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Phenol, separation from benzyl alcohol

Miniaturized columns have provided a decisive advantage in speed. Uracil, phenol, and benzyl alcohol were separated in 20 seconds by CEC in an 18 mm column with a propyl reversed phase.29 A19 cm electrophoretic channel was etched into a glass wafer, filled with a y-cyclodextrin buffer, and used to resolve chiral amino acids from a meteorite in 4 minutes.30 A 6 cm channel equipped with a syringe pump to automate sample derivatization was used to separate amino acids modified with fluorescein isothiocyanate.31 Nanovials have been used to perform tryptic digests on the 15 nL scale for subsequent separation on capillary Electrophoresis.32 A microcolumn has also been used to generate fractions representing time-points of digestion from a 40 pL sample.33 A disposable nanoelectrospray emitter has been... [Pg.429]

The data for this solvent were not used to calculate the parameters in Table 54. Similarly the data for decarboxylation of oxanilic acid in anisole were not used for the AH -AS correlation. With the reported AH value of 32.6 kcal.mole , the entropy of activation is calculated to be 3.59 0.03 eu compared to the reported value of 11.1 eu. In the decarboxylation of malonic acid, the data obtained with pyridine and ) -mercaptopropionic acid solvents deviated considerably from the plots and were not included in the correlation. The data for malonic acid decarboxylation appeared to be best correlated by two lines. One line was described by the following solvents acids, phenols, nitro-aromatics, benzaldehyde, and the melt the other line involved amines, alcohols, dimethylsulfoxide and triethyl phosphate. The latter line was not as well defined as the former. However, it was our intention to correlate as many solvents as possible with a minimum number of lines. The data for decarboxylation of malonic acid in water and in benzyl alcohol fell between these two lines and were not included in either correlation. The data for decarboxylation of benzylmalonic acid also appeared to be best correlated with two lines. One line was defined by the cresols, acids and the melt, while the other line was defined by the amines. Decarboxylation of cinnamalmalonic acid was correlated by two lines as indicated in Table 54. Similarly j8-resorcylic acid was correlated by two lines. The separation of data into parallel lines is presumably due to multiple solvation mechanisms . In support of this interpretation it is seen that when two lines are observed, acids fall into one line and amines into the other. It is not unexpected that the solvation mechanisms for these two classes of solvents would differ. It is interesting to note that all of the nitrogen containing acids are correlated reasonably well with one line for both basic and acidic solvents. Also the AHq values fall in a rather narrow range for all of the acids. From the values of p in Table 54, there appears to be little correlation between this parameter and the melting point of the acids, contrary to prior reports " ... [Pg.474]

Crystalline semi-carbazones were prepared, which, when decomposed hy oxalic acid, yielded aldehydes and ketones, having odours recalling those of the ketone, irone, and of anisaldehyde. The oil, freed from these bodies and saponified, was then treated by the phthalic acid method, and a mixture of alcohols separated. Crystalline diphenyl-urethanes were obtained, which melted sharply at 50 and at 82 , thus proving the presence of nerol and geraniol. The presence of benzyl alcohol was proved by the preparation of a phthalic acid este melting at 106 . Linalol is also probably present in traces. From the saponification residues traces of a phenol (prohahly para-cresol) lactone (of coumario acid ), acetic and salicylic acids were obtained. Indol and methyl-anthranilate were also isolated in a state of purity. [Pg.501]


See other pages where Phenol, separation from benzyl alcohol is mentioned: [Pg.501]    [Pg.72]    [Pg.212]    [Pg.8]    [Pg.371]    [Pg.1310]    [Pg.501]    [Pg.136]    [Pg.373]    [Pg.915]    [Pg.278]   
See also in sourсe #XX -- [ Pg.49 ]




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Alcohol benzylation

Alcohols benzyl alcohol

Alcohols separation

Benzyl alcohol

Benzyl phenolic

Benzylation benzyl alcohol

Benzylic alcohols

From phenols

Phenol alcohols

Phenol benzylic

Phenol separators

Phenolic alcohols

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