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Depending on the weight ratio of wPET/GTR, dispersion of single/composite domains of waste polymers in the bitumen has promoted the interaction between bitumen and blend components.
The proton spin lattice relaxation experiments in the rotating frame on blended membranes indicated that independently of the preparation conditions, the blend components are not completely miscible possibly due to a weak polymer protein interaction.
Feedstock selection contributes to diverse biofuel blend components.
All blend components are based on single-site catalysts.
With chemical upgrading, 22 of the 33 compounds could have potential as jet fuel blend components.
Eight of the 33 compounds were identified as having potential as gasoline blend components.
Homogeneous ionomer blends were formed due to acid base interactions between the two blend components.
The glass transition temperature (Tg) of blend components did not significantly change.
This was attributed to the promotion of specific polar interactions between the blend components.
In order to trace the crystallization processes of blend components separately, PHBV was deuterated.
The composition dependency of Ea could be explained based on miscibility of the blend components.
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