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The primary particles were interconnected with very smooth edges.
The model considers primary particles and continuous emissions.
These particles have the same size as mature primary particles.
During the calcination process, the primary particles were aggregated; however, upon increasing the calcination temperature, the sizes of the primary particles decreased.
Geometric mean diameters of the primary particles varied from d̄p = 9 to 18 nm.
The silt-sized sediment was transported as primary particles under the different mulch coverage conditions.
All primary particles exhibit an inner core and an outer shell.
CuO and Cu2O nanoparticles have nanoporous structural configurations composed of a large number of primary particles.
As a rule, the newly precipitated primary particles are in the nanometer size range.
Interestingly, the incidence of coarse primary particles (>180μm) was highest within the smallest granule size fractions, and conversely, large granules contained predominantly fine (<125μm) primary particles.
Charge/discharge tests indicated that the LNMS samples composed of larger primary particles had better cyclic performance than those composed of smaller primary particles.
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