turn follows CO insertion into the Pd-sp2 carbon, reductive elimination of Pd(0) species and isomerization, leading to the final product. [Pg.938]

Evans MCW, Buchanan BB, Arnon DI. 1966. A new ferredoxin-dependent carbon reduction cycle in a photosynthetic bacterium. Proc Natl Acad Sci USA 55 928-34. [Pg.96]

High temperature carbon reduction (Lucke et al. 2005). The technique is based on indnctive high temperatnre heating (>1,500°C ) leading to carbon monoxide. It enables complete dehydration and decomposition in a single continuous process. [Pg.195]

In ketones having a chiral cluster next to the carbonyl carbon reduction with lithium aluminum hydride gave one of the two possible diastereomers, erythro or threo, in larger proportions. The outcome of the reduction is determined by the approach of the reducing agent from the least hindered side (steric control of asymmetric induction) [828]. With lithium aluminum hydride as much as 80% of one diasteromer was obtained. This ratio is higher with more bulky reducing hydrides [837]. [Pg.112]

The D-ring of steroids has been cleaved frequently by a Beckmann fragmentation. Typical strategy uses enolate chemistry to introduce an oximino group at the a-carbonyl carbon. Reduction of the carbonyl (or addition of a carbanion) produces an a-hydroxy oxime which serves as good substrate for the fragmentation. Two examples of this strategy are shown in equations 213 and 214. [Pg.463]

Bismuth may be obtained from other ores, too. The recovery process however, depends primarily on the chemical nature of the ores. For example, the sulfide ore requires smelting, carbon reduction, and the addition of iron (to decompose any bismuth sulfide present). Oxide ores, on the other hand, are treated with hydrochloric acid to leach bismuth from the mineral. The bismuth chloride solution is then diluted with water to precipitate bismuth oxy-... [Pg.108]

Most potassium iodate, KIO3, is separated from the product mixture by crystallization and filtration. Remaining iodates are removed by evaporation of the solution and other processes, such as carbon reduction or thermal decompostion at 600°C to iodide ... [Pg.762]

Short term 2003-2007, will focus on demonstrations to prove the economic and technical feasibility of the technology, establish carbon reduction potential, and foster the development of early hydrogen infrastructure. Increasing awareness and benefits will also be included. Building on this Vision, the Government will develop a clear policy framework for fuel cells in order to provide a long-term continuity and a context in which industry can flourish. [Pg.181]


See other pages where Carbon, reduction is mentioned: [Pg.275]    [Pg.385]    [Pg.494]    [Pg.27]    [Pg.535]    [Pg.541]    [Pg.541]    [Pg.541]    [Pg.541]    [Pg.377]    [Pg.278]    [Pg.369]    [Pg.491]    [Pg.456]    [Pg.364]    [Pg.426]    [Pg.561]    [Pg.58]    [Pg.279]    [Pg.346]    [Pg.353]    [Pg.461]    [Pg.361]    [Pg.578]    [Pg.58]    [Pg.256]    [Pg.560]    [Pg.218]    [Pg.98]   
See also in sourсe #XX -- [ Pg.266 ]

See also in sourсe #XX -- [ Pg.345 ]

See also in sourсe #XX -- [ Pg.276 , Pg.291 ]

See also in sourсe #XX -- [ Pg.18 ]

See also in sourсe #XX -- [ Pg.29 , Pg.191 , Pg.192 ]

See also in sourсe #XX -- [ Pg.568 , Pg.611 ]




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Aldehydes reductions, carbon-nitrogen

