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首页> 外文期刊>Journal of Chemical and Engineering Data: the ACS Journal for Data >Hydrogen Bonding of Acylamino-Modified Macroporous Cross-Linked Polystyrene Resins with Phenol
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Hydrogen Bonding of Acylamino-Modified Macroporous Cross-Linked Polystyrene Resins with Phenol

机译:酰基氨基改性大孔交联聚苯乙烯树脂与苯酚的氢键

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Hydrogen bonding plays an important role in the adsorption of organic compounds on polymeric adsorbents. Herein, three acylamino-modified macroporous cross-linked polystyrene resins, namely, PMVBA, PVBA, and PVBU, are synthesized and their adsorption of phenol is investigated in detail from hexane. The results indicate that about 3.70 mmol/g acylamino groups are uploaded on the resins, the adsorption of these resins to phenol is efficient, and the equilibrium capacity has an order of PVBU PMVBA PVBA. The isosteric enthalpy of adsorption is calculated, and it possesses a similar order of PVBU (-63.38 +/- 9.2 kJ/mol) PVBA (-55.81 +/- 7.8 kJ/mol) PMVBA (-39.87 +/- 5.5 kJ/mol) at the zero fractional loading. Analysis of the adsorption mechanism suggests that hydrogen bonding is the main driving force for the adsorption, double hydrogen bonding is involved for phenol adsorption on approximate hexahydric ring is formed during this process.
机译:氢键在聚合物吸附剂的吸附中起着重要作用。 在此,合成了三种酰氨基氨基改性的大孔交联聚苯乙烯树脂,即PMVBA,PVBA和PVBU,并从己烷中详细研究了它们对苯酚的吸附。 结果表明,约3.70mmol / g酰氨基酰基氨基上载在树脂上,将这些树脂对苯酚的吸附是有效的,并且平衡能力具有PVBU&GT的顺序。 PMVBA& PVBA。 计算吸附的旁边焓,它具有相似的PVBU(-63.38 +/- 9.2 kJ / mol)& PVBA(-55.81 +/- 7.8 kJ / mol)& PMVBA(-39.87 +/- 5.5 kJ / mol)在零分数加载。 吸附机制的分析表明,氢键是吸附的主要驱动力,在该方法期间形成了双氢键参与苯酚吸附在该过程中形成近似六水环。

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