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Oxidation moles

The results show the same tendency as previously in that the stronger the surface activity, the stronger the toxicity, and the higher the ethylene oxide mole ratio, the lower the toxicity. [Pg.134]

Oxidized component Moles HIO4 consumption per mole Amount oxidized (moles/100 moles) Calculated HIOi consumption (moles/100 moles)... [Pg.167]

Oxidation, % Moles of MeOH per 100 chaifhunits Chain units reacting with MeOH, %... [Pg.151]

It is clear from Table 21.1 that the redox active centers (Mn , Cr [15]) in the AlPO microporons framework (pore diameter 7.3 A) is more effective than the Ti" active center in the microporons silicalite (TS-1 see US 4410501) framework (pore diameter 5.5 A), and that the yield of the desired product with the first of these catalysts are superior to those of the latter. The choice of solvent and substrate oxidant mole ratio has a significant inflnence on the activity and selectivity in these reactions. [Pg.460]

Ratio, moles calcium oxide/moles sulfur ... [Pg.146]

Xhc - hydrocarbon conversion, S a - selectivity to maleic anhydride, W.IO rate of n-butane oxidation, mole/s.atom V... [Pg.792]

Except for a few points, the parity plot of benzene and nitrous oxide mole fractions displays a satisfactory agreement with a maximum deviation of 10% (Fig. 6 left). The higher deviation between calculated and measured phenol values (Fig. 6 right) stems from the simplicity of the model for the description of more complex consecutive reactions of phenol. [Pg.853]

Estimate the total amount of oxidation (moles/year) caused by the reduction of SO4" to S(—II). Compare this to the total amount of oxidation by Oj. [Pg.299]

The gel compositions were further modified and supplemented with aluminum sulphate (0.0004 moles), Al-NU-1 seeds (0.3 - 0.4 wt%), H3PO4 to generate PO/ oxyanions in the hydrogel, in order to improve synthesis efficiency. The final gel composition in terms of oxide mole ratios was in the following range ... [Pg.203]

The chlorine reduced to ammonia-oxidized mole ratio is 4, while on a weight basis the ratio is 4 X = 20.3. [Pg.394]

Ethylene Oxide> moles Methanol Ethanol Propanol Butanol Hexanol... [Pg.513]

Sample identifi- cation Approximate molecular weight Hydroxyl number (mg KOH/g polyol) Ethylene oxide tipping moles ethylene oxide/ mole glycerol (by weight addition) Reactivity, i.e., percentage of original phenyl isocynate addition consumed in ... [Pg.57]

Moles Ethylene Oxide/Moles Fatty Alcohol... [Pg.244]

Ethylene Oxide Tipping, Moles Ethylene Oxide/Mole Glycerol (by Weight Addition)... [Pg.314]

Figure 5.8 Micellar solubilization in polyoxyethylene stearates. The number of equivalents solubilized per equivalent of oxyethylene group is plotted as the ordinate against the stearate-ethylene oxide mole ratio for the surfactants. , p-hydroxybenzoic acid O, benzoic acid A, o-hydroxybenzoic acid V, methyl p-hydroxybenzoate andt>, propyl p-hydroxybenzoate. From Mukerjee [81] with permission. Figure 5.8 Micellar solubilization in polyoxyethylene stearates. The number of equivalents solubilized per equivalent of oxyethylene group is plotted as the ordinate against the stearate-ethylene oxide mole ratio for the surfactants. , p-hydroxybenzoic acid O, benzoic acid A, o-hydroxybenzoic acid V, methyl p-hydroxybenzoate andt>, propyl p-hydroxybenzoate. From Mukerjee [81] with permission.

See other pages where Oxidation moles is mentioned: [Pg.323]    [Pg.197]    [Pg.934]    [Pg.540]    [Pg.125]    [Pg.125]    [Pg.184]    [Pg.935]    [Pg.1144]    [Pg.482]    [Pg.444]    [Pg.49]    [Pg.459]    [Pg.63]    [Pg.83]    [Pg.222]    [Pg.482]    [Pg.554]    [Pg.336]    [Pg.33]    [Pg.139]    [Pg.118]    [Pg.81]    [Pg.99]    [Pg.139]   
See also in sourсe #XX -- [ Pg.137 ]




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