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Some aspects about the adsorption of quinoline on fibrous silicates and Patagonian saponite

机译:喹啉在纤维状硅酸盐和巴塔哥尼亚皂石上的吸附方面

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Adsorption of quinoline (Q, C_9H_7N) on aqueous suspensions of sepiolite, palygorskite and saponite was determined experimentally in a wide pH range. The enhancement of adsorption with increasing pH and some release of OH~- were observed. The clay minerals showed, at short reaction times, a higher adsorption and then this decreased along the time. Displaced Mg~(2+) from octahedral sheet decreased when the Q adsorption happened. The surface of the mineral covered by the molecules at a 20 mM Q total concentration practically coincided with the BET surface for sepiolite and palygorskite. In the case of saponite, it coincided with the EGME surface. The obtained data suggest three possible mechanisms that could be involved in the interaction between Q and the surface of the mineral. 1) Adsorption of Q on surface sites (SiOH, AlOH, MgOH, FeOH) on the broken edges of the mineral via the donation a of the N electron pair of the Q. 2) Adsorption via links on the external surface (sepiolite and palygorskite) and on the external and interlayer surface (saponite). 3) A process of ion exchange in which protonated Q (QH~+) replaces Na~+.
机译:在宽的pH范围内,通过实验确定了喹啉(Q,C_9H_7N)在海泡石,坡缕石和皂石的水悬浮液中的吸附。观察到随着pH值的增加吸附的增强和OH〜-的释放。粘土矿物在较短的反应时间内显示出较高的吸附,然后随时间下降。当Q吸附发生时,八面体中Mg〜(2+)的位移减少。总浓度为20 mM Q的分子所覆盖的矿物表面实际上与海泡石和坡缕石的BET表面重合。就皂石而言,它与EGME表面重合。获得的数据表明,三种可能的机制可能涉及Q与矿物表面之间的相互作用。 1)通过Q的N个电子对的贡献a在矿物破碎边缘的表面位点(SiOH,AlOH,MgOH,FeOH)上吸附Q. 2)通过外表面(海泡石和坡缕石)上的键吸附Q )以及外层和夹层表面(皂石)上。 3)离子交换过程,质子化Q(QH〜+)代替Na〜+。

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