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In the present study, a novel model is presented for predicting the size reduction of particles coupled with the flow field in pipeline conveying.
Substantial size reduction of particles can best be mitigated by identifying regions of high turbulence or sudden changes in flow geometry, and by redesigning these regions so as to reduce these effects.
Ball milling provides sufficient energy for reduction of particles size of the final product.
The reason evoked is the reduction of particles cell membrane adhesion when a biomolecular corona is formed [51],[51].
Each set of milling time (2, 4, 6, and 8 h) showed a reduction of particles to nanosize range.
A partial reduction of particles only may not necessarily be sufficient on its own.
Similar(53)
The reduction of particle settling velocity due to free stream turbulence under specific conditions is confirmed.
Reduction of particle size increased bulk density, FSG, and the rate of hydration, and decreased WHC of alfalfa.
Reduction of particle size increased the FSG of rations and intake of DM but reduced digestibility of NDF and ash.
The reduction of particle size and harvesting time to 1 1.5 mm and 4 days, respectively increased cellulase activities.
Reduction of particle size decreased ruminal mean retention time (RMRT), but increased the ruminal particulate passage rate.
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