首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Rheological measurements of Na-bentonite and sepiolite particles in the presence of tetradecyltrimethylammonium bromide, sodium tetradecyl sulfonate and Brij 30 surfactants
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Rheological measurements of Na-bentonite and sepiolite particles in the presence of tetradecyltrimethylammonium bromide, sodium tetradecyl sulfonate and Brij 30 surfactants

机译:十四烷基三甲基溴化铵,十四烷基磺酸钠和Brij 30表面活性剂存在下钠膨润土和海泡石颗粒的流变学测量

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The effects of cationic tetradecytrimethylammonium bromide (TDTMABr), anionic sodium tetradecyl sulfonate (NaTDS) and nonionic Brij 30 surfactants on the electrokinetic and rheological properties of Na-bentonite and sepiolite suspensions have been investigated. It has been found from the zeta potential measurements that the negative surface charge of Na-bentonite and sepiolite has become positive in the presence of 7.5×10 ~(-3)M and 1.0×10 ~(-3)M TDTMABr, respectively. As the concentration of NaTDS is increased in the suspension, the zeta potential value of Na-bentonite does not change significantly, but that of sepiolite decreases gradually. Na-bentonite-surfactant suspensions show a thixotropic behavior, on the other hand sepiolite-surfactant suspensions display a rheopexic or thixotropic behavior depending on the surfactant concentration. All clay-surfactant suspensions follow a Bingham type flow behavior. The surfactant concentration leads to significant changes in the plastic viscosity (η _(pl)) values of sepiolite-surfactant suspensions, on the contrary of Na-bentonite-surfactant systems. Some shifts in the peak positions have been observed in the FTIR spectra of samples, which have provided evidence about the interactions between clay particles and surfactant molecules. This study shows that the suspensions having the desired zeta potential and η _(pl) values and thixotropic or rheopexic behaviors can be obtained using different clay-surfactant mixtures.
机译:研究了阳离子十四烷基三甲基溴化铵(TDTMABr),阴离子十四烷基磺酸钠(NaTDS)和非离子Brij 30表面活性剂对钠膨润土和海泡石悬浮液的电动和流变性能的影响。从ζ电势测量发现,在7.5×10〜(-3)M和1.0×10〜(-3)M TDTMABr存在下,钠膨润土和海泡石的负表面电荷已变为正。随着悬浮液中NaTDS浓度的增加,钠膨润土的Zeta电位值没有明显变化,但海泡石的Zeta电位值逐渐降低。钠膨润土表面活性剂悬浮液表现出触变性,而海泡石表面活性剂悬浮液表现出流变性或触变性,这取决于表面活性剂的浓度。所有粘土表面活性剂悬浮液均遵循宾厄姆型流动行为。与钠膨润土表面活性剂体系相反,表面活性剂浓度导致海泡石表面活性剂悬浮液的塑性粘度(η_(pl))值发生显着变化。在样品的FTIR光谱中观察到了峰位置的某些变化,这为粘土颗粒与表面活性剂分子之间的相互作用提供了证据。该研究表明,可以使用不同的粘土表面活性剂混合物获得具有所需zeta电位和η_(pl)值以及触变性或流变行为的悬浮液。

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