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In addition, phase separation temperature of binary blend was higher than that of corresponding ternary blend.
The impact strength of the PLLA/PEO (80/20) blend was higher than that of the neat polymer for all preparation conditions, and for both the impact strength decreased with increasing crystallization temperature (and therefore also with increasing spherulite size).
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The Tm and crystallinity (Cr) of PHB in the PHB/EC (8020) blend are higher than those of pure PHB in most cases because of the higher Tcc.
The novel blends of HIPS and aHIPS reported here exhibit synergism, the impact strength of the blend being higher than expected as a linear average of the component properties.
Crystallinity of rich-i-PS phase in the blend is higher than the corresponding percent of i-PS (i-PS≥30%) while its crystallinity is less than the percent of i-PS (i-PS≤10%).
On the other hand, some of the impacts from the blend are higher for ethanol from wheat straw than that for pure petrol.
C. sativa is high in polyunsaturated fatty acids such as linoleic acid (18 2; carbons:double bonds) and alpha-linolenic acid (18 3) as well as very long chain fatty acids (greater than 18 carbons) such as 11-eicosenoic acid (20 1) [ 18], while an ideal biodiesel blend is high in oleic acid (18 1) [ 19].
This is why model predictions for PS/PMMA (20/80, 30/70) blends are higher than experimental results.
The activation energies of the blends are higher than that of the neat resin.
The Tgs of PSI100/P4VPy and PSI100/P2VPy blends are higher than those calculated from the additivity rule.
The thermal stability of the respective blends is higher than that of the POT HNO3 and PMT HNO3 salts.
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