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Oxides in gases

Neveu, B. and Flamon, C. (1999) Method for reducing nitrous oxide in gases and corresponding catalyst, World Patent 9964139. [Pg.319]

Furan can be catalyticaHy oxidized in the vapor phase with oxygen-containing gases to maleic anhydride (93). Oxidation with bromine or in an electrochemical process using bromide ion gives 2,5-dimethoxy-2,5-dihydrofuran [332-77-4] (19) which is a cycHc acetal of maleic dialdehyde (94—96). [Pg.81]

A smaller factor in ozone depletion is the rising levels of N2O in the atmosphere from combustion and the use of nitrogen-rich fertilizers, since they ate the sources of NO in the stratosphere that can destroy ozone catalyticaHy. Another concern in the depletion of ozone layer, under study by the National Aeronautics and Space Administration (NASA), is a proposed fleet of supersonic aircraft that can inject additional nitrogen oxides, as weU as sulfur dioxide and moisture, into the stratosphere via their exhaust gases (155). Although sulfate aerosols can suppress the amount of nitrogen oxides in the stratosphere... [Pg.503]

These equations are based on the thermodynamically stable species. Further research is needed to clarify the actual intermediate formed during overcharge. In reahty, the oxygen cycle can not be fully balanced because of other side reactions, that include gtid corrosion, formation of residual lead oxides in the positive electrode, and oxidation of organic materials in the cell. As a result, some gases, primarily hydrogen and carbon dioxide (53), are vented. [Pg.575]

Decomposition Flame Arresters Above certain minimum pipe diameters, temperatures, and pressures, some gases may propagate decomposition flames in the absence of oxidant. Special in-line arresters have been developed (Fig. 26-27). Both deflagration and detonation flames of acetylene have been arrested by hydrauhc valve arresters, packed beds (which can be additionally water-wetted), and arrays of parallel sintered metal elements. Information on hydraulic and packed-bed arresters can be found in the Compressed Gas Association Pamphlet G1.3, Acetylene Transmission for Chemical Synthesis. Special arresters have also been used for ethylene in 1000- to 1500-psi transmission lines and for ethylene oxide in process units. Since ethylene is not known to detonate in the absence of oxidant, these arresters were designed for in-line deflagration application. [Pg.2305]

Treatment of slimes for economic recovery of silver, gold, selenium, tellurium, and other trace elements requires fusion and oxidation in a furnace. The furnace gases are exhausted through a wet scrubber followed by an ESP to recover the metals. [Pg.502]

Nitric Acid Plant - Nitrogen oxide levels should be controlled to a maximum of 1.6 kg/t of 100% nitric acid. Extended absorption and technologies such as nonselective catalytic reduction (NSCR) and selective catalytic reduction (SCR) are used to eontrol nitrogen oxides in tail gases. [Pg.66]

The use of high-sulfur-content fuels could enhance undesirable carbon-forming tendencies in the engine combustion chamber as well as result in higher amounts of corrosive sulfur oxides in the combustion gases. Mercaptans (a type of sulfur compound) cause odor problems and can attack some fuel system elastomers. Both the concentration of total sulfur compounds as well as the concentration of mercaptan sulfur compounds arc controlled in... [Pg.110]

Premixed Flame. For this type of flame, the fuel and oxidizer—both gases—arc mixed together before flowing to the flame zone (the thin region of the flame). A typical example is the inner core of a Bunsen burner (Figure 1), or combustion in an auto-... [Pg.271]

Pfeiffer contends that, in undeoxidised nickel at least, the low sulphur contents normally found are insufficient to cause grain-boundary embrittlement and that the latter is, generally, due to intergranular oxides. In the presence of sulphur-containing gases, however, the level of sulphur required. [Pg.1056]


See other pages where Oxides in gases is mentioned: [Pg.240]    [Pg.58]    [Pg.1669]    [Pg.1903]    [Pg.240]    [Pg.58]    [Pg.1669]    [Pg.1903]    [Pg.2809]    [Pg.24]    [Pg.429]    [Pg.43]    [Pg.358]    [Pg.347]    [Pg.199]    [Pg.215]    [Pg.104]    [Pg.421]    [Pg.421]    [Pg.161]    [Pg.198]    [Pg.371]    [Pg.466]    [Pg.485]    [Pg.227]    [Pg.469]    [Pg.465]    [Pg.512]    [Pg.1541]    [Pg.177]    [Pg.481]    [Pg.629]    [Pg.125]    [Pg.66]    [Pg.135]    [Pg.560]    [Pg.1257]    [Pg.90]    [Pg.274]    [Pg.493]    [Pg.372]    [Pg.426]    [Pg.239]   
See also in sourсe #XX -- [ Pg.1669 ]




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Catalytic Oxidation by Nitrous Oxide in the Gas Phase

Conjugated Reactions of Oxidation with Hydrogen Peroxide in the Gas Phase

Criteria for Metal Oxide Application in Solid Electrolyte-Based Gas Sensors

Gases oxidizing

Homogeneous oxidation in the gas phase

Metal oxide semiconductor gas sensors in environmental monitoring

Metal oxide semiconductors in detecting environmentally important gases

Oxidation Reactions in the Gas Phase

Oxidation by Nitrous Oxide in the Gas Phase

Oxidation in flue gases

Oxidation in gas-phase

Oxidation in the Gas Phase

Oxidation of CO and Hydrocarbons in Exhaust Gas Treatments

Oxides of Ga, In and

Oxygen in catalytic SO2 oxidation gases

Rate Constants for Reactions in Gas-phase Hydrocarbon Oxidation

SO2 oxidation efficiency O2 in gas concentration

SO3 concentrations in industrial gases SO2 oxidation efficiency affected

SO3 concentrations in industrial gases catalytic oxidation

Sour Gas Removal in Partial Oxidation Processes

Surface Modifiers for Metal Oxides in Conductometric Gas Sensors

Test Method for Sulfur in Petroleum Gas by Oxidative Microcoulometry

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