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High-Performance Polyimides with Pendant Fluorenylidene Groups: Synthesis, Characterization and Adsorption Behaviour

机译:具有悬浮氟亚苯基的高性能聚酰亚胺:合成,表征和吸附行为

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High-performance polyimides (HPIs) were synthesized using various aromatic dianhydrides and fluorenylidene containing diamine via two-step polycondensation method and used as an adsorbent for the removal of dyes (Methylene blue (MB) and Rhodamine-B (Rh-B)). Various functional moieties (-O-, -(CF3)(2), -(CH3)(2)) were incorporated through synthesis in the HPIs back-bone using various aromatic dianhydrides, which enhance the adsorption capacity of adsorbent. The structure and functional groups of HPIs were confirmed by NMR and FT-IR analysis. The surface morphology of HPIs and dye adsorbed-HPIs were determined using SEM-EDX analysis. The solution dye concentration was examined using a UV/Visible spectrometer. Adsorption parameters such as solution pH, initial dye concentration, adsorbent dosage, contact time and temperature were optimised. The effect of contact time and initial dye concentration data were used to evaluate the adsorption kinetic and isotherm parameters respectively. Types and mechanism of the adsorption process were predicted using adsorption kinetics and isotherm parameters. Adsorption of dye onto HPIs followed pseudo second-order kinetic model which was confirmed by the adsorption kinetic result. The maximum monolayer adsorption capacity (q(e)) of HPIs was calculated. From thermodynamic study, Delta G degrees, Delta S degrees and Delta H degrees were calculated, which could predict the nature of the adsorption process with respect to temperature. Adsorbed-HPIs waste was converted into a PET-adsorbed-HPIs composite to reduce the hazardous solid waste and examined the dye leaching properties.
机译:通过两步缩聚方法使用各种芳族二酐和含氟亚胺,合成高性能的聚酰亚胺(HPI),用作去除染料(亚甲基蓝色(MB)和罗丹明-B(RH-B))的吸附剂。通过使用各种芳族二酐在HPIS背骨中的合成掺入各种功能性部分(-O-(CF 3)(2), - (CH 3)(2)),其增强吸附剂的吸附能力。通过NMR和FT-IR分析证实了HPI的结构和官能团。使用SEM-EDX分析测定HPI和染料吸附-HPI的表面形态。使用UV /可见光光谱仪检查溶液染料浓度。优化了溶液pH,初始染料浓度,吸附剂剂量,接触时间和温度等吸附参数。接触时间和初始染料浓度数据的效果用于分别评估吸附动力学和等温参数。使用吸附动力学和等温参数预测吸附过程的类型和机制。染料对HPI的吸附跟随伪二阶动力学模型,其被吸附动力学结果证实。计算HPI的最大单层吸附容量(Q(e))。从热力学研究,计算ΔG度,δS度和δHV度,这可以预测吸附过程的性质相对于温度。将吸附 - HPI废物转化为宠物吸附 - HPIS复合物,以减少危险的固体废物,并检查染料浸出性能。

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