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首页> 外文期刊>Journal of Colloid and Interface Science >Dispersion of alumina-coated TiO_2 slurries in the presence of poly(acrylic)acid influence of monovalent counterions
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Dispersion of alumina-coated TiO_2 slurries in the presence of poly(acrylic)acid influence of monovalent counterions

机译:存在单价抗衡离子的聚(丙烯酸)酸影响下氧化铝包覆的TiO_2浆料的分散

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The rheological behavior of concentrated alumina-coated TiO_2 slurries has been investigated in connection with the type of surface counterions(monovalent cations:X = Li~+,Na~+,TMA~+)in the absence and in the presence of polyacrylic acid(PAA).The study has been conducted in a pH range of 4-10 and with ionic strengths lower than 0.01 M.The pH and ionic strength were adjusted with XOH and XC1,respectively.The surface properties have been investigated by titration of surface counterions and the apparent yield stress has been measured using a dynamic stress rheometer.It appears from the results that the pH at the maximum yield stress and the magnitude of the yield stress depend on the nature of the counterion.The yield stress measurements were also conducted in the presence of PAA(0.5 segmentm~2)adsorbed on the particle surface.In that case,the mineral surface and adsorbed polymer were neutralized with XOH.The results show that the dispersion efficiency depends on the polymer counterion.In general,it is found that the maximum yield stress and the corresponding counterion surface density both follow the sequence TMA~+ < Na~+ < Li~+.The adsorption of PAA apparently amplifies the effects observed with the corresponding cation.An electrostriction effect of the hydration layer at the interface is suggested in order to explain the increasing yield stress as the surface density of Li~+ increases.The so-called structure-making/structure-breaking model explains the yield stress reduction with the TMA~+ surface density.
机译:在不存在和存在聚丙烯酸的情况下,结合表面抗衡离子类型(一价阳离子:X = Li〜+,Na〜+,TMA〜+)研究了浓氧化铝包覆的TiO_2浆料的流变行为。该研究是在pH范围为4-10且离子强度低于0.01 M的条件下进行的。分别用XOH和XC1调节了pH和离子强度。通过表面抗衡离子的滴定研究了表面性质结果表明,在最大屈服应力下的pH值和屈服应力的大小取决于抗衡离子的性质。粒子表面吸附有PAA(0.5 segment / nm〜2)。在这种情况下,矿物表面和被吸附的聚合物被XOH中和。结果表明,分散效率取决于聚合物的抗衡离子。通常,发现最大屈服应力和相应的抗衡离子表面密度都遵循TMA〜+

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