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Frans_M_Everaerts_Isotachophoresis_378342.pdf

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SEPARATION USING A THERMOMETRIC DETECTOR 341<br />

At higher pH (5-7), the differences in step heights are rather small and it can be<br />

concluded that these systems are less suitable for the separation of complicated mixtures.<br />

TABLE 14.5<br />

OPERATIONAL SYSTEM AT pH 5 SUITABLE FOR ANIONIC SEPARATIONS (WPyrC1)<br />

This operational system was used only in experiments in which only a thermometric detector was<br />

available.<br />

Solvent: H, 0.<br />

Electric current @A): Ca, 70.<br />

Electrolyte<br />

Leading Terminating<br />

Anion cl- (CH,),AsOO-<br />

Concentration 0.01 N Cu. 0.01 N<br />

Counter ion NC5H5+ Tris+<br />

PH 5.0 Ca. 5<br />

Additive None None<br />

TABLE 14.6<br />

OPERATIONAL SYSTEM AT pH 6 SUITABLE FOR ANIONIC SEPARATIONS (WHiscl)<br />

Solvent: H, 0.<br />

Elechc current @A): Ca. 70.<br />

Electrolyte<br />

Leading Terminating<br />

Anion a- (CH, AsOO-<br />

Concentration 0.01 N Ca. 0.01 N<br />

Counter ion His+ Tris+<br />

PH 6 Ca. 6<br />

Additive None None<br />

TABLE 14.7<br />

OPERATIONAL SYSTEM AT pH 7 SUITABLE FOR ANIONIC SEPARATIONS (WIrncl)<br />

Solvent : H, 0.<br />

Electric current @A): Ca. 70.<br />

Electrolyte<br />

Leading Terminating<br />

Anion cl- Benzyl-dl- Asn-<br />

Concentration 0.01 N Ca. 0.01 N<br />

Counter ion Imidazole+ Tris+<br />

PH 7 Ca. 6<br />

Additive None None

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