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Efficiency of polyurethane elastomer containing sulfonated groups as chain extender in removing Malachite green

机译:含有磺化基团的聚氨酯弹性体的效率,作为孔雀石绿色的链增量剂

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A novel type of polyurethane elastomer (PUE) containing nanocomposites of sodium alginate thiacalix[4]arene macrocycles including sodium alginate-thiacalix[4]arene and sodium alginate-tetra-sulfonated thaiacalix[4]arene (SA-TSTCA) was prepared. The key role of these nanocomposites merged into polyurethane elastomers is to function as chain extenders. To provide profound insight into the structural, thermal, mechanical, morphological and hydrophilic properties of the samples, several techniques were employed, namely Fourier transform infrared spectroscopy, thermal gravimetric analysis, scanning electron microscopy (SEM) and differential scanning calorimetry (DSC). Also the results were compared with the results of polyurethane elastomer based on glycerol (Gly) as chain extender. The results showed that the samples extended with nanocomposites as chain extender have better thermal and mechanical properties and between them the PUE containing SA-TSTCA showed higher thermal and mechanical properties. Furthermore, these elastomers have been used as adsorbent for removal of Malachite green (MG) for investigation of the effect of sulfonated groups introduced on the chain extender. The results revealed that SA-TSTCA-based polyurethane elastomer nanocomposite could well adsorb Malachite green from aqueous media by a batch adsorption method. The pseudo-first-order and pseudo-second-order kinetic models were employed to provide an in-depth study of the adsorption capacity of MG, suggesting that its adsorption onto PUE/SA-TSTCA elastomer was in accordance with pseudo-second-order kinetic process. A possible mechanism of adsorption was suggested where pi-pi stacking interactions, H-bonding interaction and electrostatic attraction controlled the MG adsorption.
机译:制备含藻酸钠纳米钠[4]芳烃醋酸钠[4]芳烃和藻酸钠 - 四磺化硫酸钠[4]芳烃(SA-TSTCA)的一种新型含有藻酸钠[4]芳烃宏茂的聚氨酯弹性体[4]芳烃的弹性体(促果酸钠宏型)。将这些纳米复合材料合并到聚氨酯弹性体中的关键作用是用作扩链剂。为了提供对样品的结构,热,机械,形态学和亲水性的深刻洞察,采用了几种技术,即傅里叶变换红外光谱,热重分析,扫描电子显微镜(SEM)和差示扫描量热法(DSC)。结果将结果与基于甘油(GLY)为链增量剂的聚氨酯弹性体的结果进行比较。结果表明,随着纳米复合材料延伸的样品,作为增链剂,具有更好的热和机械性能,并且在含SA-TSTCA的举水之间显示出较高的热和机械性能。此外,这些弹性体已被用作去除孔雀石绿(Mg)的吸附剂,以便研究引入增量剂上引入的磺化基团的作用。结果表明,SA-TSTCA的聚氨酯弹性体纳米复合材料可以通过批量吸附法从含水介质中吸附孔雀石绿色。使用伪二阶和伪二阶动力学模型来提供MG的吸附能力的深入研究,表明其在PUE / SA-TSTCA弹性体上的吸附符合伪二阶动力学过程。提出了一种可能的吸附机制,其中PI-PI堆叠相互作用,H键合相互作用和静电吸引控制Mg吸附。

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