Sawunyama Phillip, Jackson Mary, Bailey George W.
National Research Council, U.S. Environmental Protection Agency, 960 College Station Road, Athens, 30605-2720, Georgia
J Colloid Interface Sci. 2001 May 15;237(2):153-157. doi: 10.1006/jcis.2001.7530.
Clay mineral colloids play important roles in the adsorption of polar organic contaminants in the environment. Similarly, cyclodextrins (CD) can entrap poorly water-soluble organic compounds. A combination of CDs and clay minerals affords great opportunities to investigate simultaneously complexation and adsorption processes involving organic contaminants. In this work, we investigated in situ the extent of adsorption and/or complexation of a molecular probe, methyl orange (MO), in CD/sodium montmorillonite systems using UV-visible spectroscopy. The anion form of MO interacts with the clay surface via cationic bridges, whereas the cation form is weakly adsorbed by a cation-exchange mechanism. Further, in acidic media, there is a local competition between MO and the montmorillonite surface for H(+) ions. This inhibits protonation of MO in the immediate vicinity of the clay. The presence of CDs, however, perturbs the favored process of proton scavenging by the clay. In particular, in betaCD-clay systems, betaCD-complexed MO can compete successfully with the clay for H(+) ions. The shielding effect of betaCD appears to play a key role in preventing the deprotonation of complexed MO. Copyright 2001 Academic Press.
黏土矿物胶体在环境中对极性有机污染物的吸附过程中发挥着重要作用。同样,环糊精(CD)能够包埋难溶于水的有机化合物。CD与黏土矿物的结合为同时研究涉及有机污染物的络合和吸附过程提供了绝佳机会。在本研究中,我们利用紫外可见光谱原位研究了分子探针甲基橙(MO)在CD/钠蒙脱石体系中的吸附和/或络合程度。MO的阴离子形式通过阳离子桥与黏土表面相互作用,而阳离子形式则通过阳离子交换机制被弱吸附。此外,在酸性介质中,MO与蒙脱石表面之间存在对H⁺离子的局部竞争。这抑制了黏土紧邻区域内MO的质子化。然而,CD的存在扰乱了黏土优先进行的质子清除过程。特别是在β-CD-黏土体系中,β-CD络合的MO能够成功地与黏土竞争H⁺离子。β-CD的屏蔽效应似乎在防止络合的MO去质子化过程中起关键作用。版权所有2001年学术出版社。