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Kinetics peculiarities of kaolin sedimentation in the presence of anionic and cationic polyacrylamide flocculants in the presence of anionic (A) and cationic (C) polyacrylamide flocculants was studied by means of a VT torsion

Features of phase formation and phase distribution in the dehydration of coarse gibbsite floccules in coarse floccules of the dehydration products of gibbsite thermally treated at atmospheric pressure in air

Features of phase formation and phase distribution in the dehydration of coarse gibbsite floccules in coarse floccules of the dehydration products of gibbsite thermally treated at atmospheric pressure in air

Kinetics peculiarities of kaolin sedimentation in the presence of anionic and cationic polyacrylamide flocculants in the presence of anionic (A) and cationic (C) polyacrylamide flocculants was studied by means of a VT torsion

Sedimentation of titanium dioxide suspension in the presence of polyacrylamide flocculants is studied in the presence of high-molecular-weight flocculants - polyacrylamide and ionic (anionic

Influence of the nature of the medium on the conformational states of macromolecules of anionic polyelectrolytes and their flocculating effect polyelectrolytes and their flocculating effect

Investigation of the treatment from IONS of heavy metals whith wastewater of pulp production technology from husk of grain varieties
origin, it has been proposed to use them as flocculants for water purification from ITM. Initially

The effect of flocculants on electrokinetic and sedimentation properties of aqueous suspensions of cellulose nitrates properties of aqueous suspensions of cellulose nitrates were studied. The greatest flocculating effect

Sedimentation of titanium dioxide suspension in the presence of polyacrylamide flocculants is studied in the presence of high-molecular-weight flocculants - polyacrylamide and ionic (anionic

Specific features of how macropores are formed in dehydration of gibbsite and their influence on physicomechanical properties of floccules treatment of coarse floccules at 250-600°C in air. It was shown that macropores with diameters not exceeding

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