首页> 外文会议>International Conference on Advanced Functional Materials;International Conference on Materials Sciences and Nanomaterials;International Conference on Advanced Composite Materials >Synthesis and Characterization of Electrospun Carbon Quantum Dots - Polyacrylonitrile/Polycaprolactone Composite Nanofiber Membranes for Copper (II) Adsorption
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Synthesis and Characterization of Electrospun Carbon Quantum Dots - Polyacrylonitrile/Polycaprolactone Composite Nanofiber Membranes for Copper (II) Adsorption

机译:电纺碳量子点的合成与表征 - 聚丙烯腈/聚己内酯复合纳米纤维膜(II)吸附

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Heavy metal adsorption (HMA) is one of the remediation techniques used to remove heavy metals from water/wastewater. Composite membranes with functionalized additives for selective adsorption are being investigated. In this study, Carbon Quantum Dots-Polyacrylonitrile/Polycaprolactone nanocomposite membranes are synthesized by electrospinning which is intended for HMA of Cu_~(2+). The nanofiber mats were characterized using SEM, FTIR, and Contact Angle. Batch adsorption process were performed and to utilize the AAS for kinetic adsorption behavior analysis. SEM micrographs revealed the addition of CQD in PAN and PAN/PCL membrane matrix shifted the fiber size distribution from 50-100 nm to 150-250 nm indicates the decrease in effective surface area. FTIR analysis exhibited vibrational peaks and binding of distinct functional groups such as amine, nitrile, carboxylic, hydroxyl, and carbonyl for CQD, PAN and PCL, respectively. CQD in aqueous form further increases the hydrophilicity of PAN/PCL membrane matrix which is essential for HMA of Cu_~(2+) ions. The increase of nanofiber mat's adsorption capacity with respect to contact time obtained a maximum at 63.45 mg/g with a maximum efficiency of adsorption at 90.74%. Kinetic adsorption studies show that the pseudo - first order kinetic model best fits the data for CQD-PAN/PCL nanofiber mat in Cu_~(2+) ions obtaining a correlation value of R2 = 0.9418 and a rate constant k = 0.0172 min-1 indicating the adsorption behavior follows the physical adsorption process involving Van der Waals forces and hydrogen bonding between the adsorbent and adsorbate.
机译:重金属吸附(HMA)是用于从水/废水中除去重金属的修复技术之一。研究了具有用于选择性吸附的官能化添加剂的复合膜。在该研究中,通过静电纺丝合成碳量子点 - 聚丙烯腈/聚己内酯纳米复合材料膜,其用于HMA的CU_〜(2+)。使用SEM,FTIR和接触角来表征纳米纤维垫。进行批量吸附过程并利用AA进行动力学吸附行为分析。 SEM显微照片揭示了在PAN和PAN / PCL膜基质中的CQD加入纤维尺寸分布从50-100nm至150-250nm表示有效表面积的降低。 FTIR分析表现出振动峰和不同官能团如胺,腈,羧酸,羟基和CQD,PAN和PCL的羰基的结合。水性形式的CQD进一步增加了PAN / PCL膜基质的亲水性,这对于Cu_〜(2+)离子的HMA是必不可少的。纳米纤维垫的吸附容量的增加,相对于接触时间的吸附能力,最大效率为63.45mg / g,其吸附效率为90.74%。动力学吸附研究表明,伪第一阶动力学模型最能符合CQD-PAN / PCL纳米纤维垫中CU_〜(2+)离子的数据,得到R2 = 0.9418的相关值,速率常数k = 0.0172 min-1表明吸附行为遵循涉及范德华的物理吸附过程和吸附剂和吸附剂之间的氢键。

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