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WC had higher porosity, water holding capacity, as well as increased soil organic matter.
With higher porosity, the strength and modulus declined.
Smaller incident angle and higher porosity can promote the radiation propagation.
In both the scaffold types, models with higher porosity exhibited lower mechanical properties.
Finally, higher porosity in resultant MCs resulted in larger adsorption capacity for organic pollutants (roxarsone).
These increased at greater rates for specimens with higher porosity levels (ie the Yb-stabilised coatings).
The higher porosity induced the severer loss of weight, molecular weight and compressive modulus.
Smaller seed size lead to higher porosity and percentage of shells.
The higher porosity is believed to be the reason for poor abrasion and slurry erosion resistance.
Na1.56Fe1.22P2O7 demonstrated superior discharge capacity due to higher porosity, structural disordering and air stability.
It was also found that higher porosity did not necessarily result in higher water absorption.
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