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Theoretical and experimental studies on the separation of cinnamyl acetate and cinnamaldehyde by adsorption onto a β-cyclodextrin polyurethane polymer

机译:吸附至β-环糊精聚氨酯聚合物上分离乙酸肉桂酯和肉桂醛的理论和实验研究

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In order to isolate cinnamyl acetate (CAc) and cinnamaldehyde (CA), which coexist in cinnamon oil, a crosslinked polymer of β-cyclodextrin polyurethane (CDPU) was synthesized via a facile route and investigated as a selective adsorbent. The successful crosslinking was confirmed by FTIR, TG-DSC, XRD, SEM and N2 adsorption–desorption analysis. The adsorption mechanism was investigated through a series of instrumental analyses and theoretical calculations, indicating that the combination of non-covalent interactions (e.g., hydrogen bonding, hydrophobic interactions) accounts for the superior affinity of CAc to CDPU, compared with CA. The adsorption behaviors of CAc and CA on CDPU were performed in the static adsorption mode, in which CDPU exhibited a selective adsorption property to CAc. The adsorption kinetics and isotherms in a single component system agreed well with the pseudo-second-order kinetic model and Freundlich isotherm model, respectively. It is noteworthy that the equilibrium adsorption amount was enhanced in the presence of the co-solute, presumably resulting from the cooperative effect arising from Lewis acid–base and π–π stacking interactions between the adsorbed CAc and CA molecules. Due to the stronger adsorption affinity of CAc to CDPU, adsorption enhancement of CAc in the presence of CA is greater than that of CA in the presence of CAc, resulting in higher CAc/CA selectivity with increasing concentrations of the equimolar mixture of CAc and CA. Additionally, CDPU could be easily regenerated and maintained high adsorption capacities and separation efficiency even after six adsorption/desorption cycles.
机译:为了分离肉桂油中共存的肉桂酸肉桂酯(CAc)和肉桂醛(CA),通过一种简便的方法合成了一种β-环糊精聚氨酯(CDPU)的交联聚合物,并对其进行了选择性研究。吸附剂。 FTIR,TG-DSC,XRD,SEM和N 2 吸附-脱附分析证实了交联成功。通过一系列仪器分析和理论计算对吸附机理进行了研究,结果表明,非共价相互作用(例如,氢键,疏水相互作用)的结合说明了CAc对CDPU的优异亲和力,与CA相比。 CAc和CA在CDPU上的吸附行为是在静态吸附模式下进行的,其中CDPU表现出对CAc的选择性吸附特性。单组分体系中的吸附动力学和等温线分别与拟二级动力学模型和Freundlich等温线模型吻合良好。值得注意的是,在共溶质存在下,平衡吸附量增加了,这大概是由于路易斯酸碱和被吸附的CAc与CA分子之间的π-π堆积相互作用引起的协同作用所致。由于CAc对CDPU具有更强的吸附亲和力,因此在存在CA时CAc的吸附增强大于在存在CAc时CA的吸附增强,随着CAc和CA等摩尔混合物浓度的增加,CAc / CA选择性更高。 。另外,即使经过六个吸附/解吸循环,CDPU也可以容易地再生并保持高吸附容量和分离效率。

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