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Oxides dioxides

The necessary oxygen need not be obtained from the air. Sulphur dioxide is readily obtained by heating sulphur with certain oxides, dioxides or peroxides. Sulphur vapour and steam heated at a suitable temperature in the presence of iron oxide, as catalyst react to form sulphur dioxide and hydrogen which may be recovered separately. With manganese dioxide and powdered sulphur the reaction proceeds as follows ... [Pg.103]

Gallic acid Manganese oxide, dioxide, peroxide, nitrate... [Pg.99]

Part 1 includes the three-membered rings containing one nitrogen or sulfur thus it consists of chapters on Aziridines, Azirines, and Three-Membered Rings Containing Sulfur, which includes Thiiranes, Thiirenes, as well as their respective Oxides, Dioxides, and Onium salts. [Pg.934]

Fig. 20.2. The gas phase molecular structures and S=0 bond energies of sulfur oxide, dioxide and trioxide. Fig. 20.2. The gas phase molecular structures and S=0 bond energies of sulfur oxide, dioxide and trioxide.
Thiolans, Thians, Thiepans, Thiocans, and their Oxides, Dioxides, and Imides... [Pg.233]

Thioaldehydes and thioketones oxidized at sulfur are additively named as thioaldehyde oxides, dioxides and thioketone oxides, dioxides, respectively. Besides, the traditional names sulfine and sulfene are still used for these species. [Pg.125]


See other pages where Oxides dioxides is mentioned: [Pg.488]    [Pg.90]    [Pg.611]    [Pg.290]    [Pg.503]    [Pg.512]    [Pg.513]    [Pg.430]    [Pg.430]    [Pg.68]    [Pg.173]    [Pg.148]    [Pg.148]    [Pg.626]    [Pg.201]    [Pg.202]    [Pg.163]    [Pg.170]    [Pg.171]    [Pg.222]    [Pg.626]    [Pg.222]    [Pg.353]    [Pg.304]    [Pg.407]    [Pg.560]   
See also in sourсe #XX -- [ Pg.350 , Pg.351 ]




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1,3,2-Dioxathiolane 2,2-dioxides with ethylene oxide

