Department of Chemistry, Marquette University, P.O. Box 1881, Milwaukee, WI 53201, USA.
Department of Chemistry, Marquette University, P.O. Box 1881, Milwaukee, WI 53201, USA.
J Hazard Mater. 2014 Jan 15;264:449-59. doi: 10.1016/j.jhazmat.2013.11.007. Epub 2013 Nov 13.
We have developed a simple one-step method to synthesize novel supramolecular polysaccharide composites from cellulose (CEL), chitosan (CS) and benzo-15-crown 5 (B15C5). Butylmethylimidazolium chloride [BMIm(+)Cl(-)], an ionic liquid (IL), was used as a sole solvent for dissolution and preparation of the composites. Since majority of [BMIm(+)Cl(-)] used was recovered for reuse, the method is recyclable. The [CEL/CS+B15C5] composites obtained retain properties of their components, namely superior mechanical strength (from CEL), excellent adsorption capability for heavy metal ions and organic pollutants (from B15C5 and CS). More importantly, the [CEL/CS+B15C5] composites exhibit truly supramolecular properties. By itself CS, CEL and B15C5 can effectively adsorb Cd(2+), Zn(2+) and 2,4,5-trichlorophenol. However, adsorption capability of the composite was substantially and synergistically enhanced by adding B15C5 to either CEL and/or CS. That is, the adsorption capacity (qe values) for Cd(2+) and Zn(2+) by [CS+B15C5], [CEL+B15C5] and [CEL+CS+B15C5] composites are much higher than combined qe values of individual CS, CEL and B15C5 composites. It seems that B15C5 synergistically interact with CS (or CEL) to form more stable complexes with Cd(2+) (or Zn(2+)), and as a consequence, the [CS+B15C5] (or the [CEL+B15C5]) composite can adsorb relatively larger amount Cd(2+) (or Zn(2+)). Moreover, the pollutants adsorbed on the composites can be quantitatively desorbed to enable the [CS+CEL+B15C5] composites to be reused with similar adsorption efficiency.
我们开发了一种简单的一步法,从纤维素(CEL)、壳聚糖(CS)和苯并-15-冠-5(B15C5)合成新型超分子多糖复合材料。离子液体[BMIm(+)Cl(-)]被用作溶解和制备复合材料的唯一溶剂。由于大部分使用的[BMIm(+)Cl(-)]都被回收再利用,因此该方法是可回收的。所得[CEL/CS+B15C5]复合材料保留了其组成部分的性质,即优异的机械强度(来自 CEL)、对重金属离子和有机污染物的优异吸附能力(来自 B15C5 和 CS)。更重要的是,[CEL/CS+B15C5]复合材料表现出真正的超分子性质。单独的 CS、CEL 和 B15C5 可以有效地吸附 Cd(2+)、Zn(2+)和 2,4,5-三氯苯酚。然而,通过向 CEL 和/或 CS 添加 B15C5,复合材料的吸附能力(qe 值)显著协同增强。也就是说,[CS+B15C5]、[CEL+B15C5]和[CEL+CS+B15C5]复合材料对 Cd(2+)和 Zn(2+)的吸附容量(qe 值)远高于单个 CS、CEL 和 B15C5 复合材料的组合 qe 值。似乎 B15C5 与 CS(或 CEL)协同相互作用,形成与 Cd(2+)(或 Zn(2+))更稳定的配合物,因此,[CS+B15C5](或[CEL+B15C5])复合材料可以吸附相对较大量的 Cd(2+)(或 Zn(2+))。此外,吸附在复合材料上的污染物可以定量解吸,使[CS+CEL+B15C5]复合材料能够以相似的吸附效率重复使用。