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首页> 外文期刊>Chemical Engineering & Technology: Industrial Chemistry -Plant Equipment -Process Engineering -Biotechnology >Separation of Diclofenac Sodium Using Polysulfone Membranes Incorporated with Manganese Nanoparticles
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Separation of Diclofenac Sodium Using Polysulfone Membranes Incorporated with Manganese Nanoparticles

机译:使用掺入锰纳米颗粒的聚砜膜分离双氯芬酸钠

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摘要

Membranes are employed in various applications, including pharmaceutical waste separation, owing to their operability, high removal capacity, and cost-effectiveness. However, membrane fouling is an influential factor that reduces their efficiency. Since the addition of hydrophilic inorganic components has been shown to reduce membrane fouling, the present work focuses on manganese (MnO2, Mn2O3) nanoparticles (NP) in polysulfone (PSF) casting solutions to prepare mixed-matrix membranes for separating diclofenac (DCF) sodium from an aqueous solution. The membranes were characterized using microscopic and spectro-scopic techniques, thermogravimetric analysis, and by elucidating the internal membrane specific area, contact angle, and mechanical properties. The synthesized NP were characterized by X-ray diffraction and transmission electron microscopy analysis. The concentrations of DCF sodium measured in the feed and filtrate solutions showed that the PSF/Mn2O3 membrane provided the highest permeate flux with good DCF removal of 98.4 %. Mechanical testing indicated that higher tensile strength was obtained when embedding MnO2 NP in the PSF membrane matrix. Contact angle measurements showed an improvement of the surface hydrophilicity when blending the PSF casting solution with MnO2 NP. The fouling test indicated that the PSF/Mn2O3 membrane provided the best anti-fouling properties. Thus, NP addition enhanced the porosity, antifouling characteristics, hydrophilicity, and water flux of the fabricated membranes.
机译:膜在各种应用程序中,使用包括药品垃圾分离,由于较高的去除能力以及他们的可操作性成本效益。一个有影响力的因素,降低了他们效率。无机组件已经被证明可以减少膜污染,目前的工作重点聚砜(PSF)铸造解决方案做好准备mixed-matrix膜分离双氯芬酸(DCF)钠水溶液中。膜在使用显微特征和spectro-scopic技术、热重量分析,阐明内部膜特定区域、接触角和机械性能。通过x射线衍射和特点透射电子显微镜分析。在饲料的DCF钠浓度测量和滤液的解决方案表明,PSF / Mn2O3膜提供了最高的渗透通量好DCF的98.4%。表明,较高的抗拉强度当获得嵌入汇总NP的PSF膜矩阵。显示改善的表面当混合PSF铸造亲水性解决方案汇总NP。PSF / Mn2O3膜提供了最好的防污性能。提高了孔隙度、防污特点、亲水性和水通量的膜制作的。

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