1.2.6- Thiadiazines, 1-oxides, 1,1-dioxides

A-diones oxidation of ketones by selenium dioxide

Acids sulfur dioxide oxidation rates

Aerobic oxidation supercritical carbon dioxide

Alcohols benzylic, oxidation by manganese dioxide

Alcohols from alkenes by selenium dioxide oxidation

Alcohols oxidation by manganese dioxide

Alcohols propargylic, oxidations, manganese dioxide

Alcohols saturated, oxidations, manganese dioxide

Alcohols, secondary, oxidation with manganese dioxide

Aldehydes amine oxidations, manganese dioxide

Allylic alcohols oxidation by manganese dioxide

Allylic oxidation with manganese dioxide

Amides amine oxidations, manganese dioxide

Amine oxides 2,4-dioxides

Anode ruthenium oxide/titanium dioxide

Aqueous-supercritical carbon dioxide oxidation

Benzotetrazine 1,3-dioxides and 1,2,3-Benzotriazine 3-oxides

Biocides, oxidizing chlorine dioxide

Calcium oxide reaction with silicon dioxide

Carbon dioxide from complete oxidation

Carbon dioxide from methane oxidation

Carbon dioxide oxidation effect

Carbon dioxide oxidation numbers

Carbon dioxide oxidation states

Carbon dioxide oxidations

Carbon dioxide, and oxidation

Carbon dioxide, from catalytic oxidation

Carbon dioxide, from catalytic oxidation metal catalysts

Carbon dioxide, from catalytic oxidation oxide catalysts

Carbon monoxide oxidation manganese dioxide catalyst

Carbon sulfur dioxide oxidation

Catalysts sulfur dioxide oxidation

Catalyzed oxidation of sulfur dioxide

Cellulose oxidation with nitrogen dioxide

Cephem dioxides allylic oxidation

Cephem dioxides oxidative rearrangement

Cerium dioxide, oxidation

Chemical oxidative degradation nitrogen dioxide

Chlorine dioxide oxidant

Chlorine dioxide oxidation equivalents

Chlorine dioxide oxidation pathways

Chlorine dioxide oxidations

Chromium dioxide, oxidation

Chromium dioxide, oxidation alcohols

Chromium dioxide, oxidation aldehydes

Complex oxides with cerium dioxide

Complex oxides with thorium dioxide

Dimerization nitric oxide-nitrogen dioxide reactions

Dioxide and Nitrous Oxide

Dioxide mixed oxides

Dioxide oxide reduction

Diploicin manganese dioxide oxidation

Effectiveness, catalyst sulfur dioxide oxidation

Ethylene oxide -carbon dioxide mixture

Ethylene oxide -carbon dioxide mixture sterilization

Ethylene oxide reaction with carbon dioxide

Halogen oxides chlorine dioxide

Heterocyclic alcohols, oxidations, manganese dioxide

Heterocyclic, oxidations, manganese dioxide

Hydroxylamines oxidations, manganese dioxide

Lead dioxide oxidant

Lead dioxide oxidation

Lead oxides/dioxides

Lithium-manganese dioxide oxide electrodes

Magnesium oxide, reaction with carbon dioxide

Manganese dioxide allylic oxidation

Manganese dioxide oxidation

Manganese dioxide oxidation mechanism

Manganese dioxide oxidation sensitivity

Manganese dioxide oxidation side reactions

Manganese dioxide oxidation solvent

Manganese dioxide oxidation temperature

Manganese dioxide, as oxidant

Manganese dioxide, oxidation of allylic

Manganese dioxide, oxidation of allylic alcohols

Model studies, sulfur dioxide oxidation

Nickel dioxide oxidant

Nitric Oxide-Nitrogen Dioxide Detector

Nitric Oxide-Nitrogen Dioxide Detector Tube

Nitric acid nitrogen dioxide oxidation

Nitric oxide dioxide

Nitric oxide nitrogen dioxide and

Nitric oxide nitrogen dioxide and ozone

Nitric oxide plus nitrogen dioxide

Nitrogen dioxide , nitric oxide indirect

Nitrogen dioxide atmospheric oxidation

Nitrogen dioxide mineral oxides, reactions with

Nitrogen dioxide oxidation

Nitrogen dioxide oxidation mechanism

Nitrogen dioxide oxidation polysaccharides

Nitrogen dioxide oxidation specificity

Nitrogen dioxide oxidation with

Nitrogen dioxide oxides

Nitrogen dioxide, excited, emission oxide

Nitrogen dioxide, excited, emission reaction with nitric oxide

Nitrous Oxide, Ozone, and Nitrogen Dioxide

Oxidation activated manganese dioxide-silica

Oxidation allylic alcohol, manganese dioxide

Oxidation by manganese dioxide

Oxidation by nitrogen dioxide

Oxidation by selenium dioxide