Alkyl benzyl carbonates, reduction

Alkynes reductive coupling with carbon dioxide

Allyl carbonates reduction

Amination reactions reductions, carbon-nitrogen

Amines carbon-nitrogen double reduction

Amino acid derivatives reductions, carbon-nitrogen

Anaerobic carbon oxidation, sulfate reduction

Asymmetric hydrogenation reductions, carbon-nitrogen

Calcium carbonate, reduction

Calcium carbonate, reduction concentrations

Carbon Reduction Label

Carbon as a reductant

Carbon black particle size reduction

Carbon black reduction

Carbon carbothermic reduction

Carbon dioxide anaerobic reduction

Carbon dioxide ascorbic acid reduction

Carbon dioxide catalytic reduction

Carbon dioxide electrocatalytic reduction

Carbon dioxide electrochemical reduction

Carbon dioxide electrolytic reduction

Carbon dioxide electron-transfer reduction

Carbon dioxide emissions reduction

Carbon dioxide emissions reduction target

Carbon dioxide mobility reduction

Carbon dioxide multi-electron reduction

Carbon dioxide photochemical reduction

Carbon dioxide photoelectrochemical reduction

Carbon dioxide photosynthetic reduction

Carbon dioxide radical reduction with

Carbon dioxide reduction

Carbon dioxide reduction chemical reactions

Carbon dioxide reduction current potential

Carbon dioxide reduction electrode potential

Carbon dioxide reduction equilibria

Carbon dioxide reduction equilibria constant

Carbon dioxide reduction faradaic efficiency

Carbon dioxide reduction high pressure

Carbon dioxide reduction kinetic process

Carbon dioxide reduction mechanistic studies

Carbon dioxide reduction metal electrodes

Carbon dioxide reduction methanogenesis

Carbon dioxide reduction nonaqueous solutions

Carbon dioxide reduction potential

Carbon dioxide reduction pressure

Carbon dioxide reduction product distribution

Carbon dioxide reduction reactions

Carbon dioxide reduction relation

Carbon dioxide reduction solutions

Carbon dioxide reduction targets

Carbon dioxide reduction transport process

Carbon dioxide reduction, scheme

Carbon dioxide reductive couplings

Carbon dioxide reductive dimerization

Carbon dioxide, electrode reduction

Carbon dioxide, reduction fixation

Carbon dioxide, reduction of content

Carbon dioxide, reduction rates

Carbon disulfide, reduction

Carbon double bond reduction

Carbon emissions reduction

Carbon emissions reduction Kyoto Protocol

Carbon emissions reduction sequestration

Carbon microbial reduction

Carbon monoxide electrochemical reduction

Carbon monoxide hydrogenation reduction temperature

Carbon monoxide reduction

Carbon monoxide reductive coupling

Carbon oxidation/reduction reactions

Carbon oxide reduction

Carbon oxides electrolytic reduction

Carbon photochemical reduction

Carbon photoelectrochemical reduction

Carbon radicals cation pool reduction

Carbon reduction cycle

Carbon reduction cycle stoichiometry

Carbon reduction potentials

Carbon reduction secondary pathways

Carbon reductive methylations

Carbon tetrachloride reductive dehalogenation

Carbon tetrachloride, reduction

Carbon tetrachloride/bromide reduction

Carbon-boron bonds, reductive elimination

Carbon-boron bonds, reductive elimination reactions

Carbon-germanium bonds, reductive

Carbon-halogen bonds catalytic reduction

Carbon-halogen bonds reduction

Carbon-halogen bonds reductive cleavage

Carbon-halogen bonds, reductive metal

Carbon-halogen bonds, reductive metal insertion

Carbon-metal bonds palladium-catalyzed reductive coupling

Carbon-metal bonds reductive elimination

Carbon-metal bonds reductive formation

Carbon-nitrogen bond formation reductions

Carbon-nitrogen bond forming reactions reductive-cyclization

Carbon-nitrogen double bonds, reduction

Carbon-oxygen bond formation reductions

Carbon-oxygen bond reductive

Carbon-oxygen bond reductive cleavage

Carbon-oxygen bonds benzylic, reduction

