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用于从水溶液中去除锌(II)离子的多壁碳纳米管/聚乙烯(PVC)聚合物包合物膜的制备与表征

Fabrication and Characterisation of MWCNT/Polyvinyl (PVC) Polymer Inclusion Membrane for Zinc (II) Ion Removal from Aqueous Solution.

作者信息

Khalid Nadia Aqilah, Shoparwe Noor Fazliani, Yusoff Abdul Hafidz, Sulaiman Ahmad Ziad, Ahmad Abdul Latif, Azmi Nur Aina

机构信息

Gold Rare Earth and Material Technopreneurship Centre, Faculty of Bioengineering and Technology, Jeli Campus, Universiti Malaysia Kelantan, Jeli, Kota Bharu 17600, Kelantan, Malaysia.

School of Chemical Engineering, Engineering Campus, Universiti Sains Malaysia, Nibong Tebal 14300, Pulau Pinang, Malaysia.

出版信息

Membranes (Basel). 2022 Oct 20;12(10):1020. doi: 10.3390/membranes12101020.

Abstract

Heavy metal pollution has prompted researchers to establish the most effective method to tackle the impacts of heavy metals on living things and the environment, which include by applying nanoparticles. An example is the employment of multi-walled carbon nanotubes (MWCNTs) as an additive in an intermediate membrane or polymer inclusion membrane (PIM). The MWCNTs were added to enhance the properties and reinforce the transport performance of zinc (II) ion (Zn2+) removal from the source phase to the receiver phase by the PIMs. The present study constructed a membrane with a poly(vinyl chloride) (PVC)-based polymer, dioctyl phthalate (DOP) plasticiser, and bis-(2-ethylhexyl) phosphate (B2EHP) carrier incorporated with different concentrations of MWCNTs. The contact angle (CA), water uptake, ion exchange capacity (IEC), and porosity of the fabricated membranes were evaluated. The membrane was also characterised by employing scanning electron microscopy (SEM), Fourier transform infrared spectroscopy (FTIR), differential scanning calorimetry (DSC), and electrochemical impedance spectroscopy (EIS). Subsequently, the fabricated PIM (W1) and mixed matrix (MM)-PIM (W2−W5) samples were assessed under different parameters to acquire the ideal membrane composition and effectiveness. Kinetic modelling of Zn2+ removal by the fabricated PIMs under similar conditions was performed to reveal the mechanisms involved. The average removal efficiency of the membranes was >99% at different parameter conditions. Nevertheless, the W3 membrane with 1.0 wt% MWCNT immersed in a 5 mg/L initial Zn2+ concentration and 1.0 M receiver solution for seven hours at pH 2 demonstrated the highest percentage of Zn2+ removal. The experimental data were best fitted to the pseudo-first-order kinetic model (PFO) in kinetic modelling, and the permeability and flux of the W3 at optimum conditions were 0.053 m s−1 and 0.0532 mol m−2 s−1, respectively. In conclusion, the transport mechanism of Zn2+ was enhanced with the addition of the MWCNTs.

摘要

重金属污染促使研究人员建立最有效的方法来应对重金属对生物和环境的影响,其中包括应用纳米颗粒。一个例子是将多壁碳纳米管(MWCNT)用作中间膜或聚合物包合膜(PIM)中的添加剂。添加MWCNT是为了改善性能,并增强PIM从源相到接收相去除锌(II)离子(Zn2+)的传输性能。本研究构建了一种基于聚氯乙烯(PVC)的聚合物、邻苯二甲酸二辛酯(DOP)增塑剂和双(2-乙基己基)磷酸酯(B2EHP)载体并掺入不同浓度MWCNT的膜。对制备的膜的接触角(CA)、吸水率、离子交换容量(IEC)和孔隙率进行了评估。还通过扫描电子显微镜(SEM)、傅里叶变换红外光谱(FTIR)、差示扫描量热法(DSC)和电化学阻抗谱(EIS)对该膜进行了表征。随后,在不同参数下对制备的PIM(W1)和混合基质(MM)-PIM(W2-W5)样品进行评估,以获得理想的膜组成和有效性。在相似条件下对制备的PIM去除Zn2+进行动力学建模,以揭示其中涉及的机制。在不同参数条件下,膜的平均去除效率>99%。然而,将含有1.0 wt% MWCNT的W3膜浸入初始Zn2+浓度为5 mg/L、接收溶液为1.0 M的溶液中,在pH 2下放置7小时,其Zn2+去除率最高。在动力学建模中,实验数据最符合伪一级动力学模型(PFO),在最佳条件下W3的渗透率和通量分别为(0.053) m s−1和(0.0532) mol m−2 s−1。总之,添加MWCNT增强了Zn2+的传输机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9636/9607245/3bf0b082ad07/membranes-12-01020-g001.jpg

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