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The estimated fuel properties of diesel, COME and its blends with diesel (COME5, COME10 and COME15) revealed that blending decreases density and viscosity and also reaches to diesel value, but showed insignificant effect on other fuel properties.
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The overall amount of crystallinity in both blends decreases with increasing content of amorphous polymer.
The DSC thermogram peaks for CS-starch blends decreases with increase in the LiClO4 content.
In addition, the glass transition temperature of the blend decreases with increasing amount of TGPS from 140 to 100°C.
From the morphological analysis, it is observed that the size of dispersed EPR phase in sPS/EPR/SEBS blends decreases and the particle size distribution becomes narrower with increasing amounts of SEBS in the blends.
The specific heat capacity (Cp) of the blend decreases with temperature, and the excess heat capacities (ΔCp) of the blend are positive and approach zero while the temperature is high enough.
In the isothermal crystallization at 140 °C, the crystallization half-time of PLLA/PDLA blend decreases from 15.2 to 0.28 min with the incorporation of 1 wt% PPZn, accompanied by the increase of nucleation density and decrease of spherulitic size.
The TGA analyses of the blends show that the thermal stability of blends decreases with an increase in wax content, particularly after the 50% stage, since the thermal stability of the wax is much lower than the thermal stability of LLDPE.
The pH of all the blends decreased with a corresponding increase in titratable acidity as fermentation time was increased.
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CEO of Professional Science Editing for Scientists @ prosciediting.com