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Adsorption from aqueous solution based on the synergism between hydrogen bonding and hydrophobic interactions

机译:基于氢键与疏水相互作用的协同作用从水溶液中吸附

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摘要

The adsorption of aniline, N-methyl aniline, and N,N-dimethyl aniline on carboxyl resin(D152) in different media, water, ethanol, and hexane have been studied. In water the adsorption affinity of three sorbates on D152 increased with an increasing number of methyl groups on N atoms, which indicated that the adsorption of the three sorbates on D152 was driven by a hydrophobic interaction. But the adsorption enthalpy of the three sorbates exceeded the van der Waals force and was in the range of hydrogen bonding interactions, which indicated that the hydrogen bonding also played an important role. In hexane the adsorption affinity decreased with the increasing number of methyl groups on the N atom, presenting the reverse order to that in water. This fact revealed that the hydrogen bonding played a predominant role for the adsorption in hexane. In ethanol, there was no adsorption of three sorbates on D152 resin, because both the van der Waals force and the hydrogen bonding interaction between the resin and sorbate were depressed. The hydrogen bonding between resin and sorbates in water was also depressed, but the hydrogen bonding adsorption remained. This result suggested that there might be a synergetic effect between the van der Waals and hydrogen bonding interactions in the adsorption of sorbate on D152 resin in water. The synergetic effect was explained thermodynamically. (c) 2005 Wiley Periodicals, Inc.
机译:研究了苯胺,N-甲基苯胺和N,N-二甲基苯胺在不同介质,水,乙醇和己烷中对羧基树脂(D152)的吸附。在水中,三种吸附剂在D152上的吸附亲和力随N原子上甲基数量的增加而增加,这表明三种吸附剂在D152上的吸附是由疏水相互作用驱动的。但三种吸附物的吸附焓均超过范德华力,处于氢键相互作用的范围内,表明氢键也起着重要的作用。在己烷中,吸附亲和力随N原子上甲基数量的增加而降低,呈现出与水中相反的顺序。这一事实表明,氢键在己烷中的吸附中起主要作用。在乙醇中,由于范德华力和树脂与山梨酸酯之间的氢键相互作用均受到抑制,因此D152树脂上没有三种山梨酸酯的吸附。水中的树脂和被吸附物之间的氢键也被抑制,但是氢键吸附仍然存在。该结果表明范德华力与氢键相互作用可能在水中吸附D152树脂上的山梨酸酯上产生协同作用。用热力学解释了协同作用。 (c)2005年Wiley Periodicals,Inc.

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