Oxidation in Supercritical Carbon Dioxide

Oxidation in carbon dioxide

Oxidation manganese dioxide, active

Oxidation manganese dioxide, benzyl alcohol

Oxidation of dissolved sulfur dioxide

Oxidation of hydrogen by nitrogen dioxide

Oxidation of sulfur dioxide

Oxidation photocatalyzed titanium dioxide

Oxidation products carbon dioxide formation

Oxidation reactions activated manganese dioxide-silica

Oxidation supercritical carbon dioxide

Oxidation to Diorgano Tellurium Dioxides

Oxidation to dioxide

Oxidation uranium dioxide

Oxidation with carbon dioxide

Oxidation with chlorine dioxide

Oxidation with manganese dioxide

Oxidation with sulfur dioxide

Oxidation, basic conditions manganese dioxide

Oxidation, titanium dioxide pigments

Oxidation-Wittig reactions, manganese dioxide

Oxidations of alcohols with manganese dioxide

Oxidation—continued with selenium dioxide

Oxidative cleavage manganese dioxide

Oxide dioxide difluorides

Oxide fuels thorium dioxide

Oxide fuels uranium dioxide

Oxides and dioxides

Oxides dioxide . sesquioxide

Oxides, reductions, thiourea dioxide

Oximes oxidations, manganese dioxide

Periodic operation, sulfur dioxide oxidation

Periodic operation, sulfur dioxide oxidation applications

Photochemical oxidation of sulfur dioxide

Plutonium dioxide oxide reduction

Propylene oxide reaction with carbon dioxide

RILEY Selenium dioxide oxidation

Ruthenium dioxide oxidation

Ruthenium dioxide oxidation, allylic alcohols

Ruthenium dioxide oxidative cleavage of alkenes

Ruthenium dioxide, alcohol oxidant

Selenium dioxide Enol oxidation

Selenium dioxide allylic oxidation

Selenium dioxide allylic oxidation with

Selenium dioxide oxidant

Selenium dioxide oxidation alkenes

Selenium dioxide oxidation ketones

Selenium dioxide oxidation with

Selenium dioxide oxidative rearrangement

Selenium dioxide, oxidation

Selenium dioxide, oxidation methyl group

Sigmatropic rearrangements in selenium dioxide oxidation

Sodium oxide dioxide

Sulfur dioxide aqueous-phase oxidation

Sulfur dioxide atmospheric oxidation

Sulfur dioxide carbon monoxide oxidation poisoning

Sulfur dioxide heterogeneous oxidation

Sulfur dioxide homogeneous oxidation

Sulfur dioxide hydrogen peroxide, oxidation

Sulfur dioxide metal-catalyzed oxidation

Sulfur dioxide nitrogen oxides

Sulfur dioxide organic peroxide oxidation

Sulfur dioxide oxidation

Sulfur dioxide oxidation accuracy of models

Sulfur dioxide oxidation activated carbon performances

Sulfur dioxide oxidation advantages

Sulfur dioxide oxidation applications

Sulfur dioxide oxidation catalyst beds

Sulfur dioxide oxidation catalytic reactors

Sulfur dioxide oxidation effects

Sulfur dioxide oxidation equations

Sulfur dioxide oxidation geographic distribution

Sulfur dioxide oxidation heat removal

Sulfur dioxide oxidation kinetics

Sulfur dioxide oxidation operating conditions

Sulfur dioxide oxidation performance

Sulfur dioxide oxidation physical mechanism

Sulfur dioxide oxidation process

Sulfur dioxide oxidation rate

Sulfur dioxide oxidation rate enhancement

Sulfur dioxide oxidation rate model

Sulfur dioxide oxidation reaction

Sulfur dioxide oxidation reactor design

Sulfur dioxide oxidation reactors

Sulfur dioxide oxidation reactors reaction equilibria

Sulfur dioxide oxidation reactors temperature profiles

Sulfur dioxide oxidation removal

Sulfur dioxide oxidation space velocity

Sulfur dioxide oxidation temperature

Sulfur dioxide oxidation temperature changes

Sulfur dioxide oxidation water role

Sulfur dioxide oxidizing halides

Sulfur dioxide potential oxidants

Sulfur dioxide radical oxidation

Sulfur dioxide, catalytic oxidation

Sulfur dioxide, optimization oxidation

Sulfur dioxide, oxidative reactions with

Sulfur dioxide, sulfided iron oxide

Sulfur dioxide, sulfided iron oxide regeneration

Sulfur oxides dioxide control technologies

Sulphur dioxide oxidation

Sulphur dioxide, heterogeneous oxidation

The Oxidation of Sulphur Dioxide

Titanium dioxide oxides

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