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首页> 外文期刊>Chemical engineering journal >PEI modified multiwalled carbon nanotube as a novel additive in PAN nanofiber membrane for enhanced removal of heavy metal ions
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PEI modified multiwalled carbon nanotube as a novel additive in PAN nanofiber membrane for enhanced removal of heavy metal ions

机译:PEI改性多壁碳纳米管作为PAN纳米纤维膜的新添加剂,提高重金属离子的去除

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摘要

Both multiwalled carbon nanotubes (MWCNTs) and electrospun nanofibers are ideal nanomaterial candidates with great potential in the field of heavy metal ions remediation. In the present study, the advantages of these two nanomaterials were combined with electrospinning method to prepare a novel nanocomposite membrane (NCM) containing improved physical properties and enhanced removal efficiency for metal ions. Modified MWCNTs were initially fabricated by reacting MWCNT-COOH with polyethylenimine (PEI), which was further embedded within polyacrylonitrile (PAN) nanofibers through electrospinning. The structure, morphology and physical property of prepared MWCNT-PEI and NCM (MWCNT-PEI/PAN) were carefully characterized with FTIR, SEM, TEM, mechanical test and contact angle measurements. Compared with plain PAN membrane, the prepared NCM possesses higher mechanical strength and improved hydrophilicity, resulting in high permeation and filtration efficiency. Batch adsorption experiments demonstrated that MWCNT-PEI/PAN nanocomposite membrane exhibited higher adsorption amount for Pb2+ and Cu2+ ions compared with other nanocomposite membranes. Additionally, the adsorption processes were elaborated to follow pseudo-second-order kinetic and Langmuir isotherm, indicating the PEI groups embedded in the NCM was the main adsorption active site and chemisorption was the mainly mechanism for the uptake of heavy metal ions. The dynamic adsorption results proved that the designed NCM exhibited improved rejection ability to metal ions with a water flux at 145.8 L m(-2) h(-1) under 0.2 bar pressure. The NCM could treat 240 mL and 170 mL of 40 mg/L Cu2+ and Pb2+ solution while maintaining a drinking water standard of 1 mg/L and 10 mu g/L, respectively. The improved membrane performance along with the excellent heavy metal removal efficiency suggests that this novel prepared NCM possess promising potential for heavy metal contaminated water treatment through the process of membrane adsorption.
机译:多壁碳纳米管(MWCNT)和Electrome纳米纤维均是理想的纳米材料候选者,具有重金属离子修复领域的潜力。在本研究中,将这两种纳米材料的优点与静电纺丝方法相结合,制备一种新的纳米复合膜(NCM),其含有改进的物理性质和增强金属离子的去除效率。最初通过使MWCNT-COOH与聚乙烯亚胺(PEI)反应而制造改性的MWCNT,其通过静电纺丝进一步嵌入聚丙烯腈(PAN)纳米纤维中。用FTIR,SEM,TEM,机械测试和接触角测量仔细描述制备MWCNT-PEI和NCM(MWCNT-PEI / PAN)的结构,形态和物理性质。与平底锅膜相比,制备的NCM具有更高的机械强度和改善的亲水性,导致高渗透和过滤效率。批量吸附实验证明,与其他纳米复合材料膜相比,MWCNT-PEI / PAN纳米复合膜表现出PB2 +和Cu2 +离子的较高吸附量。另外,阐述了吸附过程以遵循伪二阶动力学和朗米尔等温线,表明嵌入在NCM中的PEI基团是主要吸附活性位点和化学吸附是重质金属离子摄取的主要机理。动态吸附结果证明,设计的NCM在0.2巴压下的145.8μm(-2)H(-1)下的水通量具有改善的抑制能力。 NCM可以处理240mL和170ml 40mg / L Cu 2 +和PB2 +溶液,同时保持1mg / L和10μg/ L的饮用水标准。改善的膜性能以及优异的重金属去除效率表明,这种新颖的NCM通过膜吸附过程具有对重金属污染水处理的有希望的潜力。

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