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首页> 外文期刊>Transactions of The Institution of Chemical Engineers. Process Safety and Environmental Protection, Part B >An amino-functionalized ramie stalk-based adsorbent for highly effective Cu 2+ removal from water: Adsorption performance and mechanism
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An amino-functionalized ramie stalk-based adsorbent for highly effective Cu 2+ removal from water: Adsorption performance and mechanism

机译:基于氨基官能化的苎麻茎秆吸附剂,用于高效Cu 2 + 从水中取出:吸附性能和机制

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This study reports a potential application of a local agricultural waste, ramie stalk, as a raw material to design a highly effective adsorbent by chemical modification with tetraethylenepentamine for Cu2+removal from water. Surface morphology and chemical structure, elements components and physicochemical properties of the adsorbent were characterized by using SEM, EDX, FTIR, Zeta potential Meter and XPS. After modification, the amine groups were successfully grafted onto the surface of ramie stalk, which have multilayered and porous structures. A batch and fixed-bed column method were used to investigate the adsorption performance and mechanism of Cu2+. The optimum pH for Cu2+adsorption was found to be 5. In the batch adsorption experiment, the data of the kinetic experiment were better fitted by the pseudo-second-order model (R2=0.9917), indicating that the adsorption of Cu2+by modified Ramie stalk was mainly controlled by chemical adsorption. The adsorption equilibrium isotherm could be better described by Langmuir model (R2=0.9929) which suggested a monolayer sorption and the maximum adsorption capacity was 0.587mmolg?1. In the dynamic adsorption experiment, the operation conditions, such as flow rate, initial concentration, and bed height were evaluated. The experiments results showed that with the higher initial concentration and the lower bed height, the adsorption capacity of the adsorbent increased and the fixed-bed column displayed good capacity for treating water under dynamic condition. The coordination bonding between Cu2+and amine groups on the modified ramie stalk is the main adsorption mechanism. The new type adsorbent exhibited good reusability for 5 cycles without deterioration in its adsorption performances. Ramie stalk could be utilized effectively as an efficient adsorbent for treatment of the copper contaminated water environment.
机译:本研究报告了当地农业废物,苎麻茎作为原料的潜在应用,以通过用四乙烯二胺进行化学改性来设计高效吸附剂的用于Cu2 +从水中去除。表面形态和化学结构,通过使用SEM,EDX,FTIR,Zeta电位计和XPS来表征吸附剂的元素成分和物理化学性质。在修饰后,胺基团被成功接枝到苎麻茎的表面上,具有多层和多孔结构。用于研究Cu2 +的吸附性能和机理。发现Cu2 +吸附的最佳pH为5.在批量吸附实验中,通过伪二阶模型(R2 = 0.9917)更好地装配动力学实验数据,表明CU2 +的吸附改性苎麻茎主要由化学吸附控制。 Langmuir模型(R2 = 0.9929)可以更好地描述吸附平衡等温,这表明单层吸附和最大吸附能力为0.587mmolg≤1。在动态吸附实验中,评估操作条件,例如流速,初始浓度和床高度。实验结果表明,随着初始浓度和较低的床高度,吸附剂的吸附容量增加,固定床柱显示出在动态条件下处理水的良好能力。 Cu2 +和改性苎麻茎上的胺基之间的配位键合是主要吸附机制。新型吸附剂表现出5个循环的良好可重用性,而不会恶化其吸附性能。可以有效地利用苎麻茎作为用于治疗铜污染水环境的有效吸附剂。

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