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The initial degradation of this miscible blend was slightly slower than that of the PLLA homopolymer.
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The shear viscosity of the ternary blend is slightly lower than that of the binary blend.
The thermal stability of the blends was slightly affected with increasing NaAlg content.
It is also found that the cell density in the microcellular blends is slightly larger than that in the microcellular polystyrene.
Compared to the 10 wt% ESO/PLA blend, the glass transition temperatures and thermal stabilities of the TA-ESO/PLA blends were slightly enhanced due to the increased crosslinking density of the TA-ESO phase; however, a slightly decreased crystallinity was observed for PLA after the addition of TA into ESO phase.
Dynamic mechanical analysis has revealed that the glass transition temperatures (Tgs) of PA6 and PC phases in the blends are slightly lower than the respective pure polymers and that the incorporation of SEBS-gMA does not affect the Tgs of each phase.
Although Pyrogallol provided the maximum initial improvement in oxidation stability, the rate of depreciation of biodiesel blends with Pyrogallol was slightly faster than those with Propyl gallate.
Equivalent efficacy results were obtained for FA and a blend of FA and PA, whereas the commercial product Amasil (blend of FA and SF) was slightly more efficacious than Luprocid (blend of FA and PA) in compound mash feed.
No difference in Salmonella reduction was observed between FA and a blend of FA and PA, whereas a commercial blend of FA and SF (Amasil) was slightly more efficacious (0.5-1 log10 reducthan) than a blend of FA and PA (Luprocid) in compound mash feed.
It's very interesting to hear the old Daryl and John blend, and now you're hearing the Daryl and March blend, which is slightly different, but it's a refreshing sound.
The melting temperature (Tm) values of SC crystallites in the blend (189 193 °C) were slightly higher than those of homo-crystallites in the neat P L-2H3MB) and P L-2H3MB) (163–178 °C).
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