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Synthesis and Characterization of Chitosan-Grafted-Poly(2-Hydroxyaniline) Microstructures for Water Decontamination

机译:壳聚糖接枝的聚(2-羟基苯胺)微结构水的合成与表征

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摘要

Chitosan as a biopolymer, biodegradable, safe, non-toxic and widely abundant in nature was grafted with poly(2-hydroxyaniline) (P2-HA) through aqueous chemical oxidative copolymerization using ammonium persulphate in acetic acid medium. The grafting conditions were studied by varying grafting parameters. The effect of oxidant, 2-hydroxyaniline (2-HA) and acetic acid concentrations on the rate of copolymerization was studied. The synthesized graft characterized using UV-Vis, FTIR, TGA, XRD, and scanning electron microscope and compared with chitosan and P2-HA. The grafting enhances the thermal properties of chitosan. The effect of temperature on the rate of grafting copolymerization reaction was studied. The apparent activation energy (Ea) of the copolymerization reaction found to be 21.1116 kJ/mol. Also, Delta H-* and Delta S-*, were calculated and found to 22.8630 kJ/mol and -109.4290 J/mol K respectively. The mechanism of the grafting copolymerization reaction discussed. Chitosan, P2-HA and chitosan-graft-P2-HA used for the removal of Cr, Fe, Mn, Cu and Zn divalent ions from a contaminated water samples. The adsorption isotherm parameters are given.
机译:壳聚糖是一种生物可降解,安全,无毒且性质广泛的生物聚合物,它是通过在乙酸介质中使用过硫酸铵的水溶液化学氧化共聚法将聚(2-羟基苯胺)(P2-HA)接枝的。通过改变接枝参数研究了接枝条件。研究了氧化剂,2-羟基苯胺(2-HA)和乙酸浓度对共聚速率的影响。使用UV-Vis,FTIR,TGA,XRD和扫描电子显微镜对合成的接枝物进行表征,并与壳聚糖和P2-HA进行比较。接枝增强了壳聚糖的热性能。研究了温度对接枝共聚反应速率的影响。发现共聚反应的表观活化能(Ea)为21.1116kJ / mol。另外,计算出ΔH-*和ΔS-*,分别为22.8630kJ / mol和-109.4290J / molK。讨论了接枝共聚反应的机理。壳聚糖,P2-HA和壳聚糖接枝-P2-HA用于从受污染的水样中去除Cr,Fe,Mn,Cu和Zn二价离子。给出了吸附等温线参数。

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