以废塑料衍生碳纳米管为填料的聚砜膜去除矿山废水中的重金属

H.U. Modekwe , I.M. Ramatsa , M.A. Mamo , O.O. Sadare , M.O. Daramola , K. Moothi
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引用次数: 0

摘要

该研究的重点是“以废还废”,即利用注入废塑料衍生的多壁碳纳米管(MWCNTs)的聚砜(PSF)膜作为一种创新方法,从金矿废水中去除有毒金属。利用化学气相沉积法(CVD)从废旧聚丙烯(PP)塑料中合成的MWCNTs在氧化酸中纯化,并通过相转化技术将不同负载(0、0.05、0.10和0.15 wt%)掺入PSF膜中形成混合基质膜(MMM)。通过水接触角测量、热重分析和扫描电镜对制备的原始膜和纳米复合膜的亲水性、热稳定性和形貌进行了研究。结果表明,与原始的PSF相比,将塑料衍生的MWCNTs加入到PSF聚合物基质中可以显著提高所有制备的MWCNTs/PSF纳米复合膜的性能。随着MWCNTs的加载,金属的通量和截留量增加。原始PSF对铁(Fe)和镍(Ni)的去除率分别为70.2%和11.4%,而当MWCNT负载为0.10 wt%时,铁和镍的最佳去除率分别为91%和74%。本研究的结果表明,在PSF聚合物基体上加入不同负载的塑料衍生的mwcnts会影响其表面性能,并提高通量和去除效率。因此,利用废塑料作为碳纳米管生产的前驱体将节省碳纳米管的成本,提供可持续的塑料废物管理选择,并在工业规模上在环境修复(如膜分离)中的应用潜力方面开辟了广阔的前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Heavy metals removal from mine wastewater using polysulfone membrane infused with waste plastic-derived carbon nanotubes as filler
The study focuses on “treating waste with waste” through the removal of toxic metals from gold mine wastewater using polysulfone (PSF) membrane infused with waste plastic derived-multi-walled carbon nanotube (MWCNTs) as an innovative approach. MWCNTs synthesized from waste polypropylene (PP) plastics by the chemical vapour deposition (CVD) method were purified in oxidizing acid, and different loadings (0, 0.05, 0.10, and 0.15 wt%) were incorporated into the PSF membrane to form mixed matrix membranes (MMM) via phase inversion technique. Fabricated pristine and nanocomposite membranes’ properties: hydrophilicity, thermal stability, and morphology, were ascertained by the water contact angle measurement, thermogravimetry analysis, and scanning electron microscopy, respectively. Results show that incorporating plastic-derived-MWCNTs into the matrices of PSF polymer significantly enhanced the properties of all fabricated MWCNTs/PSF nanocomposite membranes compared to pristine PSF. The flux and rejection of metals increased with MWCNTs loading. Iron (Fe) and nickel (Ni) removal by pristine PSF were 70.2% and 11.4%, respectively, while optimal Fe and Ni rejection of 91% and 74%, respectively, were obtained with 0.10 wt% MWCNT loading. The results obtained in this work revealed that incorporating different loadings of plastic-derived-MWCNTs onto the PSF polymer matrix impacted its surface properties, and improved flux, and removal efficiency. Therefore, utilizing waste plastics as a precursor in CNTs production will save on the cost of CNTs and provide a sustainable plastic waste management option, as well as open up vast prospects at the industrial scale in the potential for application in environmental remediation (such as in membrane separation).
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