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The results show that segregation of the coarser particle is segregated in non-magnetic fraction while finer sized particles are at the magnetic fraction.
In the case of crushing and HPGR circuits, recently acquired data have enabled this approach to be extended to coarser particle size reduction situations.
Adsorbed citrate generally reduces or eliminates heterogeneous charge attraction leading to a much denser sediment being formed in the kaolin slurries with a coarser particle size distribution.
Carcinogenic PAHs in industrial areas are likely to be associated with finer particles, while PAHs, which are not classified as human carcinogens, are likely to be found in the coarser particle fraction.
The key conclusions drawn from the combined field and simulated experiments data are: (i) Finer and coarser particle wash-off processes tend to be source limited and transport limited, respectively.
Significant CO2 uptake values (between 120 and 144 g CO2/kg) were measured even after short reaction times for granules with diameters below 10 mm and for the coarser particle size fractions after reaction times of 90 min.
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More representative figures exist for coarser particles, known as PM10.
The sediment settles to the bottom, with the coarser particles settling faster.
As the smaller particles are sifted out, the coarser particles pass to other rollers for further reduction.
Few coarser particles can also be observed.
Coarser particles must be isolated and returned for further grinding.
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CEO of Professional Science Editing for Scientists @ prosciediting.com