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Lead dioxide, desulfurization with

Newer secondary recovery plants use lead paste desulfurization to reduce sulfur dioxide emissions and waste sludge generation during smelting. Battery paste containing lead sulfate and lead oxide is desulfurized with soda ash to produce market-grade sodium sulfate solution. The desulfurized paste is processed in a reverberatory furnace. The lead carbonate product may then be treated in a short rotary furnace. The battery grids and posts are processed separately in a rotary smelter. [Pg.89]

Due to the pyrometallurgical and hydrometallurgical difficulties associated with recovering lead from lead sulfate, the paste must undergo a desulfurization process to remove the unwanted sulfate ion. The paste, which is dark brown due to its content of lead dioxide, is pumped as a slurry into reaction tanks where sodium carbonate is added (see also Chapter 16). The resultant reaction allows the conversion of the sulfate present in the slurry to lead carbonate via the following reaction ... [Pg.495]

RSR EW process [12], This process uses fluorosilicic acid as the leaching solution. To convert the desulfurized paste to a form that is accessible by the solution, the paste is dried and then heated to convert the lead carbonate and lead dioxide to lead oxide. Graphite anodes coated with lead dioxide are used for electrowinning the lead. [Pg.503]

In addition there are certain other methods for the preparation such compounds. Upon heating of the thionocarbonate 2 with a trivalent phosphorus compound e.g. trimethyl phosphite, a -elimination reaction takes place to yield the olefin 3. A nucleophilic addition of the phosphorus to sulfur leads to the zwitterionic species 6, which is likely to react to the phosphorus ylide 7 via cyclization and subsequent desulfurization. An alternative pathway for the formation of 7 via a 2-carbena-l,3-dioxolane 8 has been formulated. From the ylide 7 the olefin 3 is formed stereospecifically by a concerted 1,3-dipolar cycloreversion (see 1,3-dipolar cycloaddition), together with the unstable phosphorus compound 9, which decomposes into carbon dioxide and R3P. The latter is finally obtained as R3PS ... [Pg.69]

Since this estimated share pattern was derived mainly from projection of trends (particularly long term trends), it seems appropriate to focus on oil and speculate as to how possible future events might alter its forecast future role. Events related to pollution control tend to indicate increases in petroleum demand. The use of lead free gasoline, for instance, requires additional refinery processing, which in turn consumes more petroleum fuel. Increasingly tighter controls on sulfur dioxide emissions from thermal-electric plants will cause a shift from coal to low sulfur fuel oil if there is no economic flue-gas desulfurization to cope with coals sulfur content. [Pg.227]


See other pages where Lead dioxide, desulfurization with is mentioned: [Pg.216]    [Pg.131]    [Pg.216]    [Pg.93]    [Pg.362]    [Pg.102]    [Pg.66]    [Pg.93]    [Pg.93]    [Pg.703]    [Pg.15]    [Pg.709]   
See also in sourсe #XX -- [ Pg.98 ]

See also in sourсe #XX -- [ Pg.98 ]




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Desulfurization (with

Lead dioxide

With lead dioxide

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