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首页> 外文期刊>Molecules >Preparation and Characterization of Poly(ethyl hydrazide)-Grafted Oil Palm Empty Fruit Bunch Fibre for the Removal of Cu(II) Ions from an Aqueous Environment
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Preparation and Characterization of Poly(ethyl hydrazide)-Grafted Oil Palm Empty Fruit Bunch Fibre for the Removal of Cu(II) Ions from an Aqueous Environment

机译:聚(乙基肼)接枝的油棕空果束纤维的制备与表征,用于去除水环境中的Cu(II)离子

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Poly(ethyl hydrazide)-grafted oil palm empty fruit bunch fibre (peh-g-opefb) was successfully prepared by heating poly(methyl acrylate)-grafted opefb (pma-g-opefb) at 60 °C for 4 h with a solution of hydrazine hydrate (15% v/v) in ethanol. The Fourier transform infrared spectrum of the product shows a secondary amine peak at 3267 cm−1, with amide carbonyl peaks at 1729 cm−1 and 1643 cm−1. The chelating ability of peh-g-opefb was tested with copper ion in aqueous solution. A batch adsorption study revealed that maximum adsorption of copper ion was achieved at pH 5. An isotherm study showed the adsorption follows a Langmuir model, with a maximum adsorption capacity of 43.48 mg g−1 at 25 °C. A kinetic study showed that the adsorption of copper ion rapidly reaches equilibrium and follows a pseudo–second-order kinetic model, with a constant rate of 7.02 × 10−4 g mg−1 min−1 at 25 °C. The Gibbs free energy, ∆G⁰, value is negative, indicating a spontaneous sorption process. Entropy, ∆S⁰, gives a positive value, indicating that the system is becoming increasingly disordered after the adsorption of copper ion. A positive enthalpy value, ∆H⁰, shows that the endothermic process takes place during the adsorption and is more favourable at high temperatures.
机译:通过在溶液中将聚丙烯酸甲酯接枝的opefb(pma-g-opefb)在60°C下加热4小时,成功地制备了聚酰肼接枝的油棕空果束纤维(peh-g-opefb)。在乙醇中的水合肼(15%v / v)。产物的傅立叶变换红外光谱在3267 cm -1 处显示仲胺峰,酰胺羰基峰在1729 cm -1 和1643 cm -1下。用水溶液中的铜离子测试了peh-g-opefb的螯合能力。批量吸附研究表明,在pH 5时,铜离子的吸附最大。等温线研究表明,吸附遵循Langmuir模型,在25°C下的最大吸附容量为43.48 mg g -1 。 。动力学研究表明,铜离子的吸附迅速达到平衡,并遵循伪二级动力学模型,恒定速率为7.02×10 −4 g mg −1 min -1 在25°C。吉布斯自由能ΔG⁰值为负,表示自发吸附过程。熵∆S⁰给出一个正值,表明该系统在吸附铜离子后变得越来越无序。正焓值ΔH⁰表示吸热过程发生在吸附过程中,在高温下更有利。

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