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Decane, retention diagram

Fig. 2. Retention diagrams for (o, A, ) n-decane and (o) n-pen> tane on poly(vinyl chloride) plasticized with dioctyl phthalate... Fig. 2. Retention diagrams for (o, A, ) n-decane and (o) n-pen> tane on poly(vinyl chloride) plasticized with dioctyl phthalate...
Figure 4. Retention diagram for decane on high-density polyethylene. Tm is at the cusp. (Reprinted from ref. 19. Copyright 1971 American Chemical Society.)... Figure 4. Retention diagram for decane on high-density polyethylene. Tm is at the cusp. (Reprinted from ref. 19. Copyright 1971 American Chemical Society.)...
Fig. 5.3. — The retention diagram for n-decane on low density polyethylene O — first run — after 24 hours [166]. Fig. 5.3. — The retention diagram for n-decane on low density polyethylene O — first run — after 24 hours [166].
Fig. 5.8. — The retention diagram and melting curve for n-decane on polypropylene [189],... Fig. 5.8. — The retention diagram and melting curve for n-decane on polypropylene [189],...
Fig. 5.14. — The retention diagram for n-decane Fig. 5.14. — The retention diagram for n-decane <G, A, ) and n-pentane ( ) on poly(vinyl chloride) plasticized with dioctylphtlialate [199].
Using n-decane and n-pentane as solute the retention diagrams of poly(vinyl chloride) plasticized with various amounts of di-n-octylphtha-late [199] were determined. The glass transition ranges from 80 to —15°C (Fig. 5.14), in agreement with the values obtained by differential calorimetry. Blends of polystyrene and dioctylphthalate behave similarly. [Pg.171]


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