Carbon-oxygen double bonds reduction

Carbon-silicon bonds reductive cleavage

Carbon-silicon bonds, reductive elimination

Carbon-sulfur bonds reduction

Carbon=nitrogen double bonds, reductions, sodium

Carbon=oxygen bond reduction

Carbonate reduction potential

Carbonate, photochemical reduction

Carbonate, photochemical reduction formaldehyde

Carbonates reduction

Carbonates reduction

Catalysis carbon dioxide reduction

Catalysts, for carbon dioxide reduction

Catalytic reduction of carbon monoxide

Dimerization carbon dioxide reduction

Dimethyl carbonate reductive carbonylation

Electrocatalytic reduction of carbon dioxide

Electrochemical Reduction of Carbon Dioxide

Electrochemical reduction of carbon

Electrochemical reduction of carbon monoxide

High-temperature reduction , effects carbon monoxide hydrogenation

Homogeneous Reduction of Carbon Monoxide

Hydrogen carbon monoxide reduction

Ketones carbon-nitrogen double reduction

Ketones reductions, carbon-nitrogen

Mechanism of carbon dioxide reduction

Metal—carbon triple bonds reduction reactions

Molten carbonate cathodic oxygen reduction

Nitric oxide reduction by carbon monoxide

Nitric oxide reduction carbon monoxide effect

Nitric oxide reduction with carbon monoxide

Nuclear power carbon emissions reduction

Organic carbon oxidation-reduction balance

Organic carbon reduction

Oxygen cathodic reduction, molten carbonate fuel

Pathways, for carbon dioxide reduction

Photocatalysed Reduction of Carbonate

Photocatalytic carbon dioxide reduction

Photochemical Reduction of Carbon Dioxide

Photochemical reduction of carbonate

Photochemical, Electrochemical, and Photoelectrochemical Reduction of Carbon Dioxide

Photoelectrochemical Reduction of Carbon Dioxide

Photosynthesis, artificial carbon dioxide reduction

Photosynthetic Carbon Reduction (Calvin) Cycle

Photosynthetic carbon reduction

Photosynthetic carbon reduction cycle

Platinum electrodes carbon dioxide reduction

Process carbon reductions

Propylene carbonate , reduction

Reaction of Carbon Dioxide Reduction

Reduction and Addition at Carbon-Nitrogen Double Bonds

Reduction carbon-fluonne bond

Reduction carbon-phosphorus bonds

Reduction hydride delivery from carbon

Reduction in carbon

Reduction number carbon content

Reduction of CO2 to Carbon Monoxide or Formate

Reduction of Carbon Dioxide at Illuminated p-Type Semiconductor Electrodes

Reduction of Carbon Dioxide at Metal Electrodes

Reduction of Carbon Dioxide at Semiconductor Electrodes in the Dark

Reduction of Carbon Dioxide by Hydrogen

Reduction of Carbon-Centered Radicals by Electron Transfer

Reduction of Carbon-Halogen Bonds

Reduction of Carbon-rich Compounds

Reduction of NO, with Propene, Carbon Monoxide or Hydrogen

Reduction of Residual Monomer in Latex Products Using High-Pressure Carbon Dioxide

Reduction of carbon dioxide

Reduction of carbon monoxide

Reduction of carbon tetrachloride

Reduction of metal oxides with carbon

Reduction of nitric oxide by carbon

Reduction of nitric oxide by carbon monoxide

Reduction of nitrogen oxides with carbon monoxide

Reduction reaction alkyl carbonate solutions

Reduction with carbon

Reductions at Carbon

Reductions of carbon oxides

Reductive alkylation affected carbons

Reductive fission of carbon-heteroatom bonds

Refractories and Carbon Cathode Materials for Aluminium Reduction Cells

Selectivity in the Reduction of Carbonyl Derivatives Containing a Chiral Carbon

Silicon-carbon compounds reducting agents

Size reduction, carbon nanotubes

Soil Reduction Capacity Effects on Carbon Assimilation and Radial Oxygen Loss

Sulfate Reduction and Organic Carbon Mineralization

The O2 Reduction on Carbon

The Photosynthetic Carbon Reduction Cycle

The reduction of stable oxides in carbon arc furnaces

Vinylene carbonate reduction potential

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